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胚胎和肝脏斑马鱼细胞系球体的 3D 培养方法。

A 3D Culture Method of Spheroids of Embryonic and Liver Zebrafish Cell Lines.

机构信息

Graduate Program in Genetics, Department of Genetics, Federal University of Paraná (UFPR).

Safety of Product Department, Grupo Boticário.

出版信息

J Vis Exp. 2023 Jan 20(191). doi: 10.3791/64859.

Abstract

Fish cell lines are promising in vitro models for ecotoxicity assessment; however, conventional monolayer culture systems (2D culture) have well-known limitations (e.g., culture longevity and maintenance of some in vivo cellular functions). Thus, 3D cultures, such as spheroids, have been proposed, since these models can reproduce tissue-like structures, better recapturing the in vivo conditions. This article describes an effective, easy, and fast 3D culture protocol for the formation of spheroids with two zebrafish (Danio rerio) cell lines: ZEM2S (embryo) and ZFL (normal hepatocyte). The protocol consists of plating the cells in a round-bottom, ultra-low attachment, 96-well plate. After 5 days under orbital shaking (70 rpm), a single spheroid per well is formed. The formed spheroids present stable size and shape, and this method avoids the formation of multiple spheroids in a well; thus, it is not necessary to handpick spheroids of similar sizes. The ease, speed, and reproducibility of this spheroid method make it useful for high-throughput in vitro tests.

摘要

鱼类细胞系是评估生态毒性的有前途的体外模型;然而,传统的单层培养系统(二维培养)存在明显的局限性(例如,培养寿命和某些体内细胞功能的维持)。因此,已经提出了 3D 培养,例如球体,因为这些模型可以重现组织样结构,更好地捕获体内条件。本文描述了一种有效的、简单的、快速的 3D 培养方案,用于形成两种斑马鱼(Danio rerio)细胞系的球体:ZEM2S(胚胎)和 ZFL(正常肝细胞)。该方案包括将细胞接种在圆底、超低附着、96 孔板中。在轨道摇床(70 rpm)下培养 5 天后,每个孔形成一个单独的球体。形成的球体具有稳定的大小和形状,并且该方法避免了一个孔中形成多个球体;因此,无需手动挑选大小相似的球体。这种球体方法的简便、快速和可重复性使其适用于高通量的体外测试。

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