Phytochemical screening, biological evaluation, and molecular docking studies of aerial parts of Trigonella hamosa (branched Fenugreek)
暂无分享,去创建一个
Muhammad Zeeshan | R. Nazar | I. Ahmad | H. Rao | Kashif ur Rehman Khan | Saeed Ahmad | Bilal Ahmad Ghalloo | Jawad Nasim | Abdul Basit | Hanan Y.Aati | Muhammad Nadeem Shehzad
[1] R. Capasso,et al. Broad-spectrum cannabis oil ameliorates reserpine-induced fibromyalgia model in mice. , 2022, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[2] A. Basit,et al. GC–MS profiling, phytochemical and biological investigation of aerial parts of Leucophyllum frutescens (Berl.) I.M. Johnst (Cenizo) , 2022, South African Journal of Botany.
[3] Musaddique Hussain,et al. Chemical Composition and Biological Evaluation of Typha domingensis Pers. to Ameliorate Health Pathologies: In Vitro and In Silico Approaches , 2022, BioMed research international.
[4] A. Khusro,et al. Anti-pathogenic, anti-diabetic, anti-inflammatory, antioxidant, and wound healing efficacy of Datura metel L. leaves , 2022, Arabian Journal of Chemistry.
[5] Musaddique Hussain,et al. Phytochemical Profiling, In Vitro Biological Activities, and In-Silico Molecular Docking Studies of Typha domingensis , 2022, Arabian Journal of Chemistry.
[6] R. Capasso,et al. Neuropharmacological and Antidiarrheal Potentials of Duabanga grandiflora (DC.) Walp. Stem Bark and Prospective Ligand–Receptor Interactions of Its Bioactive Lead Molecules , 2022, Current issues in molecular biology.
[7] R. Capasso,et al. Cruciferous Vegetables and Their Bioactive Metabolites: from Prevention to Novel Therapies of Colorectal Cancer , 2022, Evidence-based complementary and alternative medicine : eCAM.
[8] A. Basit,et al. Profiling of phytochemicals from aerial parts of Terminalia neotaliala using LC-ESI-MS2 and determination of antioxidant and enzyme inhibition activities , 2022, PloS one.
[9] Musaddique Hussain,et al. Phytochemical Profiling, In Vitro Biological Activities, and In Silico Molecular Docking Studies of Dracaena reflexa , 2022, Molecules.
[10] N. Finiuk,et al. Antimicrobial action of arylsulfonamides bearing (aza)norbornane and related motifs: evaluation of new promising anti-MRSA agents , 2022, Medicinal Chemistry Research.
[11] I. Imtiaz Ahmed,et al. Chemical profiling of Justicia vahlii Roth. (Acanthaceae) using UPLC-QTOF-MS and GC-MS analysis and evaluation of acute oral toxicity, antineuropathic and antioxidant activities. , 2021, Journal of ethnopharmacology.
[12] Roohi Zaman,et al. Efficacy of herbal anti-microbial soap in Tinea corporis: A randomized controlled study. , 2021, Journal of ethnopharmacology.
[13] R. Capasso,et al. Antiproliferative and palliative activity of flavonoids in colorectal cancer. , 2021, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[14] M. Abualhasan,et al. Chemical compositions, antibacterial, antifungal and cytotoxic effects of Alhagi mannifera five extracts , 2021, Journal of complementary & integrative medicine.
[15] Md. Saidur Rahman,et al. In vivo Neuropharmacological Potential of Gomphandra tetrandra (Wall.) Sleumer and in-silico Study against β-Amyloid Precursor Protein , 2021, Processes.
[16] P. Wadhwa,et al. Alpha‐amylase as molecular target for treatment of diabetes mellitus: A comprehensive review , 2021, Chemical biology & drug design.
[17] Weibin Ma,et al. Natural flavour (E,E)-2,4-heptadienal as a potential fumigant for control of Aspergillus flavus in stored peanut seeds: Finding new antifungal agents based on preservative sorbic acid , 2021, Food Control.
[18] Usama A. Mahalel,et al. Metabolomic Profiling and Antioxidant Activity of Trigonella foenum-graecum and Trigonella hamosa , 2021 .
[19] Dian Maria Ulfa,et al. Analysis of Bioactive compounds from methanol extract of Diadema setosum sea urchin gonads using gas Chromatography-mass spectrometry , 2021 .
