Sakuranetin and its therapeutic potentials – a comprehensive review
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Md. Junaid | S. S. Afrose | Yeasmin Akter | S. Tawata | M. Shahinozzaman | B. Basak | Afsana Nahrin | Rashiduzzaman Emran | M. Junaid | Y. Akter
[1] M. Koffas,et al. De novo biosynthesis of complex natural product sakuranetin using modular co-culture engineering , 2020, Applied Microbiology and Biotechnology.
[2] D. Ribeiro,et al. Inhibition of MAPK and STAT3-SOCS3 by Sakuranetin Attenuated Chronic Allergic Airway Inflammation in Mice , 2019, Mediators of inflammation.
[3] Hong Wang,et al. Protective effect of sakuranetin in brain cells of dementia model rats. , 2019, Cellular and molecular biology.
[4] D. Nieman,et al. Flavonoid Mixture Inhibits Mycobacterium tuberculosis Survival and Infectivity , 2019, Molecules.
[5] G. Alves,et al. Exploring the phenolic profile, antioxidant, antidiabetic and anti-hemolytic potential of Prunus avium vegetal parts. , 2019, Food research international.
[6] M. Bojić,et al. Characterization of O-demethylations and Aromatic Hydroxylations Mediated by Cytochromes P450 in the Metabolism of Flavonoid Aglycons , 2019, Croatica chemica acta.
[7] Y. Yamauchi,et al. Sakuranetin downregulates inducible nitric oxide synthase expression by affecting interleukin-1 receptor and CCAAT/enhancer-binding protein β , 2018, Journal of Natural Medicines.
[8] Soon-Ho Yim,et al. Suppression of influenza B virus replication by sakuranetin and mode of its action , 2018, Phytotherapy research : PTR.
[9] J. C. Romero-Benavides,et al. Phytochemical Study and Evaluation of the Cytotoxic Properties of Methanolic Extract from Baccharis obtusifolia , 2018, International journal of medicinal chemistry.
[10] M. D. S. de Sousa Cartágenes,et al. Candida Infections and Therapeutic Strategies: Mechanisms of Action for Traditional and Alternative Agents , 2018, Front. Microbiol..
[11] Chang-Young Jang,et al. Hepatic Metabolism of Sakuranetin and Its Modulating Effects on Cytochrome P450s and UDP-Glucuronosyltransferases , 2018, Molecules.
[12] Naira Nayeem,et al. Flavonoids : A Potential Group of Phytoconstituents against Mycobacterial Infections = الفلافونوئيدات : مجموعة كامنة من المركبات النباتية المضادة للإصابات ببكتريا الدرن (المايكوبكتيرية) , 2018 .
[13] H. Choi. In Vitro Antiviral Activity of Sakuranetin against Human Rhinovirus 3 , 2017, Osong public health and research perspectives.
[14] B. Tekwani,et al. Interactions of Desmethoxyyangonin, a Secondary Metabolite from Renealmia alpinia, with Human Monoamine Oxidase-A and Oxidase-B , 2017, Evidence-based complementary and alternative medicine : eCAM.
[15] L. Kremer,et al. Natural and Synthetic Flavonoids as Potent Mycobacterium tuberculosis UGM Inhibitors. , 2017, Chemistry.
[16] M. Hasegawa,et al. Identification of Sternbin and Naringenin as Detoxified Metabolites from the Rice Flavanone Phytoalexin Sakuranetin by Pyricularia oryzae , 2017, Chemistry & biodiversity.
[17] N. Câmara,et al. Prophylactic and therapeutic treatment with the flavonone sakuranetin ameliorates LPS-induced acute lung injury. , 2017, American journal of physiology. Lung cellular and molecular physiology.
[18] P. Alam,et al. Inter-species comparative antioxidant assay and HPTLC analysis of sakuranetin in the chloroform and ethanol extracts of aerial parts of Rhus retinorrhoea and Rhus tripartita , 2017, Pharmaceutical biology.
[19] D. H. Silva,et al. Oleanonic acid from Lippia lupulina (Verbenaceae) shows strong in vitro antileishmanial and antitrypanosomal activity , 2016 .
[20] Mingquan Guo,et al. Analysis of Flavonoids in Rhamnus davurica and Its Antiproliferative Activities , 2016, Molecules.
