Consolidating Plant-based Essential Oils onto Polysaccharides-based Coatings: Effect on Mechanisms and Reducing Postharvest Losses of Fruits
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[1] Jianzhang Li,et al. Performance of soybean protein adhesive cross-linked by lignin and cuprum , 2022, Journal of Cleaner Production.
[2] C. Biliaderis,et al. Physicochemical properties of zein-based edible films and coatings for extending wheat bread shelf life , 2022, Food Hydrocolloids.
[3] E. Aprea,et al. Apple pathogens: Organic essential oils as an alternative solution , 2022, Scientia Horticulturae.
[4] Amin Mousavi Khaneghah,et al. Application of innovative packaging technologies to manage fungi and mycotoxin contamination in agricultural products: Current status, challenges, and perspectives. , 2022, Toxicon : official journal of the International Society on Toxinology.
[5] S. S. Sana,et al. Essential oils and its antibacterial, antifungal and anti-oxidant activity applications: A review , 2022, Food Bioscience.
[6] A. Chrysargyris,et al. Heat treatment, sodium carbonate, ascorbic acid and rosemary essential oil application for the preservation of fresh Rosmarinus officinalis quality , 2022, Postharvest Biology and Technology.
[7] Yunxiang Wang,et al. Effect of chitosan coating incorporated with Torreya grandis essential oil on the quality and physiological attributes of loquat fruit , 2022, Journal of Food Measurement and Characterization.
[8] Li-Yu Daisy Liu,et al. Only Plant-based Food Additives: An Overview on Application, Safety, and Key Challenges in the Food Industry , 2022, Food Reviews International.
[9] Anant D. Nimkarde,et al. Effect of Microwaves on the pH and °Brix value of Cranberry, Grape, Blackberry and Lemon , 2022, JOURNAL OF ADVANCED APPLIED SCIENTIFIC RESEARCH.
[10] H. Ali,et al. Assessing the Use of Aloe vera Gel Alone and in Combination with Lemongrass Essential Oil as a Coating Material for Strawberry Fruits: HPLC and EDX Analyses , 2022, Coatings.
[11] V. Rodov,et al. Oligomers of Carboxymethyl Cellulose for Postharvest Treatment of Fresh Produce: The Effect on Fresh-Cut Strawberry in Combination with Natural Active Agents , 2022, Foods.
[12] L. Palou,et al. Natural Pectin-Based Edible Composite Coatings with Antifungal Properties to Control Green Mold and Reduce Losses of ‘Valencia’ Oranges , 2022, Foods.
[13] Deepika,et al. Unveiling the cellular and molecular mode of action of Melaleuca cajuputi Powell. Essential oil against aflatoxigenic strains of Aspergillus flavus isolated from stored maize samples , 2022, Food Control.
[14] A. Mehmood,et al. Influence of guar gum and chitosan enriched with lemon peel essential oil coatings on the quality of pears , 2022, Food science & nutrition.
[15] A. Stoyanova,et al. Chemical Composition and Antimicrobial Activity of Essential Oil of Fruits from Vitex agnus-castus L., Growing in Two Regions in Bulgaria , 2022, Plants.
[16] M. Misson,et al. Recent Advancements of Polysaccharides to Enhance Quality and Delay Ripening of Fresh Produce: A Review , 2022, Polymers.
[17] S. Combrinck,et al. Inhibition of Kumquat Postharvest Fungi through Vapor Contact with Spearmint Essential Oil and Carvone , 2022, ACS Agricultural Science & Technology.
[18] R. Tundis,et al. Chemical Compositions and Antioxidant Activities of Essential Oils, and Their Combinations, Obtained from Flavedo By-Product of Seven Cultivars of Sicilian Citrus aurantium L. , 2022, Molecules.
[19] Farhan Nabi,et al. Fungicidal properties of ginger (Zingiber officinale) essential oils against Phytophthora colocasiae , 2022, Scientific Reports.
[20] I. Kahramanoğlu,et al. Control of Postharvest Gray Mold at Strawberry Fruits Caused by Botrytis cinerea and Improving Fruit Storability through Origanum onites L. and Ziziphora clinopodioides L. Volatile Essential Oils , 2022, Agronomy.
[21] T. Behl,et al. Antibacterial Mechanism of Action of Essential Oils , 2022, Role of Essential Oils in the Management of COVID-19.
[22] S. Swift,et al. Essential Oils and Their Major Components: An Updated Review on Antimicrobial Activities, Mechanism of Action and Their Potential Application in the Food Industry , 2022, Foods.
[23] J. Bouajila,et al. Antifungal and Antiaflatoxinogenic Effects of Cymbopogon citratus, Cymbopogon nardus, and Cymbopogon schoenanthus Essential Oils Alone and in Combination , 2022, Journal of fungi.
[24] F. Guenoun,et al. Chemical composition and antibacterial activity of essential oils of Cinnamomum cassia and Syzygium aromaticum plants and their nanoparticles against Erwinia amylovora , 2022 .
[25] M. Gawish,et al. The Effects of a Gum Arabic-Based Edible Coating on Guava Fruit Characteristics during Storage , 2022, Coatings.
[26] M. Bowyer,et al. Lemon myrtle and lemon scented tea tree essential oils as potential inhibitors of green mould on citrus fruits , 2022, The Journal of Horticultural Science and Biotechnology.
[27] Oluwafunmilayo Dorcas Adegbaju,et al. Suitability of Fruits and Vegetables for Provision of Daily Requirement of Dietary Fiber Targets , 2022, Dietary Fibers.
[28] M. Saleem,et al. Synergistic effect of gum Arabic and carboxymethyl cellulose as biocomposite coating delays senescence in stored tomatoes by regulating antioxidants and cell wall degradation , 2022, International Journal of Biological Macromolecules.
[29] N. Matan,et al. Effects of bamboo sachets containing Litsea cubeba oil on the prevention of mold for extending the shelf life of dried fish, its reusability, and action mechanisms , 2022, LWT.
[30] J. Laurindo,et al. Antioxidant and antifungal properties of essential oils of oregano (Origanum vulgare) and mint (Mentha arvensis) against Aspergillus flavus and Penicillium commune for use in food preservation , 2022, Food Science and Technology.
[31] Xianju Feng,et al. Effect of lemon essential oil-enriched coating on the postharvest storage quality of citrus fruits , 2022, Food Science and Technology.
[32] Haidy A. Gad,et al. Delivery Systems of Plant-Derived Antimicrobials , 2022, Promising Antimicrobials from Natural Products.
[33] D. Sun-Waterhouse,et al. Enhancing the performance of konjac glucomannan films through incorporating zein–pectin nanoparticle-stabilized oregano essential oil Pickering emulsions , 2022, Food Hydrocolloids.
[34] M. Birringer,et al. Pesticide residues in food in the European Union: Analysis of notifications in the European Rapid Alert System for Food and Feed from 2002 to 2020 , 2022, Food Control.
[35] Radosław Bonikowski,et al. The Current State of Knowledge about Essential Oil Fumigation for Quality of Crops during Postharvest , 2021, International journal of molecular sciences.
[36] O. Merah,et al. In Vitro and In Vivo Antifungal Activities of Nine Commercial Essential Oils against Brown Rot in Apples , 2021, Horticulturae.
[37] Ali M. O,et al. Applications of natural essential oils as antibacterial for archaeological organic materials , 2021, International Journal of Advanced Scientific Research and Innovation.
