Wang Tianming, Chen Xu, Xu Ke, Zhang Bing, Huang Dexiang, Yang Jingwen
National Engineering Research Center of Marine Facilities Aquaculture, Marine Science College, Zhejiang Ocean University.
National Engineering Research Center of Marine Facilities Aquaculture, Marine Science College, Zhejiang Ocean University;
J Vis Exp. 2020 Jan 21(155). doi: 10.3791/60557.
Primary cultured cells are used in a variety of scientific disciplines as exceptionally important tools for the functional evaluation of biological substances or characterization of specific biological activities. However, due to the lack of universally applicable cell culture media and protocols, well described cell culture methods for marine organisms are still limited. Meanwhile, the commonly occurring microbial contamination and polytropic properties of marine invertebrate cells further impede the establishment of an effective cell culture strategy for marine invertebrates. Here, we describe an easy-to-handle method for culturing intestinal cells from sea cucumber Apostichopus japonicus; additionally, we provide an example of in vitro apoptosis induction and detection in primary cultured intestinal cells. Moreover, this experiment provides details about the appropriate culture medium and cell collection method. The described protocol is compatible with a variety of widely available tissue samples from marine organisms including Echinodermata, Mollusca, and Crustacea, and it can provide sufficient cells for multiple in vitro experimental applications. This technique would enable researchers to efficiently manipulate primary cell cultures from marine invertebrates and to facilitate the functional evaluation of targeted biological materials on cells.
原代培养细胞作为生物物质功能评估或特定生物活性表征的极其重要的工具,被应用于各种科学学科。然而,由于缺乏普遍适用的细胞培养基和培养方案,针对海洋生物的详细细胞培养方法仍然有限。同时,海洋无脊椎动物细胞中常见的微生物污染和多向性特性进一步阻碍了有效的海洋无脊椎动物细胞培养策略的建立。在此,我们描述了一种易于操作的方法来培养仿刺参肠道细胞;此外,我们提供了原代培养肠道细胞体外凋亡诱导和检测的实例。而且,本实验提供了合适培养基和细胞收集方法的详细信息。所描述的方案适用于来自包括棘皮动物、软体动物和甲壳动物在内的各种广泛可得的海洋生物组织样本,并且它可以为多种体外实验应用提供足够的细胞。这项技术将使研究人员能够有效地操作海洋无脊椎动物的原代细胞培养物,并促进对细胞上靶向生物材料的功能评估。