Bifusicoumarins A-D: Cytotoxic 3S-dihydroisocoumarins from the entomopathogenic fungus Cordyceps bifusispora (NBRC 108997).
暂无分享,去创建一个
T. Efferth | M. Noji | M. Hegazy | H. Imagawa | T. Mohamed | A. Umeyama | Tatsuro Yoneyama | S. Ban | Abdelsamed I. Elshamy
[1] M. Noji,et al. Antimicrobial metabolite of Cordyceps tenuipes targeting MurE ligase and histidine kinase via in silico study , 2022, Applied Microbiology and Biotechnology.
[2] Lanlan Ge,et al. Coumaroyl and feruloyl flavonoid glycosides from the male flowers of Ginkgo biloba L. and their inhibitory activity against α-glucosidase , 2021, Natural product research.
[3] M. Hegazy,et al. Oxygenated Cembrene Diterpenes from Sarcophyton convolutum: Cytotoxic Sarcoconvolutum A–E , 2021, Marine drugs.
[4] S. Klauck,et al. 2α-Hydroxyalantolactone from Pulicaria undulata: activity against multidrug-resistant tumor cells and modes of action. , 2020, Phytomedicine : international journal of phytotherapy and phytopharmacology.
[5] Taha A. Hussien,et al. New isopimaradiene diterpenoids from kaempulchraol E via Rhizopus oryzae fungal transformation , 2020 .
[6] Shibendra Kumar Lal Karna,et al. Isaria tenuipes Peck, an entomopathogenic fungus from Darjeeling Himalaya: Evaluation of in-vitro antiproliferative and antioxidant potential of its mycelium extract , 2020, BMC Complementary Medicine and Therapies.
[7] M. Noji,et al. A new cerebroside from the entomopathogenic fungus Ophiocordyceps longiissima: Structural-electronic and antioxidant relations. Experimental and DFT calculated studies , 2020 .
[8] Taha A. Hussien,et al. Terpenoid bio-transformations and applications via cell/organ cultures: a systematic review , 2020, Critical reviews in biotechnology.
[9] M. Noji,et al. New alkaloidal metabolites from cultures of entomopathogenic fungus Cordyceps takaomontana NBRC 101754. , 2019, Fitoterapia.
[10] V. Jaitak,et al. Natural products as multidrug resistance modulators in cancer. , 2019, European journal of medicinal chemistry.
[11] T. Efferth,et al. Cytotoxicity of 40 Egyptian plant extracts targeting mechanisms of drug-resistant cancer cells. , 2019, Phytomedicine : international journal of phytotherapy and phytopharmacology.
[12] O. Olatunji,et al. The genus Cordyceps: An extensive review of its traditional uses, phytochemistry and pharmacology. , 2018, Fitoterapia.
[13] T. Efferth,et al. Potential of Central, Eastern and Western Africa Medicinal Plants for Cancer Therapy: Spotlight on Resistant Cells and Molecular Targets , 2017, Front. Pharmacol..
[14] M. Volm,et al. Multiple resistance to carcinogens and xenobiotics: P-glycoproteins as universal detoxifiers , 2017, Archives of Toxicology.
[15] P. Paré,et al. Casbane Diterpenes from Red Sea Coral Sinularia polydactyla. , 2016, Molecules.
[16] G. King,et al. Construction of a Hypervirulent and Specific Mycoinsecticide for Locust Control , 2014, Scientific Reports.
[17] M. Jia,et al. Endophytic fungi with antitumor activities: Their occurrence and anticancer compounds , 2014, Critical reviews in microbiology.
[18] Yafei Huang,et al. A selenosemicarbazone complex with copper efficiently down-regulates the 90-kDa heat shock protein HSP90AA1 and its client proteins in cancer cells , 2014, BMC Cancer.
[19] Jin-Ming Gao,et al. Bioactive metabolites from the mycelia of the basidiomycete Hericium erinaceum , 2014, Natural product research.
[20] Zhihui Zheng,et al. Penostatin Derivatives, a Novel Kind of Protein Phosphatase 1B Inhibitors Isolated from Solid Cultures of the Entomogenous Fungus Isaria tenuipes , 2014, Molecules.
[21] Shiyou Li,et al. Chemical Constituents from the Fruit Body of Chlorophyllum Molybdites , 2013, Natural product communications.