[38] Reshma B. Nambiar,et al. Application of essential oils in packaging films for the preservation of fruits and vegetables: A review. , 2021, Food chemistry.
[39] Liqiang Zou,et al. Effect of Chitosan Coatings with Cinnamon Essential Oil on Postharvest Quality of Mangoes , 2021, Foods.
[40] A. Chrysargyris,et al. Vapour Application of Sage Essential Oil Maintain Tomato Fruit Quality in Breaker and Red Ripening Stages , 2021, Plants.
[41] Boqiang Li,et al. Organic acid, a virulence factor for pathogenic fungi, causing postharvest decay in fruits , 2021, Molecular plant pathology.
[42] A. Chrysargyris,et al. Application of Rosemary and Eucalyptus Essential Oils and Their Main Component on the Preservation of Apple and Pear Fruits , 2021, Horticulturae.
[43] L. Soesanto,et al. Biological control strategy for postharvest diseases of citrus, apples, grapes and strawberries fruits and application in Indonesia , 2021, Egyptian Journal of Biological Pest Control.
[44] M. Zubair,et al. Salicylic acid and Cinnamomum verum confer resistance against Penicillium rot by modulating the expression of defense linked genes in Citrus reticulata Blanco , 2021 .
[45] Jinyin Chen,et al. Gum Arabic Edible Coating Reduces Postharvest Decay and Alleviates Nutritional Quality Deterioration of Ponkan Fruit During Cold Storage , 2021, Frontiers in Nutrition.
[46] P. Klouček,et al. Antifungal and synergistic activities of some selected essential oils on the growth of significant indoor fungi of the genus Aspergillus , 2021, Journal of environmental science and health. Part A, Toxic/hazardous substances & environmental engineering.
[47] E. Baldwin,et al. Antifungal activity of Zingiber officinale Roscoe (ginger) oil and extracts, associated with carnauba wax nanoemulsions, on fungal control of harvest papaya , 2021, Acta Horticulturae.
[48] M. Kačániová,et al. Chemical Composition, In Vitro and In Situ Antimicrobial and Antibiofilm Activities of Syzygium aromaticum (Clove) Essential Oil , 2021, Plants.
[49] F. Mesías,et al. Consumers' growing appetite for natural foods: Perceptions towards the use of natural preservatives in fresh fruit. , 2021, Food research international.
[50] P. Baglioni,et al. Encapsulation of volatile compounds in liquid media: Fragrances, flavors, and essential oils in commercial formulations. , 2021, Advances in colloid and interface science.
[51] Yunbo Luo,et al. UV-C irradiation delays the physiological changes of bell pepper fruit during storage , 2021 .
[52] F. Saeed,et al. Development of antifungal edible coating for strawberry using fruit waste , 2021, Journal of Food Processing and Preservation.
[53] L. Mazzoni,et al. Potential Health Benefits of Fruits and Vegetables , 2021, Applied Sciences.
[54] J. A. Ragazzo‐Sánchez,et al. An Extensive Review of Natural Polymers Used as Coatings for Postharvest Shelf-Life Extension: Trends and Challenges , 2021, Polymers.
[55] Weirong Yao,et al. Application of essential oils as preservatives in food systems: challenges and future prospectives – a review , 2021, Phytochemistry Reviews.
[56] Marc Choisy,et al. Minimum inhibitory concentrations of commercial essential oils against common chicken pathogenic bacteria and their relationship with antibiotic resistance , 2021, Journal of applied microbiology.
[57] Siyun Wang,et al. Recent advances in Penicillium expansum infection mechanisms and current methods in controlling P. expansum in postharvest apples , 2021, Critical reviews in food science and nutrition.
[58] M. Miguel,et al. Hydrodistillation and simultaneous hydrodistillation-steam distillation of Rosmarinus officinalis and Origanum compactum: Antioxidant, anti-inflammatory, and antibacterial effect of the essential oils , 2021 .
[59] C. Ochoa-Martínez,et al. Inactivation of Salmonella enterica and Colletotrichum gloeosporioides on Whole Mangoes by Application of an Antimicrobial Coating Containing Oregano Essential Oil , 2021, Horticulturae.
[60] P. Sánchez-Torres. Molecular Mechanisms Underlying Fungicide Resistance in Citrus Postharvest Green Mold , 2021, Journal of fungi.
[61] Nagaraj Basavegowda,et al. Synergistic Antioxidant and Antibacterial Advantages of Essential Oils for Food Packaging Applications , 2021, Biomolecules.
[62] D. Rosa,et al. Nanocellulose functionalized with cinnamon essential oil: A potential application in active biodegradable packaging for strawberry , 2021 .
[63] J. Ham,et al. Application of Whey Protein-Based Edible Films and Coatings in Food Industries: An Updated Overview , 2021, Coatings.
[64] Changhong Liu,et al. Effects of hydroxyethyl cellulose and sodium alginate edible coating containing asparagus waste extract on postharvest quality of strawberry fruit , 2021 .
[65] Lanyue Zhang,et al. A comparative study on chemical compositions and biological activities of four essential oils: Cymbopogon citratus (DC.) Stapf, Cinnamomum cassia (L.) Presl, Salvia japonica Thunb. and Rosa rugosa Thumb. , 2021, Journal of ethnopharmacology.
[66] C. Ulhoa,et al. Potential of Trichoderma piluliferum as a biocontrol agent of Colletotrichum musae in banana fruits , 2021, Biocatalysis and Agricultural Biotechnology.
[67] M. J. Akhtar,et al. Chemical profiling, cytotoxic and antioxidant activity of volatile oil isolated from the mint (Mentha spicata L.,) grown in Oman , 2021, Biocatalysis and Agricultural Biotechnology.
[68] M. Ye,et al. Chemical composition and antifungal activity of essential oil from Origanum vulgare against Botrytis cinerea. , 2021, Food chemistry.
[69] Sean V. Taylor,et al. FEMA GRAS assessment of natural flavor complexes: Eucalyptus oil and other cyclic ether-containing flavoring ingredients. , 2021, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[70] J. Brecht,et al. Pre-storage chitosan-thyme oil coating control anthracnose in mango fruit , 2021 .
[71] Alaa H. Salah,et al. Post-Harvest Enhancing and Botrytis cinerea Control of Strawberry Fruits Using Low Cost and Eco-Friendly Natural Oils , 2021, Agronomy.
[72] H. Abdel-Naeem,et al. Effect of chitosan and lauric arginate edible coating on bacteriological quality, deterioration criteria, and sensory attributes of frozen stored chicken meat , 2021 .
[73] C. Tzia,et al. Edible films and coatings: properties for the selection of the components, evolution through composites and nanomaterials, and safety issues , 2021, Critical reviews in food science and nutrition.
[74] M. Soonwera,et al. Insecticidal synergy of essential oils from Cymbopogon citratus (Stapf.), Myristica fragrans (Houtt.), and Illicium verum Hook. f. and their major active constituents , 2021 .
[75] S. Mehnaz,et al. Prevalence of fungi in fresh tomatoes and their control by chitosan and sweet orange (Citrus sinensis) peel essential oil coating. , 2021, Journal of the science of food and agriculture.
[76] Yingying Wei,et al. Tea tree oil controls brown rot in peaches by damaging the cell membrane of Monilinia fructicola , 2021 .
[77] N. Matan,et al. Combined impact of peppermint oil and lime oil on Mangosteen (Garcinia Mangostana) fruit ripening and mold growth using closed system , 2021 .