[20] Varinder Singh,et al. Improvement of cognitive function in mice by Citrus reticulata var. kinnow via modulation of central cholinergic system and oxidative stress , 2021, Metabolic Brain Disease.
[21] Xiaoxiao Feng,et al. (E)-2-Heptenal in Soymilk: A Nonenzymatic Formation Route and the Impact on the Flavor Profile. , 2020, Journal of agricultural and food chemistry.
[22] R. Capasso,et al. Pharmacological insights and prediction of lead bioactive isolates of Dita bark through experimental and computer-aided mechanism. , 2020, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[23] Soumya Krishnamurthy,et al. GC–MS analysis of phytoconstituents from Amomum nilgiricum and molecular docking interactions of bioactive serverogenin acetate with target proteins , 2020, Scientific Reports.
[24] G. Zengin,et al. In vitro studies on different extracts of fenugreek (Trigonella spruneriana BOISS.): Phytochemical profile, antioxidant activity, and enzyme inhibition potential. , 2020, Journal of food biochemistry.
[25] Nazim Uddin Emon,et al. Investigation of antinociceptive, anti-inflammatory and thrombolytic activity of Caesalpinia digyna (Rottl.) leaves by experimental and computational approaches , 2020, Advances in Traditional Medicine.
[26] Sudisha Jogaiah,et al. Biosynthesis and characterization of Dillenia indica ‐mediated silver nanoparticles and their biological activity , 2020 .
[27] U. Anand,et al. A Comprehensive Review on Medicinal Plants as Antimicrobial Therapeutics: Potential Avenues of Biocompatible Drug Discovery , 2019, Metabolites.
[28] G. B. Bajracharya,et al. A High Antibacterial Efficacy of Fruits of Litsea cubeba (Lour.) Pers from Nepal. GC-MS and Antioxidative Capacity Analyses , 2019, Pharmacognosy Journal.
[29] A. Basit,et al. In vitro bioactivity of extracts from seeds of Cassia absus L. growing in Pakistan , 2019, Journal of Herbal Medicine.
[30] A. Sleiman,et al. Antimicrobial Activity of Polyphenols and Alkaloids in Middle Eastern Plants , 2019, Front. Microbiol..
[31] R. Abbas. Chemical Constituents of the Goat Margarine and Antibacterial Activity against Bacterial Pathogens in Sudan , 2019, Journal of Pure and Applied Microbiology.
[32] Juan Francisco Sánchez-Tejeda,et al. In Silico Studies on Compounds Derived from Calceolaria: Phenylethanoid Glycosides as Potential Multitarget Inhibitors for the Development of Pesticides , 2018, Biomolecules.
[33] I. A. Dewi,et al. Phenolic and volatile compounds, antioxidant activity, and sensory properties of virgin coconut oil: Occurrence and their relationship with quality , 2018 .
[34] T. Shin,et al. Conjugated polymer nano-ellipsoids assembled with octanoic acid and their polyurethane nanocomposites with simultaneous thermal storage and antibacterial activity , 2018, Journal of Industrial and Engineering Chemistry.
[35] M. K. Sateesh,et al. In vitro antidiabetic activities and GC-MS phytochemical analysis of Ximenia americana extracts , 2017 .
[36] Chuang Liu,et al. In silico polypharmacology of natural products , 2017, Briefings Bioinform..
[37] S. Basu,et al. Fenugreek (Trigonella foenum-graecum L.): An Important Medicinal and Aromatic Crop , 2017 .
[38] K. M. Nukala,et al. Acetylcholinesterase inhibitory activity of stigmasterol & hexacosanol is responsible for larvicidal and repellent properties of Chromolaena odorata. , 2017, Biochimica et biophysica acta. General subjects.
[39] Sheela Chandra,et al. Flavonoids: an overview , 2016, Journal of Nutritional Science.
[40] Jun Ho Kim,et al. Antiplatelet and Antithrombotic Effects of the Extract of Lindera obtusiloba Leaves , 2016, Biomolecules & therapeutics.
[41] S. Sayadi,et al. LC-MS–MS and GC-MS analyses of biologically active extracts and fractions from Tunisian Juniperus phoenice leaves , 2016, Pharmaceutical biology.
[42] Li Ye,et al. The Traditional Medicine and Modern Medicine from Natural Products , 2016, Molecules.
[43] H. Yildiz. Chemical Composition, Antimicrobial, and Antioxidant Activities of Essential Oil and Ethanol Extract of Coriandrum sativum L. Leaves from Turkey , 2016 .
