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从防污到生物膜抑制:两种印度尼西亚软珊瑚海绵中的新型细胞毒性次生代谢产物。

From anti-fouling to biofilm inhibition: new cytotoxic secondary metabolites from two Indonesian Agelas sponges.

机构信息

Institut für Pharmazeutische Biologie und Biotechnologie, Heinrich-Heine-Universität Düsseldorf, Universitätsstr 1, Geb 26.23, 40225 Düsseldorf, Germany.

出版信息

Bioorg Med Chem. 2010 Feb;18(3):1297-311. doi: 10.1016/j.bmc.2009.12.028. Epub 2010 Jan 12.

DOI:10.1016/j.bmc.2009.12.028
PMID:20061160
Abstract

Chemical investigation of Indonesian marine sponges Agelas linnaei and A. nakamurai afforded 24 alkaloid derivatives representing either bromopyrrole or diterpene alkaloids. A. linnaei yielded 16 bromopyrrole alkaloids including 11 new natural products with the latter exhibiting unusual functionalities. The new compounds include the first iodinated tyramine-unit bearing pyrrole alkaloids, agelanesins A-D. These compounds exhibited cytotoxic activity against L5178Y mouse lymphoma cells with IC(50) values between 9.25 and 16.76 muM. Further new compounds include taurine acid substituted bromopyrrole alkaloids and a new dibromophakellin derivative. A. nakamurai yielded eight alkaloids among them are three new natural products. The latter include the diterpene alkaloids (-)-agelasine D and its oxime derivative and the new bromopyrrole alkaloid longamide C. (-)-Agelasine D and its oxime derivative exhibited cytotoxicity against L5178Y mouse lymphoma cells (IC(50) 4.03 and 12.5 microM, respectively). Furthermore, both agelasine derivatives inhibited settling of larvae of Balanus improvisus in an anti-fouling bioassay and proved to be toxic to the larvae. (-)-Agelasine D inhibited the growth of planktonic forms of biofilm forming bacteria S. epidermidis (MIC<0.0877 microM) but did not inhibit biofilm formation whereas the oxime derivative showed the opposite activity profile and inhibited only biofilm formation but not bacterial growth. The structures of the isolated secondary metabolites were elucidated based on extensive spectroscopic analysis involving one- and two-dimensional NMR as well as mass spectrometry and comparison with literature data.

摘要

印度尼西亚海洋海绵 Agelas linnaei 和 A. nakamurai 的化学成分研究得到了 24 种生物碱衍生物,代表溴代吡咯或二萜生物碱。A. linnaei 产生了 16 种溴代吡咯生物碱,其中包括 11 种新的天然产物,后者具有不寻常的功能。新化合物包括第一个带有碘代酪胺单元的含吡咯生物碱,agelanesins A-D。这些化合物对 L5178Y 小鼠淋巴瘤细胞表现出细胞毒性,IC(50) 值在 9.25 和 16.76 μM 之间。进一步的新化合物包括牛磺酸取代的溴代吡咯生物碱和一种新的二溴 phakellin 衍生物。A. nakamurai 产生了八种生物碱,其中包括三种新的天然产物。后者包括二萜生物碱(-)-agelasine D 和其肟衍生物以及新的溴代吡咯生物碱 longamide C。(-)-Agelasine D 和其肟衍生物对 L5178Y 小鼠淋巴瘤细胞表现出细胞毒性(IC(50) 分别为 4.03 和 12.5 μM)。此外,两种 agelasine 衍生物在防污生物测定中抑制了藤壶幼虫的附着,并对幼虫有毒。(-)-Agelasine D 抑制浮游形式的生物膜形成细菌 S. epidermidis 的生长(MIC<0.0877 μM),但不抑制生物膜形成,而肟衍生物则表现出相反的活性谱,仅抑制生物膜形成而不抑制细菌生长。根据包括一维和二维 NMR 以及质谱在内的广泛光谱分析,并与文献数据进行比较,确定了分离的次生代谢物的结构。

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