[78] Jinfeng Bi,et al. Salicylic acid treatment mitigates chilling injury in peach fruit by regulation of sucrose metabolism and soluble sugar content. , 2021, Food chemistry.
[79] Wen Qin,et al. A review of cellulose and its derivatives in biopolymer-based for food packaging application , 2021 .
[80] A. Fernando,et al. Active Edible Packaging , 2021, Encyclopedia.
[81] O. A. Fawole,et al. Optimization of Gum Arabic and Starch-Based Edible Coatings with Lemongrass Oil Using Response Surface Methodology for Improving Postharvest Quality of Whole “Wonderful” Pomegranate Fruit , 2021, Coatings.
[82] K. Thakur,et al. Recent updates on the chemistry, bioactivities, mode of action, and industrial applications of plant essential oils , 2021 .
[83] K. Yusoff,et al. Membrane Disruption Properties of Essential Oils—A Double-Edged Sword? , 2021 .
[84] Pooja Singh,et al. Dysphania ambrosioides essential oils: from pharmacological agents to uses in modern crop protection—a review , 2021, Phytochemistry Reviews.
[85] S. Gopinath,et al. Microwave-assisted solvent-free extraction of essential oil from Coleus aromaticus: anti-phytopathogenic potential for fruit post-harvesting , 2021, 3 Biotech.
[86] Jianrong Li,et al. Characterization of sodium alginate-based films incorporated with thymol for fresh-cut apple packaging , 2021 .
[87] A. Ballester,et al. Securing fruit production: Opportunities from the elucidation of the molecular mechanisms of postharvest fungal infections. , 2021, Comprehensive reviews in food science and food safety.
[88] Ahmad Faizal Abdull Razis,et al. Patulin Contamination of Citrus Fruits from Punjab and Northern Pakistan and Estimation of Associated Dietary Intake , 2021, International journal of environmental research and public health.
[89] V. Singh,et al. Essential oils and their bioactive compounds as eco-friendly novel green pesticides for management of storage insect pests: prospects and retrospects , 2021, Environmental Science and Pollution Research.
[90] M. D. Ferreira,et al. Essential Oils as Natural Fungicides to Control Rhizopus stolonifer-Induced Spoiled of Strawberries , 2021 .
[91] Lin Pei,et al. Effects of different kinds of polysaccharides on the properties and inhibition of Monilinia fructicola of the thyme essential oil-chitosan based composite films , 2021 .
[92] S. Pathirana,et al. Reducing post-harvest losses in fruits and vegetables for ensuring food security – Case of Sri Lanka , 2021, MOJ Food Processing & Technology.
[93] M. Nataraj,et al. Synergistic effect of Aloe gel (Aloe vera L.) and Lemon (Citrus Limon L.) peel extract edible coating on shelf life and quality of banana (Musa spp.) , 2021, Journal of Food Measurement and Characterization.
[94] A. Siddique,et al. Antimicrobial activity of bioactive components of essential oils from Citrus sinensis against important pathogens , 2021, International Food Research Journal.
[95] Ruth Dudek-Wicher,et al. The Minimum Inhibitory Concentration of Antibiotics: Methods, Interpretation, Clinical Relevance , 2021, Pathogens.
[96] N. Villa‐Ruano,et al. Essential Oil of Lepidium virginicum: Protective Activity on Anthracnose Disease and Preservation Effect on the Nutraceutical Content of Tamarillo Fruit (Solanum betaceum) , 2021, Chemistry & biodiversity.
[97] F. Maggi,et al. Effect of Active-Edible Coating and Essential Oils on Lamb Patties Oxidation during Display , 2021, Foods.
[98] Yaqing Sun,et al. Lipid and Lipid-containing Composite Edible Coatings and Films , 2021, Food Reviews International.
[99] S. C. Nicolis,et al. Insecticidal Activity of 25 Essential Oils on the Stored Product Pest, Sitophilus granarius , 2021, Foods.
[100] Yuting Shen,et al. Antifungal effect of cinnamaldehyde, eugenol and carvacrol nanoemulsion against Penicillium digitatum and application in postharvest preservation of citrus fruit , 2021 .
[101] Paula Garcia-Oliveira,et al. Essential Oils and Their Application on Active Packaging Systems: A Review , 2021 .
[102] M. Shahedi,et al. Enhancing the Quality of Fresh Pistachio Fruit Using Sodium Alginate Enriched with Thyme Essential Oil , 2021 .
[103] M. D. Ferreira,et al. Chemical composition and antifungal activity of essential oils and their combinations against Botrytis cinerea in strawberries , 2021, Journal of Food Measurement and Characterization.
[104] G. Mauriello,et al. Basil Essential Oil: Composition, Antimicrobial Properties, and Microencapsulation to Produce Active Chitosan Films for Food Packaging , 2021, Foods.
[105] M. Rouabhia,et al. Effect of Citrus aurantium L. Essential Oil on Streptococcus mutans Growth, Biofilm Formation and Virulent Genes Expression , 2021, Antibiotics.
[106] Mohammad Zahirul Islam,et al. Consumer Preference, Quality, and Safety of Organic and Conventional Fresh Fruits, Vegetables, and Cereals , 2021, Foods.
[107] Kanchan Yadav,et al. An updated and comprehensive review of the antiviral potential of essential oils and their chemical constituents with special focus on their mechanism of action against various influenza and coronaviruses , 2020, Microbial Pathogenesis.
[108] B. Killadi,et al. Optimization of hot water treatment of guava fruits cv. ‘Shweta’ to prolong cold storage , 2021 .
[109] T. T. Truc,et al. Chemical Composition and Antibacterial Activity of Orange (Citrus sinensis) Essential Oils Obtained by Hydrodistillation and Solvent free Microwave Extraction , 2020, IOP Conference Series: Materials Science and Engineering.
[110] J. Khara,et al. Chitosan stimulate secondary metabolites production and nutrient uptake in medicinal plant Dracocephalum kotschyi. , 2020, Journal of the science of food and agriculture.
[111] K. Msaada,et al. Variation in chemical profile of leaves essential oils from thirteen Tunisian Eucalyptus species and evaluation of their antioxidant and antibacterial properties , 2020 .
[112] M. Talha,et al. Eucalyptus camaldulensis efficiency for application against microbial infections , 2020 .
[113] O. Ahmed,et al. Potential of Using Ginger Essential Oils-Based Nanotechnology to Control Tropical Plant Diseases , 2020, The plant pathology journal.
[114] B. Pace,et al. Effect of modified atmosphere packaging (MAP) and gaseous ozone pre-packaging treatment on the physico-chemical, microbiological and sensory quality of small berry fruit , 2020, Food Packaging and Shelf Life.
[115] Qian Zhou,et al. Melatonin ameliorates chilling injury in green bell peppers during storage by regulating membrane lipid metabolism and antioxidant capacity , 2020 .
[116] Alejandro Hernández,et al. Selection and application of antifungal VOCs-producing yeasts as biocontrol agents of grey mould in fruits. , 2020, Food microbiology.
[117] A. Khan,et al. Postharvest quarantine vapour heat treatment attenuates disease incidence, maintains eating quality and improves bioactive compounds of ‘Gola’ and ‘Surahi’ guava fruits , 2020, Journal of Food Measurement and Characterization.
[118] M. Jiménez‐Fernández,et al. Stability of oregano essential oil encapsulated in double (w/o/w) emulsions prepared with mechanical or high‐pressure homogenization and its effect in Aspergillus niger inhibition , 2020 .
