A new volatile antimicrobial agent-releasing patch for preserving fresh foods
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A. Shabtay-Orbach | B. Mizrahi | G. Tenenbaum | A. Shagan | Boris Rozenblit | Enav Corem Salkmon | Ayelet Shabtay-Orbach
[1] E. Segal,et al. Antimicrobial LDPE/EVOH Layered Films Containing Carvacrol Fabricated by Multiplication Extrusion , 2018, Polymers.
[2] P. Suppakul,et al. Active and intelligent packaging: The indication of quality and safety , 2018, Critical reviews in food science and nutrition.
[3] E. Sanfuentes,et al. Thermoplastic starch/clay nanocomposites loaded with essential oil constituents as packaging for strawberries − In vivo antimicrobial synergy over Botrytis cinerea , 2017 .
[4] P. Espitia,et al. Trends in antimicrobial food packaging systems: Emitting sachets and absorbent pads , 2016 .
[5] H. Park,et al. Multiple-unit tablet of probiotic bacteria for improved storage stability, acid tolerability, and in vivo intestinal protective effect , 2016, Drug design, development and therapy.
[6] H. Kharkwal,et al. Antimicrobial food packaging: potential and pitfalls , 2015, Front. Microbiol..
[7] Ester Segal,et al. Antibacterial and antifungal LDPE films for active packaging , 2015 .
[8] M. Magnani,et al. Synergistic inhibition of bacteria associated with minimally processed vegetables in mixed culture by carvacrol and 1,8-cineole , 2015 .
[9] C. Nerín,et al. Influence of pH and temperature variations on vapor phase action of an antifungal food packaging against five mold strains , 2015 .
[10] M. Turner,et al. Isolation of lactic acid bacteria with antifungal activity against the common cheese spoilage mould Penicillium commune and their potential as biopreservatives in cheese , 2014 .
[11] H. Shokri,et al. Antifungal efficacy of thymol, carvacrol, eugenol and menthol as alternative agents to control the growth of food-relevant fungi. , 2014, Journal de mycologie medicale.
[12] Hrvoje Pavlović,et al. Antifungal effect of eugenol and carvacrol against foodborne pathogens Aspergillus carbonarius and Penicillium roqueforti in improving safety of fresh-cut watermelon , 2014, Journal of intercultural ethnopharmacology.
[13] W. Du,et al. Increasing strawberry shelf-life with carvacrol and methyl cinnamate antimicrobial vapors released from edible films , 2014 .
[14] E. Domian,et al. Flowability and Homogeneity of Food Powders with Plated Oil Ingredient , 2013 .
[15] K. Sonneveld,et al. Migration of antimicrobial agents from starch-based films into a food simulant , 2013 .
[16] C. Phillips,et al. The use of Citri-V™® — An antimicrobial citrus essential oil vapour for the control of Penicillium chrysogenum, Aspergillus niger and Alternaria alternata in vitro and on food , 2012 .
[17] R. Scaffaro,et al. Study on carvacrol and cinnamaldehyde polymeric films: mechanical properties, release kinetics and antibacterial and antibiofilm activities , 2012, Applied Microbiology and Biotechnology.
[18] T. Michailides,et al. Sulfur dioxide fumigation alone or in combination with CO2-enriched atmosphere extends the market life of highbush blueberry fruit , 2012 .
[19] J. M. Cruz,et al. Active and Intelligent Packaging for the Food Industry , 2012 .
[20] R. Meyer,et al. Essential Oils in Food Preservation: Mode of Action, Synergies, and Interactions with Food Matrix Components , 2012, Front. Microbio..
[21] Fei Liu,et al. Synergistic antimicrobial activities of natural essential oils with chitosan films. , 2011, Journal of agricultural and food chemistry.
[22] Cengiz Caner,et al. The Applications of ‘active packaging and chlorine dioxide’ for extended shelf life of fresh strawberries , 2011 .
