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一种创新的 3D 打印插入物,旨在实现简单的 2D 和 3D 细胞培养。

An Innovative 3D-Printed Insert Designed to Enable Straightforward 2D and 3D Cell Cultures.

机构信息

Laboratoire de Biochimie Médicale et Biologie Moléculaire, Université de Reims Champagne-Ardenne; UMR CNRS 7369, Matrice Extracellulaire et Dynamique Cellulaire-MEDyC, Université de Reims Champagne-Ardenne Reims; BASF Beauty Care Solutions;

BASF Beauty Care Solutions.

出版信息

J Vis Exp. 2023 Jan 6(191). doi: 10.3791/64655.

Abstract

The classical analyses of indirect communication between different cell types necessitate the use of conditioned media. Moreover, the production of conditioned media remains time-consuming and far from physiological and pathological conditions. Although a few models of co-culture are commercially available, they remain restricted to specific assays and are mostly for two types of cells. Here, 3D-printed inserts are used that are compatible with numerous functional assays. The insert allows the separation of one well of a 6-well plate into four compartments. A wide range of combinations can be set. Moreover, windows are designed in each wall of the compartments so that potential intercellular communication between every compartment is possible in the culture medium in a volume-dependent manner. For example, paracrine intercellular communication can be studied between four cell types in monolayer, in 3D (spheroids), or by combining both. In addition, a mix of different cell types can be seeded in the same compartment in 2D or 3D (organoids) format. The absence of a bottom in the 3D-printed inserts allows the usual culture conditions on the plate, possible coating on the plate containing the insert, and direct visualization by optical microscopy. The multiple compartments provide the possibility to collect different cell types independently or to use, in each compartment, different reagents for RNA or protein extraction. In this study, a detailed methodology is provided to use the new 3D-printed insert as a co-culture system. To demonstrate several capacities of this flexible and simple model, previously published functional assays of cell communication were performed in the new 3D-printed inserts and were demonstrated to be reproducible. The 3D-printed inserts and the conventional cell culture using conditioned media led to similar results. In conclusion, the 3D-printed insert is a simple device that can be adapted to numerous models of co-cultures with adherent cell types.

摘要

不同细胞类型之间间接通讯的经典分析需要使用条件培养基。此外,条件培养基的产生仍然耗时且远非生理和病理条件。尽管有几种共培养模型可商购,但它们仍然限于特定的测定方法,并且主要适用于两种类型的细胞。在这里,使用与多种功能测定兼容的 3D 打印插件。该插件可将 6 孔板的一个孔分隔成四个隔室。可以设置广泛的组合。此外,在每个隔室的壁上设计了窗口,使得在培养基中以体积依赖的方式可以实现每个隔室之间潜在的细胞间通讯。例如,可以在单层、3D(球体)或两者结合的情况下研究四种细胞类型之间的旁分泌细胞间通讯。此外,可以在 2D 或 3D(类器官)格式中将不同细胞类型的混合物播种到同一隔室中。3D 打印插件中没有底部,允许在板上进行通常的培养条件,可能在包含插件的板上进行涂层,并通过光学显微镜直接进行可视化。多个隔室提供了独立收集不同细胞类型的可能性,或者在每个隔室中使用不同的试剂进行 RNA 或蛋白质提取。在这项研究中,提供了一种详细的方法学来使用新的 3D 打印插件作为共培养系统。为了展示该灵活简单模型的几种能力,在新的 3D 打印插件中进行了先前发表的细胞通讯功能测定,结果表明该模型具有可重复性。3D 打印插件和使用条件培养基的常规细胞培养得出了相似的结果。总之,3D 打印插件是一种简单的设备,可以适应许多粘附细胞类型的共培养模型。

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