[119] I. Aguiló‐Aguayo,et al. Aloe vera gel: An update on its use as a functional edible coating to preserve fruits and vegetables , 2020 .
[120] Anaíle dos Mares Biazotto,et al. Essential oils from Eucalyptus staigeriana F. Muell. ex Bailey and Eucalyptus urograndis W. Hill ex Maiden associated to carboxymethylcellulose coating for the control of Botrytis cinerea Pers. Fr. and Rhizopus stolonifer (Ehrenb.:Fr.) Vuill. in strawberries , 2020 .
[121] B. Saad,et al. Simultaneous Quantitative Assessment of Ochratoxin A, Patulin, 5-Hydroxymethylfurfural, and Bisphenol A in Fruit Drinks Using HPLC with Diode Array-Fluorimetric Detection , 2020, Foods.
[122] Pratibha,et al. Effect of active chitosan-pullulan composite edible coating enrich with pomegranate peel extract on the storage quality of green bell pepper , 2020 .
[123] Rana Muhammad Aadil,et al. Application of chitosan‐based apple peel polyphenols edible coating on the preservation of strawberry ( Fragaria ananassa cv Hongyan) fruit , 2020 .
[124] H. Salama,et al. Optimized alginate and Aloe vera gel edible coating reinforced with nTiO2 for the shelf-life extension of tomatoes. , 2020, International journal of biological macromolecules.
[125] Du Lihui,et al. Mechanism of antifungal activity of Perilla frutescens essential oil against Aspergillus flavus by transcriptomic analysis , 2020 .
[126] M. Arasu,et al. Essential oils of Cinnamomum loureirii and Evolvulus alsinoides protect guava fruits from spoilage bacteria, fungi and insect (Pseudococcus longispinus) , 2020 .
[127] R. Jayakody,et al. In vitro antifungal efficacy of selected essential oils in controlling fungi associated with the stem-end rot disease of mango (cv. Karutha Colomban) fruits and characterisation of antifungal components , 2020 .
[128] X. Tian,et al. Biological control of postharvest fungal decays in citrus: a review , 2020, Critical reviews in food science and nutrition.
[129] F. Baruzzi,et al. Unravelling the Antifungal Effect of Red Thyme Oil (Thymus vulgaris L.) Compounds in Vapor Phase , 2020, Molecules.
[130] S. Goyanes,et al. Improvement of Andean Blueberries Postharvest Preservation Using Carvacrol/Alginate-Edible Coatings , 2020, Polymers.
[131] N. Moulai-Mostefa,et al. Chemical composition, antimicrobial and antioxidant activities of Algerian Citrus sinensis essential oil extracted by hydrodistillation assisted by electromagnetic induction heating , 2020, Journal of Food Science and Technology.
[132] L. Mohammadi,et al. Impact of Aloe vera gel coating enriched with basil (Ocimum basilicum L.) essential oil on postharvest quality of strawberry fruit , 2020, Journal of Food Measurement and Characterization.
[133] W. Setzer,et al. Analysis of the Essential Oils of Eucalyptus camaldulensis Dehnh. and E. viminalis Labill. as a Contribution to Fortify Their Insecticidal Application , 2020 .
[134] A. Kowalczyk,et al. Thymol and Thyme Essential Oil—New Insights into Selected Therapeutic Applications , 2020, Molecules.
[135] R. Costa,et al. Valuable products from the flowers of lemon (Citrus limon (L.) Osbeck) and grapefruit (Citrus paradisi Macfad.) Italian trees , 2020 .
[136] J. Žiarovská,et al. Biological Activity and Antibiofilm Molecular Profile of Citrus aurantium Essential Oil and Its Application in a Food Model , 2020, Molecules.
[137] A. Abdel-Megeed,et al. Eucalyptus camaldulensis, Citrus aurantium, and Citrus sinensis Essential Oils as Antifungal Activity against Aspergillus flavus, Aspergillus niger, Aspergillus terreus, and Fusarium culmorum , 2020, Processes.
[138] A. Ganguli,et al. Sodium alginate-based edible coating containing nanoemulsion of Citrus sinensis essential oil eradicates planktonic and sessile cells of food-borne pathogens and increased quality attributes of tomatoes. , 2020, International journal of biological macromolecules.
[139] Lin Zhou,et al. Effects of Origanum vulgare essential oil and its two main components, carvacrol and thymol, on the plant pathogen Botrytis cinerea , 2020, PeerJ.
[140] I. Pertot,et al. Preharvest and Postharvest Application of Garlic and Rosemary Essential Oils for Controlling Anthracnose and Quality Assessment of Strawberry Fruit During Cold Storage , 2020, Frontiers in Microbiology.
[141] Y. Peralta-Ruiz,et al. Reduction of Postharvest Quality Loss and Microbiological Decay of Tomato “Chonto” (Solanum lycopersicum L.) Using Chitosan-E Essential Oil-Based Edible Coatings under Low-Temperature Storage , 2020, Polymers.
[142] M. Saleem,et al. Postharvest application of gum arabic edible coating delays ripening and maintains quality of persimmon fruits during storage , 2020 .
[143] J. Zygadlo,et al. An alternative to reduce the use of the synthetic insecticide against the maize weevil Sitophilus zeamais through the synergistic action of Pimenta racemosa and Citrus sinensis essential oils with chlorpyrifos , 2020, Journal of Pest Science.
[144] Manoj Kumar,et al. Enhancing the functionality of chitosan- and alginate-based active edible coatings/films for the preservation of fruits and vegetables: A review. , 2020, International journal of biological macromolecules.
[145] F. E. Oviasogie,et al. Quantitative phytochemical analysis and antimicrobial activities of fresh and dry ethanol extracts of Citrus sinensis (L.) Osbeck (sweet Orange) peels , 2020, Clinical Phytoscience.
[146] B. Bibby,et al. Exposure to cholinesterase inhibiting insecticides and blood glucose level in a population of Ugandan smallholder farmers , 2020, Occupational and Environmental Medicine.
[147] A. Oyedeji,et al. Chemical Composition and In vivo Anti-inflammatory Activity of Essential Oils from Citrus sinensis (L.) osbeck Growing in South Africa , 2020, Journal of Essential Oil Bearing Plants.
[148] Natasa Obradovic,et al. Natural Macromolecules as Carriers for Essential Oils: From Extraction to Biomedical Application , 2020, Frontiers in Bioengineering and Biotechnology.
[149] Yixiang Wang,et al. Edible coating based on beeswax-in-water Pickering emulsion stabilized by cellulose nanofibrils and carboxymethyl chitosan. , 2020, Food chemistry.
[150] M. Simões,et al. The Effects of Eugenol, Trans-Cinnamaldehyde, Citronellol, and Terpineol on Escherichia coli Biofilm Control as Assessed by Culture-Dependent and -Independent Methods , 2020, Molecules.
[151] A. Darras,et al. Low doses of UV-C irradiation affects growth, fruit yield and photosynthetic activity of tomato plants , 2020 .
[152] M. Hashemi,et al. Boosting antifungal effect of essential oils using combination approach as an efficient strategy to control postharvest spoilage and preserving the jujube fruit quality , 2020, Postharvest Biology and Technology.
[153] M. Kouidri,et al. Chemical composition, in-vitro antibacterial and antioxidant activities of Syzygium aromaticum essential oil , 2020, Journal of Food Measurement and Characterization.
