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从海洋海绵Suberites domuncula培育原形体:硅和铁的形态发生潜力

Cultivation of primmorphs from the marine sponge Suberites domuncula: morphogenetic potential of silicon and iron.

作者信息

Le Pennec Gaël, Perovic Sanja, Ammar Mohammed Shokry A, Grebenjuk Vladislav A, Steffen Renate, Brümmer Franz, Müller Werner E G

机构信息

Institut für Physiologische Chemie, Abteilung Angewandte Molekularbiologie, Universität, Duesbergweg 6, D-55099 Mainz, Germany.

出版信息

J Biotechnol. 2003 Jan 23;100(2):93-108. doi: 10.1016/s0168-1656(02)00259-6.

Abstract

Marine demosponges (phylum Porifera) are rich sources for potent bioactive compounds. With the establishment of the primmorph system from sponges, especially from Suberites domuncula, the technology to cultivate sponge cells in vitro improved considerably. This progress was possible after the elucidation that sponges are provided with characteristic metazoan cell adhesion receptors and extracellular matrix molecules which allow their cells a positioning in a complex organization pattern. This review summarizes recent data on the cultivation of sponges in aquaria and--with main emphasis--of primmorphs in vitro. It is outlined that silicon and Fe(+++) contribute substantially to the formation of larger primmorphs (size of 10 mm) as well as of a canal system in primmorphs; canals are probably required for an improved oxygen and food supply. We conclude that the primmorph system will facilitate a sustainable use of sponges in the production of bioactive compounds; it may furthermore allow new and hitherto not feasible insights into basic questions on the origin of Metazoa.

摘要

海洋海绵动物(多孔动物门)是强效生物活性化合物的丰富来源。随着从海绵,特别是从地中海栓海绵建立原细胞系统,体外培养海绵细胞的技术有了显著改进。在阐明海绵具有特征性的后生动物细胞粘附受体和细胞外基质分子,从而使其细胞能够以复杂的组织模式定位之后,这一进展才得以实现。本综述总结了关于在水族箱中培养海绵以及——主要重点——体外培养原细胞的最新数据。文中概述了硅和铁离子对形成更大的原细胞(10毫米大小)以及原细胞中的管道系统有很大贡献;管道可能是改善氧气和食物供应所必需的。我们得出结论,原细胞系统将有助于在生物活性化合物的生产中可持续地利用海绵;它还可能为后生动物起源的基本问题带来新的、迄今尚不可行的见解。

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