The microbial transformation of cyclocanthogenol (CCG), Astragalus sp. originated sapogenin, by the endophytic fungus Alternaria eureka 1E1BL1 isolated from Astragalus angustifolius was investigated. Hydroxylation, oxidation, epoxidation, O-methylation, ring-expansion and methyl migration reactions were observed on the triterpenoid skeleton. As a result, eight metabolites were isolated and the structures of the previously undescribed compounds were established by 1-D, 2-D NMR and HR-MS analyses.TUBITAK (114Z958
WOS: 000436527100006PubMed ID: 29893560Biotransformation of neoruscogenin (NR, 1, spirosta-5,25(27)-...
WOS: 000317452700013PubMed ID: 23357596The microbial transformation of cycloastragenol by the fungi ...
Here we describe the biotransformation of clovane derivatives by filamentary fungi Pestalotiopsis pa...
The microbial transformation of cyclocanthogenol (CCG), Astragalus sp. originated sapogenin, by the ...
WOS: 000353599300005The microbial transformation of Astragalus sp. derived sapogenins, namely cycloa...
Biotransformation of neoruscogenin (NR, 1, spirosta-5,25(27)-diene-1β,3β-diol), the major bioactive ...
This Ph.D. dissertation describes the microbial transformation of eight biologically active terpenes...
Cycloastragenol is a cycloartane-type triterpenoid with significant telomerase-activating activities...
The biocatalysis of cycloastragenol, a natural tetracyclic triterpenoid with anti-aging activity, by...
Biotransformations are reactions of organic compounds carried out by isolated microorganisms, plant...
Natural coumarins are present in remarkable amounts as secondary metabolites in edible and medicina...
Fungos endofíticos constituem uma fonte promissora e ainda pouco explorada de novas substâncias pote...
Biotransformation of steroidal ruscogenins (neoruscogenin and ruscogenin) was carried out with Cunni...
Endophytic fungi associated with medicinal plants are a potential source of novel chemistry and biol...
A set of five fungal species, Botrytis cinerea, Trichoderma viride and Eutypa lata, and the endophyt...
WOS: 000436527100006PubMed ID: 29893560Biotransformation of neoruscogenin (NR, 1, spirosta-5,25(27)-...
WOS: 000317452700013PubMed ID: 23357596The microbial transformation of cycloastragenol by the fungi ...
Here we describe the biotransformation of clovane derivatives by filamentary fungi Pestalotiopsis pa...
The microbial transformation of cyclocanthogenol (CCG), Astragalus sp. originated sapogenin, by the ...
WOS: 000353599300005The microbial transformation of Astragalus sp. derived sapogenins, namely cycloa...
Biotransformation of neoruscogenin (NR, 1, spirosta-5,25(27)-diene-1β,3β-diol), the major bioactive ...
This Ph.D. dissertation describes the microbial transformation of eight biologically active terpenes...
Cycloastragenol is a cycloartane-type triterpenoid with significant telomerase-activating activities...
The biocatalysis of cycloastragenol, a natural tetracyclic triterpenoid with anti-aging activity, by...
Biotransformations are reactions of organic compounds carried out by isolated microorganisms, plant...
Natural coumarins are present in remarkable amounts as secondary metabolites in edible and medicina...
Fungos endofíticos constituem uma fonte promissora e ainda pouco explorada de novas substâncias pote...
Biotransformation of steroidal ruscogenins (neoruscogenin and ruscogenin) was carried out with Cunni...
Endophytic fungi associated with medicinal plants are a potential source of novel chemistry and biol...
A set of five fungal species, Botrytis cinerea, Trichoderma viride and Eutypa lata, and the endophyt...
WOS: 000436527100006PubMed ID: 29893560Biotransformation of neoruscogenin (NR, 1, spirosta-5,25(27)-...
WOS: 000317452700013PubMed ID: 23357596The microbial transformation of cycloastragenol by the fungi ...
Here we describe the biotransformation of clovane derivatives by filamentary fungi Pestalotiopsis pa...