[154] Paz E. Zúñiga,et al. Methyl Jasmonate Applications From Flowering to Ripe Fruit Stages of Strawberry (Fragaria × ananassa ‘Camarosa’) Reinforce the Fruit Antioxidant Response at Post-harvest , 2020, Frontiers in Plant Science.
[155] A. Paparella,et al. Colletotrichum gloesporioides inhibition using chitosan-Ruta graveolens L essential oil coatings: Studies in vitro and in situ on Carica papaya fruit. , 2020, International journal of food microbiology.
[156] X. Fang,et al. Inhibitory effect and possible mechanism of carvacrol against Colletotrichum fructicola , 2020 .
[157] S. Krnjajić,et al. Practical Approaches to Pest Control: The Use of Natural Compounds , 2020, Pests, Weeds and Diseases in Agricultural Crop and Animal Husbandry Production.
[158] N. Rasiukevičiūtė,et al. Biocontrol of strawberry pathogen Botrytis cinerea using plant extracts and essential oils , 2020 .
[159] M. Aminifard,et al. Antifungal effects of essential oils against Aspergillus niger in vitro and in vivo on pomegranate (Punica granatum) fruits , 2020, Scientia Horticulturae.
[160] I. Radulov,et al. Assessment of Mint, Basil, and Lavender Essential Oil Vapor-Phase in Antifungal Protection and Lemon Fruit Quality , 2020, Molecules.
[161] Yunfei Xie,et al. Analysis of the synergistic antifungal mechanism of eugenol and citral , 2020 .
[162] A. Khodanazary,et al. Effect of chitosan-whey protein isolated coatings incorporated with tarragon Artemisia dracunculus essential oil on the quality of Nemipterus japonicus fillets at refrigerated condition. , 2020, International journal of biological macromolecules.
[163] M. Lal,et al. Chemical Composition of Citrus limon L. Burmf Peel Essential Oil from North East India , 2020 .
[164] Ajay Kumar,et al. Yeasts and Bacterial Consortia from Kefir Grains Are Effective Biocontrol Agents of Postharvest Diseases of Fruits , 2020, Microorganisms.
[165] R. Claesson,et al. Chemical Composition, Antimicrobial activity, In Vitro Cytotoxicity and Leukotoxin Neutralization of Essential Oil from Origanum vulgare against Aggregatibacter actinomycetemcomitans , 2020, Pathogens.
[166] G. Andrade,et al. Bacterial extracts and bioformulates as a promising control of fruit body rot and root rot in avocado cv. Hass , 2020 .
[167] Jingying Shi,et al. Effect of the added polysaccharide on the release of thyme essential oil and structure properties of chitosan based film , 2020 .
[168] Zhangmin Xiang,et al. Chemical compositions of essential oil extracted from Lavandula angustifolia and its prevention of TPA-induced inflammation , 2020 .
[169] R. Singh,et al. Non-Fungicides-Based Promising Technologies for Managing Post-Production Penicillium Induced Spoilage in Horticultural Commodities: A Comprehensive Review , 2020, Food Reviews International.
[170] Ramyavardhanee Chandrasekaran,et al. A Review on Occurrence of Pesticides in Environment and Current Technologies for Their Remediation and Management , 2020, Indian Journal of Microbiology.
[171] D. Sivakumar,et al. Extension of Avocado Fruit Postharvest Quality Using Non-Chemical Treatments , 2020 .
[172] S. Chaturongakul,et al. The mechanisms of action of carvacrol and its synergism with nisin against Listeria monocytogenes on sliced bologna sausage , 2020 .
[173] A. Carrubba,et al. Control of Erigeron bonariensis with Thymbra capitata, Mentha piperita, Eucalyptus camaldulensis, and Santolina chamaecyparissus Essential Oils , 2020, Molecules.
[174] S. Alam-Eldein,et al. Salicylic Acid and Putrescine to Reduce Post-Harvest Storage Problems and Maintain Quality of Murcott Mandarin Fruit , 2020, Agronomy.
[175] M. A. Anjum,et al. Effects of salicylic acid on postharvest fruit quality of “Kinnow” mandarin under cold storage , 2020 .
[176] A. Ariño,et al. Patulin Mycotoxin in Mango and Orange Fruits, Juices, Pulps, and Jams Marketed in Pakistan , 2020, Toxins.
[177] R. Farahmandfar,et al. Changes in chemical composition and biological activity of essential oil from Thomson navel orange (Citrus sinensis L. Osbeck) peel under freezing, convective, vacuum, and microwave drying methods , 2019, Food science & nutrition.
[178] M. Davy,et al. Antifungal effects of clove (Syzygium aromaticum) essential oil against Colletotrichum gloeosporioides, the fungus associated with papaya (Carica papaya L.) fruit anthracnose , 2020 .
[179] Aless,et al. Characterization of Aureobasidium pullulans Isolates Selected as Biocontrol Agents Against Fruit Decay Pathogens , 2020 .
[180] S. Alamri,et al. Formulation of mint and thyme essential oils with Arabic gum and Tween to enhance their efficiency in the control of postharvest rots of peach fruit , 2020 .
[181] A. López‐Malo,et al. Essential oils in vapor phase as alternative antimicrobials: A review , 2020, Critical reviews in food science and nutrition.
[182] M. Forim,et al. Chemical composition and in vitro inhibitory effects of essential oils from fruit peel of three Citrus species and limonene on mycelial growth of Sclerotinia sclerotiorum. , 2020, Brazilian journal of biology = Revista brasleira de biologia.
[183] M. S. Lima,et al. Postharvest quality improvements in mango cultivar Tommy Atkins by chitosan coating with Mentha piperita L. essential oil , 2020, The Journal of Horticultural Science and Biotechnology.
[184] Li Li,et al. Ginger essential oil-based microencapsulation as an efficient delivery system for the improvement of Jujube (Ziziphus jujuba Mill.) fruit quality. , 2020, Food chemistry.
[185] D. Valero,et al. Preharvest application of methyl jasmonate increases crop yield, fruit quality and bioactive compounds in pomegranate 'Mollar de Elche' at harvest and during postharvest storage. , 2020, Journal of the science of food and agriculture.
[186] F. Bozkurt,et al. Development and characterization of sodium alginate based active edible films incorporated with essential oils of some medicinal plants. , 2019, International journal of biological macromolecules.
[187] Sarengaowa,et al. Efficacy of thyme oil‐alginate‐based coating in reducing foodborne pathogens on fresh‐cut apples , 2019, International Journal of Food Science & Technology.
[188] Jorge Welti-Chanes,et al. Novel technologies to improve food safety and quality , 2019 .
[189] M. S. Alam,et al. Sanitization Potential of Ozone and Its Role in Postharvest Quality Management of Fruits and Vegetables , 2019, Food Engineering Reviews.
[190] D. Kowalska,et al. Lemongrass (Cymbopogon citratus) Essential Oil: Extraction, Composition, Bioactivity and Uses for Food Preservation – a Review , 2019, Polish Journal of Food and Nutrition Sciences.
[191] K. Karamanoli,et al. Metabolic features underlying the response of sweet cherry fruit to postharvest UV-C irradiation. , 2019, Plant physiology and biochemistry : PPB.
[192] Dengyu Chen,et al. Preparation and thermostability of cellulose nanocrystals and nanofibrils from two sources of biomass: rice straw and poplar wood , 2019, Cellulose.