[23] M. J. Galotto,et al. The antimicrobial activity of microencapsulated thymol and carvacrol. , 2011, International journal of food microbiology.
[24] M. Nishibuchi,et al. Simultaneous detection of Salmonella spp., Salmonella Typhi and Salmonella Typhimurium in sliced fruits using multiplex PCR , 2011 .
[25] G. González-Aguilar,et al. Effect of Maturity Stage of Papaya Maradol on Physiological and Biochemical Parameters , 2010 .
[26] Shujuan Yu,et al. Preparation and characterisation of crosslinked waxy potato starch , 2009 .
[27] N. Tzortzakis,et al. Impact of cinnamon oil-enrichment on microbial spoilage of fresh produce. , 2009 .
[28] Paul Tobback,et al. Active and intelligent food packaging: legal aspects and safety concerns , 2008 .
[29] D. W. Schaefer,et al. Temperature responsive hydroxypropyl cellulose for encapsulation , 2008 .
[30] O. Martín‐Belloso,et al. Bio-preservation of fresh-cut tomatoes using natural antimicrobials , 2008 .
[31] Olga Martín-Belloso,et al. Edible alginate-based coating as carrier of antimicrobials to improve shelf-life and safety of fresh-cut melon. , 2008, International journal of food microbiology.
[32] N. Ali,et al. Pharmaceutical significance of cellulose: A review , 2008 .
[33] P. López,et al. Development of flexible antimicrobial films using essential oils as active agents. , 2007, Journal of agricultural and food chemistry.
[34] T. Riley,et al. A review of the toxicity of Melaleuca alternifolia (tea tree) oil. , 2006, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[35] Kristl Julijana,et al. Analysis of surface properties of cellulose ethers and drug release from their matrix tablets. , 2006, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[36] J. Pérez-Álvarez,et al. Antioxidant and antibacterial activities of natural extracts: application in beef meatballs. , 2005, Meat science.
[37] J. Golenser,et al. Adhesive tablet effective for treating canker sores in humans. , 2004, Journal of pharmaceutical sciences.
[38] S. Burt,et al. Essential oils: their antibacterial properties and potential applications in foods--a review. , 2004, International journal of food microbiology.
[39] A. Stringaro,et al. Terpinen-4-ol, the main component of Melaleuca alternifolia (tea tree) oil inhibits the in vitro growth of human melanoma cells. , 2004, The Journal of investigative dermatology.
[40] Joseph R. Robinson,et al. Mechanisms of Mucoadhesion of Poly(acrylic Acid) Hydrogels , 1987, Pharmaceutical Research.
[41] G. Nychas,et al. A study of the minimum inhibitory concentration and mode of action of oregano essential oil, thymol and carvacrol , 2001, Journal of applied microbiology.
[42] Ruth M.W. Yeung,et al. Food safety risk: consumer perception and purchase behaviour , 2001 .
[43] J. Warmington,et al. Determining the Antimicrobial Actions of Tea Tree Oil , 2001, Molecules : A Journal of Synthetic Chemistry and Natural Product Chemistry.
[44] James Prescott,et al. On powder flowability , 2000 .
[45] W. Doane,et al. Structure and morphology of baked starch foams , 1998 .
[46] S. Pavlostathis,et al. Physicochemical properties of selected monoterpenes , 1998 .
[47] C. Genigeorgis,et al. Temperature distribution and prevalence of Listeria spp. in domestic, retail and industrial refrigerators in Greece. , 1997, International journal of food microbiology.
[48] Leslie S. Ettre,et al. Static Headspace-Gas Chromatography: Theory and Practice , 1995 .
[49] J. G. Banks,et al. Growth of Listeria monocytogenes at refrigeration temperatures. , 1990, The Journal of applied bacteriology.
[50] S. Radosta,et al. Polymer‐Water Interaction of Maltodextrins. Part I: Water Vapour Sorption and Desorption of Maltodextrin Powders , 1989 .
[51] J. Swinkels,et al. Composition and properties of commercial native starches , 1985 .