[22] Fenglin Hu,et al. Identification and production of a novel natural pigment, cordycepoid A, from Cordyceps bifusispora , 2013, Applied Microbiology and Biotechnology.
[23] M. Recio,et al. Lanostanoids from fungi: a group of potential anticancer compounds. , 2012, Journal of natural products.
[24] Thomas Efferth,et al. P-glycoprotein and its inhibition in tumors by phytochemicals derived from Chinese herbs. , 2012, Journal of ethnopharmacology.
[25] F. Chang,et al. Tenuipyrone, a novel skeletal polyketide from the entomopathogenic fungus, Isaria tenuipes, cultivated in the presence of epigenetic modifiers. , 2012, Organic letters.
[26] M. Isaka,et al. Beauvericin production by the Lepidoptera pathogenic fungus Isaria tenuipes: Analysis of natural specimens, synnemata from cultivation, and mycelia from liquid-media fermentation , 2011, Natural Products and Bioprospecting.
[27] T. Efferth,et al. First study of oral Artenimol-R in advanced cervical cancer: clinical benefit, tolerability and tumor markers. , 2011, Anticancer research.
[28] Kee-Young Kim,et al. Synnemata Production Using Silkworm Variety, Female Yangwonjam by Isaria tenuipes , 2011, Mycobiology.
[29] N. Hywel-Jones,et al. Isariotins G–J from cultures of the Lepidoptera pathogenic fungus Isaria tenuipes , 2011 .
[30] Nicholas H Oberlies,et al. Fingolimod (FTY720): a recently approved multiple sclerosis drug based on a fungal secondary metabolite. , 2011, Journal of natural products.
[31] T. Efferth. Cancer Therapy with Natural Products and Medicinal Plants , 2010, Planta medica.
[32] A. Arnold,et al. Maximizing chemical diversity of fungal metabolites: biogenetically related Heptaketides of the endolichenic fungus Corynespora sp. (1). , 2010, Journal of natural products.
[33] A. Gamal-Eldeen,et al. A crystal lapiferin derived from Ferula vesceritensis induces apoptosis pathway in MCF-7 breast cancer cells , 2010, Natural product research.
[34] M. F. Hegazy,et al. Bioactive jatrophane diterpenes from Euphorbia guyoniana. , 2010, Phytochemistry.
[35] Shabana I. Khan,et al. Methicillin-resistant Staphylococcus aureus (MRSA)-active metabolites from Platanus occidentalis (American Sycamore). , 2009, Journal of natural products.
[36] M. Lacaille‐Dubois,et al. Antimicrobial dihydroisocoumarins from Crassocephalum biafrae. , 2009, Planta medica.
[37] N. Hywel-Jones,et al. Isariotins E and F, spirocyclic and bicyclic hemiacetals from the entomopathogenic fungus Isaria tenuipes BCC 12625. , 2009, Journal of natural products.
[38] M. Isaka,et al. Isariotins A-D, alkaloids from the insect pathogenic fungus Isaria tenuipes BCC 7831. , 2007, Journal of natural products.
[39] T. Efferth,et al. Chemotherapy-induced resistance by ATP-binding cassette transporter genes. , 2007, Biochimica et biophysica acta.
[40] S. Kang,et al. Constituents from the fruiting bodies ofGanoderma applanatum and their aldose reductase inhibitory activity , 2006, Archives of pharmacal research.
[41] P. Kongsaeree,et al. Antimalarial dihydroisocoumarins produced by Geotrichum sp., an endophytic fungus of Crassocephalum crepidioides. , 2003, Journal of natural products.
[42] S. Ōmura,et al. Structure elucidation of fungal beauveriolide III, a novel inhibitor of lipid droplet formation in mouse macrophages. , 1999, The Journal of antibiotics.
[43] U. Flörke,et al. Dihydroisocoumarins from fungi: isolation, structure elucidation, circular dichroism and biological activity. , 1997, Phytochemistry.
[44] Hisao Arakawa. Die Absolutkonfiguration des Melleins , 1968 .
[45] T. Efferth,et al. Activity of the dietary flavonoid, apigenin, against multidrug-resistant tumor cells as determined by pharmacogenomics and molecular docking , 2015, Journal of Immunotherapy for Cancer.
[46] A. Panda,et al. Traditional uses and medicinal potential of Cordyceps sinensis of Sikkim , 2011, Journal of Ayurveda and integrative medicine.