[21] Ki-Young Kim,et al. Sakuranetin Inhibits Inflammatory Enzyme, Cytokine, and Costimulatory Molecule Expression in Macrophages through Modulation of JNK, p38, and STAT1 , 2016, Evidence-based complementary and alternative medicine : eCAM.
[22] M. Cho,et al. The Methoxyflavonoid Isosakuranetin Suppresses UV-B-Induced Matrix Metalloproteinase-1 Expression and Collagen Degradation Relevant for Skin Photoaging , 2016, International journal of molecular sciences.
[23] N. Câmara,et al. Sakuranetin reverses vascular peribronchial and lung parenchyma remodeling in a murine model of chronic allergic pulmonary inflammation. , 2016, Acta histochemica.
[24] K. Sakamoto,et al. Sakuranetin Induces Melanogenesis in B16BL6 Melanoma Cells through Inhibition of ERK and PI3K/AKT Signaling Pathways , 2016, Phytotherapy research : PTR.
[25] T. Yokota,et al. Jasmonoyl-l-isoleucine is required for the production of a flavonoid phytoalexin but not diterpenoid phytoalexins in ultraviolet-irradiated rice leaves , 2016, Bioscience, biotechnology, and biochemistry.
[26] M. Napimoga,et al. Antinoceptive and Anti-inflammatory Activities of the Ethanolic Extract, Fractions and Flavones Isolated from Mimosa tenuiflora (Willd.) Poir (Leguminosae) , 2016, PloS one.
[27] R. Lamuela-Raventós,et al. Metabolic profile of naringenin in the stomach and colon using liquid chromatography/electrospray ionization linear ion trap quadrupole-Orbitrap-mass spectrometry (LC-ESI-LTQ-Orbitrap-MS) and LC-ESI-MS/MS. , 2016, Journal of pharmaceutical and biomedical analysis.
[28] P. Sung,et al. New Flavones, a 2-(2-Phenylethyl)-4H-chromen-4-one Derivative, and Anti-Inflammatory Constituents from the Stem Barks of Aquilaria sinensis , 2015, Molecules.
[29] H. Isoda,et al. Cyanidin-3-glucoside derived from black soybeans ameliorate type 2 diabetes through the induction of differentiation of preadipocytes into smaller and insulin-sensitive adipocytes. , 2015, The Journal of nutritional biochemistry.
[30] N. Câmara,et al. A flavanone from Baccharis retusa (Asteraceae) prevents elastase-induced emphysema in mice by regulating NF-κB, oxidative stress and metalloproteinases , 2015, Respiratory Research.
[31] M. Sauvain,et al. Leishmanicidal compounds and potent PPARγ activators from Renealmia thyrsoidea (Ruiz & Pav.) Poepp. & Endl. , 2014, Journal of ethnopharmacology.
[32] L. Hong,et al. Ethanol Extract and Isolated Constituents from Artemisia Dracunculus Inhibit Esophageal Squamous Cell Carcinoma and Induce Apoptotic Cell Death , 2014, Drug Research.
[33] Jian Chen,et al. Modular Optimization of Heterologous Pathways for De Novo Synthesis of (2S)-Naringenin in Escherichia coli , 2014, PloS one.
[34] A. Belayew,et al. Effects of chemopreventive natural products on non-homologous end-joining DNA double-strand break repair. , 2014, Mutation research. Genetic toxicology and environmental mutagenesis.
[35] J. Lago,et al. Structural Crystalline Characterization of Sakuranetin — An Antimicrobial Flavanone from Twigs of Baccharis retusa (Asteraceae) , 2014, Molecules.
[36] M. Iino,et al. OsJAR1 Contributes Mainly to Biosynthesis of the Stress-Induced Jasmonoyl-Isoleucine Involved in Defense Responses in Rice , 2013, Bioscience, biotechnology, and biochemistry.
[37] Joong-Hoon Ahn,et al. Biosynthesis of bioactive O-methylated flavonoids in Escherichia coli , 2013, Applied Microbiology and Biotechnology.
[38] I. Tiberio,et al. Flavonone treatment reverses airway inflammation and remodelling in an asthma murine model , 2013, British journal of pharmacology.
