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Initiation of an aquaculture of sponges for the sustainable production of bioactive metabolites in open systems: example, Geodia cydonium

机译:启动海绵的水产养殖以在开放系统中可持续生产生物活性代谢物:例如,Geodia cydonium

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Among Metazoa, sponges (phylum Porifera) are the richest source for different bioactive compounds. The availability of the raw material is, however, restricted. To obtain enough of the bioactive compounds for application in human therapy, sponges have to be cultured in in vitro systems. One technique for the establishment of a long-term cell culture from sponges has recently been elaborated. Here, we present a procedure to cultivate tissue samples from spones in an open system. The species Geodia cydonium, which produces bioactive compounds, has been selected. Tissue samples of approximately 10 g were attached to the bottoms of cultivation trays. After 2 to 3 days, the tissue samples formed a robust contact with the metal support. Subsequently, sets of trays, called tray batteries, either remained in huge aquaria at the Center for Marine Research or were transferred to the vicinity of a fish and mussel farm. The growth rates of teh samples remained unchanged within the first month; however, after 3 and 6 months, they increased to 147 percent and 189 percent, respectively. In parallel, extracts were prepared from the tissue samples and tested for cytotoxicity in a mouse lymphoma cell assay system. Extracts from cultured tissue initially had a low inhibitory potency; however, after cultivation for 3 or 6 months, values comparable to those of extracts from sponges taken from the biotope were found. In addition, a molecular marker was applied to document the response (health state) of the tissue and the identity of the material in culture. The CD63 molecule was chosen because the expression of this molecule in mammalian systems changes with the age of the animals. The corresponding complementary DNA was isolated from Geodia cydonium. With this probe, the level of expression in cultured tissue samples decreased immediately after starting cultivation; after a cultivation period of 6 months, however, values were similar to those found in controls. These data show that sponge species that produce bioactive compounds can be cultivated in open systems, in which they retain their potency to produce bioactive compounds as well as their health state.
机译:在后生动物中,海绵(毛孔虫)是不同生物活性化合物的最丰富来源。但是,原料的可获得性受到限制。为了获得足够的生物活性化合物用于人体治疗,必须在体外系统中培养海绵。最近已经详细阐述了一种从海绵建立长期细胞培养物的技术。在这里,我们提出了从开放系统中的茎中培养组织样本的程序。已经选择了产生生物活性化合物的Geodia cydonium物种。将约10g的组织样品附着到培养盘的底部。 2至3天后,组织样本与金属支持物形成牢固的接触。随后,被称为托盘电池的一组托盘要么留在海洋研究中心的大型水族馆中,要么被转移到鱼类和贻贝养殖场附近。在第一个月中,样本的增长率保持不变;但是,在3个月和6个月后,它们分别增加到147%和189%。同时,从组织样品中制备提取物,并在小鼠淋巴瘤细胞测定系统中测试其细胞毒性。最初来自培养组织的提取物抑制力很低。但是,在培养3或6个月后,发现的值与从生物群落中提取的海绵提取物的值相当。此外,使用分子标记来记录组织的反应(健康状态)和培养物中材料的身份。之所以选择CD63分子,是因为该分子在哺乳动物系统中的表达随动物的年龄而变化。相应的互补DNA是从Geodia cydonium分离的。使用该探针后,开始培养后,培养组织样品中的表达水平立即下降;但是,经过6个月的培养后,其值与对照中的值相似。这些数据表明,产生生物活性化合物的海绵物种可以在开放系统中进行培养,其中它们保留了产生生物活性化合物的能力以及健康状况。

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