Department of Chemistry, School of Science, University of Phayao, Phayao 56000, Thailand.
Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Ramkhamhaeng University, Bangkok 10240, Thailand.
Bioorg Chem. 2021 May;110:104799. doi: 10.1016/j.bioorg.2021.104799. Epub 2021 Mar 5.
The isopimarane diterpene, 1α,11α-dihydroxyisopimara-8(14),15-diene (1), is the major constituents from the rhizomes of Kaempferia marginata (Zingiberaceae), a Thai medicinal plant. The microbial transformation of parent compound 1 by the fungus Cunninghamella echinulata NRRL 1386 gave five new metabolites, 7α,11α-dihydroxy-1-oxoisopimara-8(14),15-diene (2), 3β,7α,11α-trihydroxy-1-oxoisopimara-8(14),15-diene (3), 7β,11α-dihydroxy-1-oxoisopimara-8(14),15-diene (4), 7α-hydroxy-1,11-dioxoisopimara-8(14),15-diene (5) and 1α,7β,11α-trihydroxyisopimara-8(14),15-diene (6), together with three known metabolites, 7-9. The structures of the new metabolites were elucidated by spectroscopic techniques. The known compounds were identified by comparison of the spectroscopic and physical data with those of reported values. The parent compound 1 and the metabolites have been neuroprotective activities evaluated against Aβ-induced damage in human neuroblastoma cells (SK-N-SH). Among them, compounds 1-3, 5 and 7-9 had significant neuroprotective activities at a concentration of 2.5 μM. The results demonstrated that these compounds might be worth for further development into therapeutic agents for the treatment of neurodegenerative diseases.
异松烷二萜,1α,11α-二羟基异松香-8(14),15-二烯(1),是泰国药用植物 Kaempferia marginata(姜科)根茎中的主要成分。真菌 Cunninghamella echinulata NRRL 1386 对母体化合物 1 的微生物转化得到了五个新的代谢产物,7α,11α-二羟基-1-氧代异松香-8(14),15-二烯(2),3β,7α,11α-三羟基-1-氧代异松香-8(14),15-二烯(3),7β,11α-二羟基-1-氧代异松香-8(14),15-二烯(4),7α-羟基-1,11-二氧代异松香-8(14),15-二烯(5)和 1α,7β,11α-三羟基异松香-8(14),15-二烯(6),以及三个已知的代谢产物 7-9。新代谢产物的结构通过光谱技术阐明。通过比较光谱和物理数据与已报道值,确定了已知化合物的结构。母体化合物 1 和代谢产物已针对 Aβ 诱导的人神经母细胞瘤细胞(SK-N-SH)损伤进行了神经保护活性评估。其中,化合物 1-3、5 和 7-9 在 2.5 μM 浓度下具有显著的神经保护活性。结果表明,这些化合物可能值得进一步开发为治疗神经退行性疾病的治疗剂。