[44] Wen Qin,et al. Antioxidant activity and chemical compositions of essential oil and ethanol extract of Chuanminshen violaceum , 2015 .
[45] M. Soliman,et al. RT-PCR ANALYSIS OF GENES EXPRESSION TO EVALUATE THE BIOMEDICAL IMPORTANCE OF MEDICAL-HERBAL EXTRACTS IN DIABETES TREATMENT , 2015 .
[46] N. Chandrasekaran,et al. Antioxidant and antibacterial activity of Chaetomorpha antennina against shrimp pathogen Vibrio parahaemolyticus , 2014 .
[47] K. Akimitsu,et al. Multiple roles of plant volatiles in jasmonate-induced defense response in rice , 2014, Plant signaling & behavior.
[48] M. Mansour,et al. Fatty Acid Methyl Esters from Air-Dried Wood, Bark, and Leaves of Brachychiton diversifolius R. Br: Antibacterial, Antifungal, and Antioxidant Activities , 2014 .
[49] Edward W. Lowe,et al. Computational Methods in Drug Discovery , 2014, Pharmacological Reviews.
[50] N. Sahoo,et al. Herbal drug regulation and commercialization: an Indian industry perspective. , 2013, Journal of alternative and complementary medicine.
[51] M. Mahomoodally. Traditional Medicines in Africa: An Appraisal of Ten Potent African Medicinal Plants , 2013, Evidence-based complementary and alternative medicine : eCAM.
[52] S. Rastogi,et al. Indian Traditional Ayurvedic System of Medicine and Nutritional Supplementation , 2013, Evidence-based complementary and alternative medicine : eCAM.
[53] J. Mohamed,et al. The role of oxidative stress and antioxidants in diabetic complications. , 2012, Sultan Qaboos University medical journal.
[54] P. Castilho,et al. Evaluation of the antimicrobial and antioxidant activities of essential oils, extracts and their main components from oregano from Madeira Island, Portugal , 2012 .
[55] J. Um,et al. Antiinflammatory Effect of Oldenlandia diffusa and its Constituent, Hentriacontane, through Suppression of Caspase‐1 Activation in Mouse Peritoneal Macrophages , 2011, Phytotherapy research : PTR.
[56] Philomena George. Concerns regarding the safety and toxicity of medicinal plants - An overview. , 2011 .
[57] F. Nazzi,et al. Octanoic acid confers to royal jelly varroa-repellent properties , 2009, Naturwissenschaften.
[58] E. Yeşilada,et al. Bioassay-guided isolation of anti-inflammatory and antinociceptive glycoterpenoids from the flowers of Verbascum lasianthum Boiss. ex Bentham. , 2007, Journal of ethnopharmacology.
[59] A. Rosas-Romero,et al. Biological Activity of “Sanguinaria” (Justicia secunda) Extracts , 2002 .
[60] A. Pauli. Antimicrobial properties of essential oil constituents , 2001 .
[61] M. Alagawany,et al. A review on the beneficial effect of thymol on health and production of fish , 2020 .
[62] B. Poudel,et al. The Phytochemical and Nutritional analysis and biological activity of Tectaria coadunate Linn , 2019 .
[63] Shehzad,et al. A review of bioactivity guided medicinal uses and therapeutic potentials of noxious weed (Alternanthera sessilis) , 2019 .
[64] Ranjith,et al. In silico antidiabetic activity of bioactive compounds in Ipomoea mauritiana Jacq , 2019 .
[65] C. Cui,et al. A comparative study of risk factors for corneal infection in diabetic and non-diabetic patients. , 2018, International journal of ophthalmology.
[66] M. D. Shah,et al. Chemical composition and antioxidant activity of essential oil of leaves and flowers of Alternanthera sessilis red from Sabah , 2016 .
[67] S. V.K.,et al. Antidiabetic Activity of Glycoside Isolated from Gymnema sylvestre in Streptozotocin Induced Diabetic Rats , 2008 .
[68] P. Chang,et al. Headspace-solid phase microextraction (HS-SPME) analysis of oxidized volatiles from free fatty acids (FFA) and application for measuring hydrogen donating antioxidant activity , 2007 .
[69] Phyto-chemical Characterization of Aeschynanthus sikkimensis (Clarke) Stapf. (Gesneriaceae) using GC-MS , 2022, International Journal of Pharmaceutical Research.