[193] E. L. de Souza,et al. Application of coatings formed by chitosan and Mentha essential oils to control anthracnose caused by Colletotrichum gloesporioides and C. brevisporum in papaya (Carica papaya L.) fruit. , 2019, International journal of biological macromolecules.
[194] Mosa Alsehli,et al. Carboxymethyl cellulose/sodium alginate/chitosan biguanidine hydrochloride ternary system for edible coatings. , 2019, International journal of biological macromolecules.
[195] A. Chrysargyris,et al. Sage Essential Oil Improves the Effectiveness of Aloe vera Gel on Postharvest Quality of Tomato Fruit , 2019, Agronomy.
[196] E. Elsherbiny,et al. Effects of mandarin (Citrus reticulata) peel essential oil as a natural antibiofilm agent against Aspergillus niger in onion bulbs , 2019, Postharvest Biology and Technology.
[197] S. Valle-Guadarrama,et al. MICROBIAL CONTROL IN WHITE CACTUS PEAR WITH BIOPOLYMERIC COATING OF CHITOSAN, CANDELILLA WAX AND THYME ESSENTIAL OIL , 2019, Revista Fitotecnia Mexicana.
[198] M. Waseem,et al. Aloe vera gel enriched with garlic essential oil effectively controls anthracnose disease and maintains postharvest quality of banana fruit during storage , 2019, Horticulture, Environment, and Biotechnology.
[199] Xia-Li Jia,et al. Antifungal Effects and Potential Mechanism of Essential Oils on Collelotrichum gloeosporioides In Vitro and In Vivo , 2019, Molecules.
[200] Andrea Lucchi,et al. Green Micro- and Nanoemulsions for Managing Parasites, Vectors and Pests , 2019, Nanomaterials.
[201] Swarajya Laxmi Nayak,et al. Aqueous ozone controls decay and maintains quality attributes of strawberry (Fragaria × ananassa Duch.) , 2019, Journal of Food Science and Technology.
[202] G. Disciglio,et al. Bio-Herbicidal Effects of Oregano and Rosemary Essential Oils on Chamomile (Matricaria chamomilla L.) Crop in Organic Farming System , 2019, Agronomy.
[203] J. Nduko,et al. Effect of edible gum Arabic coating on the shelf life and quality of mangoes (Mangifera indica) during storage , 2019, Journal of Food Science and Technology.
[204] Sutthira Sutthasupa,et al. Effect of chitosan and alginate beads incorporated with lavender, clove essential oils, and vanillin against Botrytis cinerea and their application in fresh table grapes packaging system , 2019, Packaging Technology and Science.
[205] L. Lins,et al. Insights into the Relationships Between Herbicide Activities, Molecular Structure and Membrane Interaction of Cinnamon and Citronella Essential Oils Components , 2019, International journal of molecular sciences.
[206] M. Sikora,et al. Physiological, qualitative, and microbiological changes of minimally processed Brussels sprouts in response to coating with carboxymethyl cellulose/candelilla wax emulsion , 2019, Journal of Food Processing and Preservation.
[207] B. Ozturk,et al. Maintaining postharvest quality of medlar (Mespilus germanica) fruit using modified atmosphere packaging and methyl jasmonate , 2019, LWT.
[208] S. Voravuthikunchai,et al. Antioxidant Properties and Antibacterial Effects of Eucalyptus camaldulensis Ethanolic Leaf Extract on Biofilm Formation, Motility, Hemolysin Production, and Cell Membrane of the Foodborne Pathogen Listeria monocytogenes. , 2019, Foodborne pathogens and disease.
[209] Nail Altunay,et al. A novel, green and safe ultrasound-assisted emulsification liquid phase microextraction based on alcohol-based deep eutectic solvent for determination of patulin in fruit juices by spectrophotometry , 2019, Journal of Food Composition and Analysis.
[210] D. Endringer,et al. Antibacterial Activity of Terpenes and Terpenoids Present in Essential Oils , 2019, Molecules.
[211] Yong‐Xian Cheng,et al. The beneficial use of essential oils from buds and fruit of Syzygium aromaticum to combat pathogenic fungi of Panax notoginseng , 2019, Industrial Crops and Products.
[212] M. Arasu,et al. Essential oil of four medicinal plants and protective properties in plum fruits against the spoilage bacteria and fungi , 2019, Industrial Crops and Products.
[213] L. Herrera-Estrella,et al. Activation of the phenylpropanoid biosynthesis pathway reveals a novel action mechanism of the elicitor effect of chitosan on avocado fruit epicarp. , 2019, Food research international.
[214] A. Oladiji,et al. Efficacy of Gum Arabic as an esculent film on shelf life extension of tomato (Solanum lycopersicum L) fruit , 2019, Ruhuna Journal of Science.
[215] Supratim Ghosh,et al. Formation and Stability of Pea Proteins Nanoparticles Using Ethanol-Induced Desolvation , 2019, Nanomaterials.
[216] P. Lu,et al. Effect of Chitosan- and Alginate-Based Coatings Enriched with Cinnamon Essential Oil Microcapsules to Improve the Postharvest Quality of Mangoes , 2019, Materials.
[217] M. Sajid,et al. Heat treatment effects on chilling injury and disease incidence in sweet orange fruits stored at chilling and non-chilling temperatures , 2019, Journal of Consumer Protection and Food Safety.
[218] S. Behiry,et al. Yield, Phytochemical Constituents, and Antibacterial Activity of Essential Oils from the Leaves/Twigs, Branches, Branch Wood, and Branch Bark of Sour Orange (Citrus aurantium L.) , 2019, Processes.
[219] S. Vishnupriya,et al. Role of essential oils in food safety: Antimicrobial and antioxidant applications , 2019, Grain & Oil Science and Technology.
[220] D. Leskauskaitė,et al. Antimicrobial properties of chitosan and whey protein films applied on fresh cut turkey pieces. , 2019, International journal of biological macromolecules.
[221] G. Kostov,et al. Chemical composition, antioxidant activity and antimicrobial activity of essential oil from Citrus aurantium L zest against some pathogenic microorganisms , 2019, Zeitschrift fur Naturforschung. C, Journal of biosciences.
[222] C. Menut,et al. Inhibitory effects of essential oils from Ocimum basilicum and Ocimum gratissimum on Colletotrichum musae : The causal agent of bananas anthracnose , 2019, Journal of Phytopathology.
[223] Mohammad Zahirul Islam,et al. Effect of fruit size on fruit quality, shelf life and microbial activity in cherry tomatoes , 2019, AIMS Agriculture and Food.
[224] A. Detsi,et al. Encapsulation of Mentha pulegium Essential Oil in Yeast Cell Microcarriers: An Approach to Environmentally Friendly Pesticides. , 2019, Journal of agricultural and food chemistry.
[225] J. H. Hasperué,et al. Non-chemical treatments for preventing the postharvest fungal rotting of citrus caused by Penicillium digitatum (green mold) and Penicillium italicum (blue mold) , 2019, Trends in Food Science & Technology.
[226] M. Egea,et al. Active film incorporated with clove essential oil on storage of banana varieties , 2019, Nutrition & Food Science.
[227] M. Spoto,et al. Control of Rhizopus stolonifer in strawberries by the combination of essential oil with carboxymethylcellulose. , 2019, International journal of food microbiology.
[228] V. Varela-Guerrero,et al. Dissolution and recovery of waste expanded polystyrene using alternative essential oils , 2019, Fuel.