[39] Jong-Hwa Park,et al. Cytotoxic property of ultraviolet-induced rice phytoalexins to human colon carcinoma HCT-116 cells , 2013, Journal of the Korean Society for Applied Biological Chemistry.
[40] Qin-Shi Zhao,et al. Isoprenylated flavonoid and adipogenesis-promoting constituents of Dodonaea viscosa. , 2012, Journal of natural products.
[41] A. Tempone,et al. In vitro antileishmanial and antitrypanosomal activities of flavanones from Baccharis retusa DC. (Asteraceae). , 2012, Experimental parasitology.
[42] A. Bones,et al. Phytoalexins in defense against pathogens. , 2012, Trends in plant science.
[43] O. Kodama,et al. Accumulation of salicylic acid, jasmonic acid and phytoalexins in rice, Oryza sativa, infested by the white-backed planthopper, Sogatella furcifera (Hemiptera: Delphacidae) , 2012, Applied Entomology and Zoology.
[44] Xianghua Li,et al. A convenient method for simultaneous quantification of multiple phytohormones and metabolites: application in study of rice-bacterium interaction , 2012, Plant Methods.
[45] I. Raskin,et al. Qualitative variation of anti-diabetic compounds in different tarragon (Artemisia dracunculus L.) cytotypes. , 2011, Fitoterapia.
[46] J. Hardin,et al. Early Prediction of Cardiac Allograft Vasculopathy and Heart Transplant Failure , 2011, American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons.
[47] V. Tam,et al. Disposition of naringenin via glucuronidation pathway is affected by compensating efflux transporters of hydrophilic glucuronides. , 2009, Molecular pharmaceutics.
[48] N. Davies,et al. Stereospecific analysis of sakuranetin by high-performance liquid chromatography: pharmacokinetic and botanical applications. , 2008, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[49] Hualiang Jiang,et al. Three flavonoids targeting the β‐hydroxyacyl‐acyl carrier protein dehydratase from Helicobacter pylori: Crystal structure characterization with enzymatic inhibition assay , 2008, Protein science : a publication of the Protein Society.
[50] K. Vafeiadou,et al. The neuroprotective potential of flavonoids: a multiplicity of effects , 2008, Genes & Nutrition.
[51] Daigo Abe,et al. Sakuranetin induces adipogenesis of 3T3-L1 cells through enhanced expression of PPARgamma2. , 2008, Biochemical and biophysical research communications.
[52] Chang-Syun Yang,et al. Dihydroagarofuranoid sesquiterpenes, a lignan derivative, a benzenoid, and antitubercular constituents from the stem of Microtropis japonica. , 2008, Journal of natural products.
[53] R. Gil,et al. Antifungal activity of Heterothalamus alienus metabolites , 2008, Phytotherapy research : PTR.
[54] G. Besra,et al. Flavonoid inhibitors as novel antimycobacterial agents targeting Rv0636, a putative dehydratase enzyme involved in Mycobacterium tuberculosis fatty acid synthase II. , 2007, Microbiology.
[55] E. Kuepeli,et al. A new therapeutic approach in Alzheimer disease: some novel pyrazole derivatives as dual MAO-B inhibitors and antiinflammatory analgesics. , 2007, Bioorganic & medicinal chemistry.
[56] M. Recio,et al. Effects of naturally occurring dihydroflavonols from Inula viscosa on inflammation and enzymes involved in the arachidonic acid metabolism. , 2007, Life sciences.
[57] M. Iinuma,et al. Allergy-preventive flavonoids from Xanthorrhoea hastilis. , 2007, Chemical & pharmaceutical bulletin.
[58] I. Niopas,et al. Pharmacokinetics of the citrus flavanone aglycones hesperetin and naringenin after single oral administration in human subjects , 2007, European Journal of Clinical Nutrition.
[59] D. Fisher,et al. Melanocyte biology and skin pigmentation , 2007, Nature.
[60] Francisco Solano,et al. Hypopigmenting agents: an updated review on biological, chemical and clinical aspects. , 2006, Pigment cell research.
[61] A. Mithöfer,et al. Flavones and flavone synthases. , 2005, Phytochemistry.
[62] R. Bye,et al. Antimycobacterial agents from selected Mexican medicinal plants , 2005, The Journal of pharmacy and pharmacology.
