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从台湾娃儿藤中分离得到菲并吲哚里西啶和赛普西定生物碱及其生物活性。

Isolation and biological activities of phenanthroindolizidine and septicine alkaloids from the Formosan Tylophora ovata.

机构信息

Institute of Biotechnology and Pharmaceutical Research, National Health Research Institutes, Miaoli, Taiwan.

出版信息

Planta Med. 2011 Nov;77(17):1932-8. doi: 10.1055/s-0030-1271199. Epub 2011 Jul 4.

DOI:10.1055/s-0030-1271199
PMID:21728149
Abstract

An investigation of alkaloids present in the leaves and stems of Tylophora ovata led to the isolation of two new septicine alkaloids and one new phenanthroindolizidine alkaloid, tylophovatines A, B, C (1, 2, and 5), respectively, together with two known septicine and six known phenanthroindolizidine alkaloids. The structures of the new alkaloids 1, 2, and 5 were established by means of spectroscopic analyses. These eleven alkaloids show in vitro anti-inflammatory activities with IC₅₀ values ranging from 84 nM to 20.6 μM through their suppression of nitric oxide production in RAW264.7 cells stimulated by lipopolysaccharide and interferon-γ. Moreover, these substances display growth inhibition in HONE-1, NUGC-3, HepG2, SF-268, MCF-7, and NCI-H460 cancer cell lines, with GI₅₀ values ranging from 4 nM to 24.2 μM. In addition, tylophovatine C (5) and 13a(S)-(+)-tylophorine (7) were found to exhibit potent in vivo anti-inflammation activities in a rat paw edema model. Finally, structure–activity relationships were probed by using the isolated phenanthroindolizidines and septicines. Phenanthroindolizidines are suggested to be divided into cytotoxic agents (e.g., 10 and 11) and anti-inflammation based anticancer agents (e.g., 5–9).

摘要

对黄花地桃花的叶和茎中的生物碱进行研究,导致分离得到两个新的 Septicine 生物碱和一个新的菲并吲哚里啶生物碱,分别为 tylophovatines A、B 和 C(1、2 和 5),以及两个已知的 Septicine 和六个已知的菲并吲哚里啶生物碱。新生物碱 1、2 和 5 的结构通过光谱分析确定。这 11 种生物碱通过抑制脂多糖和干扰素-γ刺激的 RAW264.7 细胞中一氧化氮的产生,表现出体外抗炎活性,IC₅₀值范围为 84 nM 至 20.6 μM。此外,这些物质在 HONE-1、NUGC-3、HepG2、SF-268、MCF-7 和 NCI-H460 癌细胞系中显示出生长抑制作用,GI₅₀值范围为 4 nM 至 24.2 μM。此外,tylophovatine C(5)和 13a(S)-(+)-tylophorine(7)在大鼠足肿胀模型中表现出很强的体内抗炎活性。最后,通过使用分离的菲并吲哚里啶和 Septicine 来探究结构-活性关系。菲并吲哚里啶被认为分为细胞毒性剂(例如,10 和 11)和基于抗炎的抗癌剂(例如,5-9)。

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