BioSurfaces, Inc., Ashland, MA, 01721, USA.
JHarbell Consulting LLC, 16334 Sunset Valley Drive, Dallas, TX, 75248, USA.
In Vitro Cell Dev Biol Anim. 2021 Feb;57(2):95-103. doi: 10.1007/s11626-020-00500-2. Epub 2020 Nov 25.
Three dimensional (3D) organ-like (organotypic) culture models are a rapidly advancing area of in vitro biological science. In contrast to monolayer cell culture methods which were developed to achieve proliferation of animal cells in the beginning of in vitro biology, the advancements in 3D culture methods are designed to promote cellular differentiation, and to achieve in vivo-like 3D structure and organotypic functions. This project was conceived through the Society for In Vitro Biology to draw on the expertise of individual scientists with special expertise in organotypic cultures of selected tissues or associated interrogation methods to prepare individual-focused reviews in this series. This introductory manuscript will review the early achievements of animal cell culture in monolayer culture and the limitations of that approach to reproduce functioning organ systems. Among these are the nature and 3D architecture of the substrate on which or in which the cells are grown, physical and mechanical clues from the substrate, cell-cell interactions, and defined biochemical factors that trigger the induction of the 3D organotypic differentiation. The organoid culture requires a source of cells with proliferative capacity (ranging from tissue-derived stem or immortalized cells to the iPSC cultures), a suitable substrate or matrix with the mechanical and stimulatory properties appropriate for the organotypic construct and the necessary stimulation of the culture to drive differentiation of the cell population to form the functioning organotypic construct. Details for each type of organotypic construct will be provided in the following papers.
三维(3D)器官样(器官型)培养模型是体外生物学中一个迅速发展的领域。与最初的体外生物学中旨在实现动物细胞增殖的单层细胞培养方法相比,3D 培养方法的进步旨在促进细胞分化,并实现类似于体内的 3D 结构和器官型功能。本项目是由体外生物学学会构思的,旨在利用个别具有特定组织器官型培养或相关检测方法专业知识的科学家的专业知识,在本系列中编写个人重点综述。这篇介绍性的手稿将回顾动物细胞在单层培养中的早期成就,以及该方法在复制功能器官系统方面的局限性。其中包括细胞生长的基底的性质和 3D 结构、基底提供的物理和机械线索、细胞-细胞相互作用以及触发 3D 器官型分化的定义明确的生化因素。类器官培养需要具有增殖能力的细胞源(范围从组织来源的干细胞或永生化细胞到 iPSC 培养物)、具有适当机械和刺激特性的合适基底或基质,以及对培养物的必要刺激,以促使细胞群体分化为具有功能的器官型结构。以下论文将提供每种类型的器官型构建体的详细信息。