Department of Bioengineering, College of Engineering, Temple University, Philadelphia, PA 19122, USA.
Neurobiology, Neurodegeneration & Repair Laboratory, National Eye Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Int J Mol Sci. 2023 Jul 13;24(14):11427. doi: 10.3390/ijms241411427.
An organoid is a 3D organization of cells that can recapitulate some of the structure and function of native tissue. Recent work has seen organoids gain prominence as a valuable model for studying tissue development, drug discovery, and potential clinical applications. The requirements for the successful culture of organoids in vitro differ significantly from those of traditional monolayer cell cultures. The generation and maturation of high-fidelity organoids entails developing and optimizing environmental conditions to provide the optimal cues for growth and 3D maturation, such as oxygenation, mechanical and fluidic activation, nutrition gradients, etc. To this end, we discuss the four main categories of bioreactors used for organoid culture: stirred bioreactors (SBR), microfluidic bioreactors (MFB), rotating wall vessels (RWV), and electrically stimulating (ES) bioreactors. We aim to lay out the state-of-the-art of both commercial and in-house developed bioreactor systems, their benefits to the culture of organoids derived from various cells and tissues, and the limitations of bioreactor technology, including sterilization, accessibility, and suitability and ease of use for long-term culture. Finally, we discuss future directions for improvements to existing bioreactor technology and how they may be used to enhance organoid culture for specific applications.
类器官是一种能够再现天然组织部分结构和功能的三维细胞组织。最近,类器官作为研究组织发育、药物发现和潜在临床应用的有价值模型而备受关注。与传统的单层细胞培养相比,成功体外培养类器官的要求有很大的不同。生成和成熟具有高保真度的类器官需要开发和优化环境条件,为生长和 3D 成熟提供最佳的提示,例如氧合、机械和流体激活、营养梯度等。为此,我们讨论了用于类器官培养的四种主要类型的生物反应器:搅拌生物反应器(SBR)、微流控生物反应器(MFB)、旋转壁容器(RWV)和电刺激(ES)生物反应器。我们旨在介绍商业和内部开发的生物反应器系统的最新技术,它们对源自各种细胞和组织的类器官培养的益处,以及生物反应器技术的局限性,包括灭菌、可及性以及对长期培养的适用性和易用性。最后,我们讨论了如何改进现有生物反应器技术以及如何将其用于增强特定应用的类器官培养的未来方向。