[63] Shuzhong Zhang,et al. Structure activity relationships and quantitative structure activity relationships for the flavonoid-mediated inhibition of breast cancer resistance protein. , 2005, Biochemical pharmacology.
[64] G. Agrawal,et al. The rice (Oryza sativa) blast lesion mimic mutant, blm, may confer resistance to blast pathogens by triggering multiple defense-associated signaling pathways. , 2005, Plant physiology and biochemistry : PPB.
[65] T. Hirano,et al. Flavonoids such as Luteolin, Fisetin and Apigenin Are Inhibitors of Interleukin-4 and Interleukin-13 Production by ActivatedHuman Basophils , 2004, International Archives of Allergy and Immunology.
[66] H. Nagai,et al. Inhibition of syk activity and degranulation of human mast cells by flavonoids. , 2003, Biological & pharmaceutical bulletin.
[67] A. Galal,et al. O-demethylation and sulfation of 7-methoxylated flavanones by Cunninghamella elegans. , 2003, Chemical & pharmaceutical bulletin.
[68] Nalin Rastogi,et al. The mycobacteria: an introduction to nomenclature and pathogenesis. , 2001, Revue scientifique et technique.
[69] I. Serizawa,et al. Effects of luteolin, quercetin and baicalein on immunoglobulin E‐mediated mediator release from human cultured mast cells , 2000, Clinical and experimental allergy : journal of the British Society for Allergy and Clinical Immunology.
[70] O. Kodama,et al. Methionine-induced Phytoalexin Production in Rice Leaves , 2000, Bioscience, biotechnology, and biochemistry.
[71] A. Romanha,et al. Trypanocidal flavonoids from Trixis vauthieri. , 1997, Journal of natural products.
[72] R. Rakwal,et al. A methyltransferase for synthesis of the flavanone phytoalexin sakuranetin in rice leaves. , 1996, Biochemical and biophysical research communications.
[73] A. Rojas,et al. Smooth muscle relaxing compounds from Dodonaea viscosa. , 1996, Planta medica.
[74] J. Koga,et al. Phytocassanes A, B, C and D, novel diterpene phytoalexins from rice, Oryza sativa L. , 1995 .
[75] E. Farmer,et al. Two Classes of Plant Antibiotics: Phytoalexins versus "Phytoanticipins" , 1994, The Plant cell.
[76] J M Cassady,et al. Isolation of potential cancer chemopreventive agents from Eriodictyon californicum. , 1992, Journal of natural products.
[77] J. Gressel,et al. Flavanone Glycoside Biosynthesis in Citrus: Chalcone Synthase, UDP-Glucose:Flavanone-7-O-Glucosyl-Transferase and -Rhamnosyl-Transferase Activities in Cell-Free Extracts. , 1989, Plant physiology.
[78] O. Kodama,et al. Novel Phytoalexins (Oryzalexins A, B and C) Isolated from Rice Blast Leaves Infected with Pyricularia oryzae. Part I: Isolation, Characterization and Biological Activities of Oryzalexins , 1985 .
[79] W. Knogge,et al. Purification, characterization, and kinetic mechanism of S-adenosyl-L-methionine: vitexin 2"-O-rhamnoside 7-O-methyltransferase of Avena sativa L. , 1984, European journal of biochemistry.
[80] J. P. Blakeman,et al. SEASONAL OCCURRENCE OF AN ANTIMICROBIAL FLAVANONE, SAKURANETIN, ASSOCIATED WITH GLANDS ON LEAVES OF RIBES NIGRUM , 1982 .
[81] A. Forrestel,et al. CRYPTOCOCCOSIS , 1982, The Lancet.
[82] H. Aft. Chemistry of Dihydroquercetin. I. Acetate Derivatives1a , 1961 .
[83] M. Miyazawa,et al. Antimutagenic Activity of Sakuranetin from Prunus Jamasakura , 2003 .
[84] G. Folkers,et al. Cytotoxic and antibacterial dihydrochalcones from Piper aduncum. , 1994, Journal of natural products.
[85] Y. Asahina. Ueber das Sakuranin, ein neues Glykosid der Rinde von Prunus Pseudo‐Cerasus Lindl. var. Sieboldi Maxim , 1908 .