[229] K. Pal,et al. Characterization of Tri-Phasic Edible Films from Chitosan, Guar Gum, and Whey Protein Isolate Loaded with Plant-Based Antimicrobial Compounds , 2019 .
[230] M. Trevisan,et al. Organic and conventional food: Comparison and future research , 2019, Trends in Food Science & Technology.
[231] Yuting Shen,et al. Inhibition of Key Citrus Postharvest Fungal Strains by Plant Extracts In Vitro and In Vivo: A Review , 2019, Plants.
[232] Sami Ben Hadj Ahmed,et al. Antimicrobial Efficiency of Essential Oils from Traditional Medicinal Plants of Asir Region, Saudi Arabia, over Drug Resistant Isolates , 2018, BioMed research international.
[233] A. L. Abreu-Silva,et al. Cinnamomum zeylanicum, Origanum vulgare, and Curcuma longa Essential Oils: Chemical Composition, Antimicrobial and Antileishmanial Activity , 2019, Evidence-based complementary and alternative medicine : eCAM.
[234] R. Kaskoos. Essential Oil Analysis by GC-MS and Analgesic Activity of Lippia citriodora and Citrus limon , 2019, Journal of Essential Oil Bearing Plants.
[235] M. Majcher,et al. Influence of sub-inhibitory concentration of selected plant essential oils on the physical and biochemical properties of Pseudomonas orientalis , 2019, Open Chemistry.
[236] A. Singh,et al. Essential oils based formulations as safe preservatives for stored plant masticatories against fungal and mycotoxin contamination: A review , 2019, Biocatalysis and Agricultural Biotechnology.
[237] S. F. Hosseini,et al. Effect of chitosan‐based coatings enriched with savory and/or tarragon essential oils on postharvest maintenance of kumquat (Fortunella sp.) fruit , 2018, Food science & nutrition.
[238] Z. Ng,et al. Effects of different heat treatments on the antioxidant activity and ascorbic acid content of bitter melon, Momordica charantia , 2019, Brazilian Journal of Food Technology.
[239] H. Erkurt,et al. Relationship between volatile components, antimicrobial and antioxidant properties of the essential oil, hydrosol and extracts of Citrus aurantium L. flowers. , 2019, Journal of infection and public health.
[240] S. Charaf,et al. Chemical composition and insecticidal activity of five essential oils: Cedrus atlantica, Citrus limonum, Rosmarinus officinalis, Syzygium aromaticum and Eucalyptus globules , 2019, Materials Today: Proceedings.
[241] D. Sivakumar,et al. Effects of chitosan treatment on avocado postharvest diseases and expression of phenylalanine ammonia-lyase, chitinase and lipoxygenase genes , 2019, Postharvest Biology and Technology.
[242] Y. Wang,et al. Comparative effects of some extraction solvents on the antimicrobial activity of Eucalyptus camaldulensis leaf, bud, capsule and seed crude extracts , 2019, Natural product research.
[243] Y. Keum,et al. Microbial platforms to produce commercially vital carotenoids at industrial scale: an updated review of critical issues , 2019, Journal of Industrial Microbiology & Biotechnology.
[244] A. Ali,et al. EFFECT OF SOME ESSENTIAL OILS ON THE GROWTH AND DEVELOPMENT OF FRUIT ROT OF LEMON CAUSED BY ASPERGILLUS NIGER UNDER IN-VITRO CONDITIONS , 2018, Pakistan Journal of Phytopathology.
[245] R. Ksouri,et al. Cupressus sempervirens essential oils and their major compounds successfully control postharvest grey mould disease of tomato , 2018, Industrial Crops and Products.
[246] Changhong Liu,et al. Effects of postharvest UV-C irradiation on phenolic acids, flavonoids, and key phenylpropanoid pathway genes in tomato fruit , 2018, Scientia Horticulturae.
[247] P. Waithaka,et al. Determination of antibacterial activity of essential oils from mint (Mentha spicata) leaves on selected pathogenic bacteria , 2018, Journal of Drugs and Pharmaceutical Science.
[248] Jinyin Chen,et al. Effects of Chitosan-Based Coatings Enriched with Cinnamaldehyde on Mandarin Fruit cv. Ponkan during Room-Temperature Storage , 2018, Coatings.
[249] Suradeep Basak,et al. A review on antifungal activity and mode of action of essential oils and their delivery as nano-sized oil droplets in food system , 2018, Journal of Food Science and Technology.
[250] W. Setzer,et al. Chemical composition of Citrus limon (L.) Osbeck growing in southwestern Nigeria: Essential oil chemo types of both peel and leaf of lemon , 2018 .
[251] Qiaomei Wang,et al. Effects of postharvest methyl jasmonate treatment on main health-promoting components and volatile organic compounds in cherry tomato fruits. , 2018, Food chemistry.
[252] Cunshan Zhou,et al. Comparative study of enzymes inactivation and browning pigmentation of apple (Malus domestica) slices by selected gums during low temperature storage , 2018, Journal of Food Biochemistry.
[253] A. Stobiecka,et al. Biological Properties and Chemical Composition of Essential Oils from Flowers and Aerial Parts of Lavender (Lavandula angustifolia) , 2018, Journal of Essential Oil Bearing Plants.
[254] Carlos R Figueroa,et al. Effect of abscisic acid and methyl jasmonate preharvest applications on fruit quality and cracking tolerance of sweet cherry , 2018, Chilean journal of agricultural research.
[255] Jacqueline de Oliveira,et al. Carboxymethylcellulose coating associated with essential oil can increase papaya shelf life , 2018, Scientia Horticulturae.
[256] Yiyan He,et al. Navel Orange Peel Essential Oil To Control Food Spoilage Molds in Potato Slices. , 2018, Journal of food protection.
[257] N. Matan,et al. Effect of peppermint oil on the shelf-life of dragon fruit during storage , 2018, Food Control.
[258] G. Flamini,et al. Chemical composition, antioxidant, antimicrobial and Antiproliferative activities of essential oil of Mentha spicata L. (Lamiaceae) from Algerian Saharan atlas , 2018, BMC Complementary and Alternative Medicine.
[259] Hong Chen,et al. Efficacy and Mechanism of Cinnamon Essential Oil on Inhibition of Colletotrichum acutatum Isolated From ‘Hongyang’ Kiwifruit , 2018, Front. Microbiol..
[260] J. Theriot,et al. The outer membrane is an essential load-bearing element in Gram-negative bacteria , 2018, Nature.
[261] M. Plascencia-Jatomea,et al. Effect of pepper tree (Schinus molle) essential oil-loaded chitosan bio-nanocomposites on postharvest control of Colletotrichum gloeosporioides and quality evaluations in avocado (Persea americana) cv. Hass , 2018, Food Science and Biotechnology.
[262] Zou Xiaobo,et al. Quality and postharvest‐shelf life of cold‐stored strawberry fruit as affected by gum arabic (Acacia senegal) edible coating , 2018 .
[263] Cristóbal N. Aguilar. A Green Technology for Control of Avocado Necrotic Fungi Using Bioactive Coatings , 2018 .
[264] Y. Hegde,et al. Bioefficacy of Essencial Oils and Plant Oils for the Management of Banana Anthracnose-A Major Post-harvest Disease , 2018 .
[265] I. Sadok,et al. The validated and sensitive HPLC-DAD method for determination of patulin in strawberries. , 2018, Food chemistry.
[266] Sarengaowa,et al. Effect of thyme oil-alginate-based coating on quality and microbial safety of fresh-cut apples. , 2018, Journal of the science of food and agriculture.
[267] V. Suendo,et al. Effect of chitosan and chitosan-nanoparticles on post harvest quality of banana fruits , 2018 .
[268] E. L. de Souza,et al. Control of anthracnose caused by Colletotrichum species in guava, mango and papaya using synergistic combinations of chitosan and Cymbopogon citratus (D.C. ex Nees) Stapf. essential oil. , 2018, International journal of food microbiology.
[269] H. Coutinho,et al. Essential oil of Eucalyptus camaldulensis Dehn potentiates β-lactam activity against Staphylococcus aureus and Escherichia coli resistant strains , 2018 .
[270] L. Craker,et al. Chemical composition and antioxidant activity of essential oils in Origanum vulgare subsp. gracile at different phenological stages and plant parts , 2018 .
[271] Y. Shahbazi,et al. Effect of Mentha spicata essential oil on chemical, microbial, and sensory properties of minced camel meat during refrigerated storage , 2018 .
[272] O. Merah,et al. The potency of lemon (Citrus limon L.) essential oil to control some fungal diseases of grapevine wood. , 2018, Comptes rendus biologies.
[273] Y. Shahbazi. Application of carboxymethyl cellulose and chitosan coatings containing Mentha spicata essential oil in fresh strawberries. , 2018, International journal of biological macromolecules.
[274] A. Dragomirescu,et al. Chemical Composition and the Potential of Lavandula angustifolia L. Oil as a Skin Depigmentant , 2018 .
[275] Mohammad Zahirul Islam,et al. Iron, Iodine and Selenium Effects on Quality, Shelf Life and Microbial Activity of Cherry Tomatoes , 2018 .
[276] J. Croda,et al. Antioxidant, anti-inflammatory, antiproliferative and antimycobacterial activities of the essential oil of Psidium guineense Sw. and spathulenol. , 2018, Journal of ethnopharmacology.
[277] M. Gullino,et al. Thyme and Savory Essential Oil Vapor Treatments Control Brown Rot and Improve the Storage Quality of Peaches and Nectarines, but Could Favor Gray Mold , 2018, Foods.
[278] K. Zia,et al. Recent advances on polysaccharides, lipids and protein based edible films and coatings: A review. , 2017, International journal of biological macromolecules.
[279] A. Taha,et al. Antioxidant activity of Linalool , 2018 .
[280] A. Mohamed,et al. Cellulose Reinforced Biodegradable Polymer Composite Film for Packaging Applications , 2018 .
[281] G. Benelli,et al. Essential Oils from Aromatic and Medicinal Plants as Effective Weapons Against Mosquito Vectors of Public Health Importance , 2018 .
[282] S. Ravishankar,et al. Antimicrobial Activities of Essential Oils, Plant Extracts and their Applications in Foods- A Review , 2018 .
[283] D. Beshkova,et al. Lactic Acid Bacteria—From Nature Through Food to Health , 2018 .
[284] M. Niakousari,et al. Application of Tragacanth gum impregnated with Satureja khuzistanica essential oil as a natural coating for enhancement of postharvest quality and shelf life of button mushroom (Agaricus bisporus). , 2018, International journal of biological macromolecules.
[285] N. Harnkarnsujarit,et al. Structure–property modification of microcrystalline cellulose film using agar and propylene glycol alginate , 2017 .
[286] I. Chaieb,et al. Chemical composition and aphicidal potential of Citrus aurantium peel essential oils , 2017 .
[287] M. Hashemi,et al. Synergistic effects of some essential oils against fungal spoilage on pear fruit. , 2017, International journal of food microbiology.
[288] A. Khaneghah,et al. Characterization of novel basil-seed gum active edible films and coatings containing oregano essential oil , 2017 .
[289] E. L. de Souza,et al. Synergistic mixtures of chitosan and Mentha piperita L. essential oil to inhibit Colletotrichum species and anthracnose development in mango cultivar Tommy Atkins. , 2017, Food microbiology.
[290] S. Hosseini,et al. Characterization of basil seed gum-based edible films incorporated with Zataria multiflora essential oil nanoemulsion. , 2017, Carbohydrate polymers.
[291] Anetta Barska,et al. Innovations in the food packaging market: active packaging , 2017, European Food Research and Technology.
[292] Lembe S. Magwaza,et al. Evaluating the efficacy of moringa leaf extract, chitosan and carboxymethyl cellulose as edible coatings for enhancing quality and extending postharvest life of avocado (Persea americana Mill.) fruit , 2017 .
[293] Feng Chen,et al. Plant-Derived Terpenes: A Feedstock for Specialty Biofuels. , 2017, Trends in biotechnology.
[294] D. Sivakumar,et al. Shelf life extension of fresh fruit and vegetables by chitosan treatment , 2017, Critical reviews in food science and nutrition.
[295] Angeline W. Maina,et al. Antifungal Activity of Essential Oil of Eucalyptus camaldulensis Dehnh. against Selected Fusarium spp. , 2017, International journal of microbiology.
[296] M. Faleiro,et al. Effect of edible coatings with essential oils on the quality of red raspberries over shelf-life. , 2016, Journal of the science of food and agriculture.
[297] M. Soumanou,et al. CHEMICAL COMPOSITION AND BIOLOGICAL ACTIVITY OF ESSENTIAL OIL FROM MENTHA PIPERITA L . LEAVES ON THE QUALITY OF MANGO PUREE DURING STORAGE , 2017 .
[298] M. Rezaei,et al. Development of flexible bactericidal films based on poly(lactic acid) and essential oil and its effectiveness to reduce microbial growth of refrigerated rainbow trout , 2016 .
[299] M. Zina,et al. Seasonal changes in essential oil composition of Aristolochia longa L. ssp. paucinervis Batt. (Aristolochiaceae) roots and its antimicrobial activity , 2016 .
[300] Juraj Medo,et al. Antifungal activity of lemon, eucalyptus, thyme, oregano, sage and lavender essential oils against Aspergillus niger and Aspergillus tubingensis isolated from grapes , 2016 .
[301] Y. Shahbazi. Chemical Composition and In Vitro Antibacterial Activity of Mentha spicata Essential Oil against Common Food-Borne Pathogenic Bacteria , 2015, Journal of pathogens.
[302] A. F. Mendes,et al. Evaluation of the anti-inflammatory, anti-catabolic and pro-anabolic effects of E-caryophyllene, myrcene and limonene in a cell model of osteoarthritis. , 2015, European journal of pharmacology.
[303] S. F. Forsido,et al. Essential Oils to Control Colletotrichum musae in vitro and in vivo on Banana Fruits , 2015 .
[304] J. Saraiva,et al. Chemical composition and antibacterial and antioxidant properties of commercial essential oils , 2013 .
[305] C. Tan,et al. Carrageenan as an alternative coating for papaya (Carica papaya L. cv. Eksotika) , 2013 .
[306] E. Térres-Rojas,et al. Use of chitosan-based edible coatings in combination with other natural compounds, to control Rhizopus stolonifer and Escherichia coli DH5α in fresh tomatoes , 2012 .
[307] Qipeng Yuan,et al. In vitro antimicrobial effects and mechanism of action of selected plant essential oil combinations against four food-related microorganisms , 2011 .
[308] A. Chiralt,et al. Use of Essential Oils in Bioactive Edible Coatings: A Review , 2011 .
[309] Opinion of the Scientific Committee on Food on Methyleugenol (4-Allyl-1,2-dimethoxybenzene) , 2001 .