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多能干细胞和体细胞组织在类器官建模与扩增方面的趋势及挑战

Trends and challenges in organoid modeling and expansion with pluripotent stem cells and somatic tissue.

作者信息

Ge Jian-Yun, Wang Yun, Li Qi-Lin, Liu Fan-Kai, Lei Quan-Kai, Zheng Yun-Wen

机构信息

Guangdong Provincial Key Laboratory of Large Animal Models for Biomedicine, and South China Institute of Large Animal Models for Biomedicine, School of Pharmacy and Food Engineering, Wuyi University, Jiangmen, Guangdong, China.

Haihe Laboratory of Cell Ecosystem, Institute of Hematology, Chinese Academy of Medical Sciences, Tianjin, China.

出版信息

PeerJ. 2024 Nov 27;12:e18422. doi: 10.7717/peerj.18422. eCollection 2024.

Abstract

The increasing demand for disease modeling, preclinical drug testing, and long waiting lists for alternative organ substitutes has posed significant challenges to current limitations in organoid technology. Consequently, organoid technology has emerged as a cutting-edge tool capable of accurately recapitulating the complexity of actual organs in physiology and functionality. To bridge the gaps between basic research and pharmaceutical as well as clinical applications, efforts have been made to develop organoids from tissue-derived stem cells or pluripotent stem cells. These developments include optimizing starting cells, refining culture systems, and introducing genetic modifications. With the rapid development of organoid technology, organoid composition has evolved from single-cell to multi-cell types, enhancing their level of biomimicry. Tissue structure has become more refined, and core challenges like vascularization are being addressed actively. These improvements are expected to pave the way for the construction of organoid atlases, automated large-scale cultivation, and universally compatible organoid biobanks. However, major obstacles remain to be overcome before urgently proof-of-concept organoids can be readily converted to practical applications. These obstacles include achieving structural and functional summarily to native tissue, remodeling the microenvironment, and scaling up production. This review aims to summarize the status of organoid development and applications, highlight recent progress, acknowledge existing limitations and challenges, and provide insights into future advancements. It is expected that this will contribute to the establishment of a reliable, scalable, and practical platform for organoid production and translation, further promoting their use in the pharmaceutical industry and regenerative medicine.

摘要

对疾病建模、临床前药物测试的需求不断增加,以及替代器官替代品的漫长等待名单,给当前类器官技术的局限性带来了重大挑战。因此,类器官技术已成为一种前沿工具,能够在生理和功能上准确再现实际器官的复杂性。为了弥合基础研究与制药以及临床应用之间的差距,人们已努力从组织来源的干细胞或多能干细胞中培养类器官。这些进展包括优化起始细胞、完善培养系统以及引入基因修饰。随着类器官技术的快速发展,类器官组成已从单细胞演变为多细胞类型,提高了它们的仿生水平。组织结构变得更加精细,诸如血管化等核心挑战也正在得到积极解决。这些改进有望为构建类器官图谱、自动化大规模培养以及普遍兼容的类器官生物样本库铺平道路。然而,在将急需的概念验证类器官迅速转化为实际应用之前,仍有主要障碍有待克服。这些障碍包括在结构和功能上总体达到天然组织的水平、重塑微环境以及扩大生产规模。本综述旨在总结类器官的发展和应用现状,突出近期进展,认识到现有局限性和挑战,并为未来的进步提供见解。预计这将有助于建立一个可靠、可扩展且实用的类器官生产和转化平台,进一步推动它们在制药行业和再生医学中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db82/11608026/f27b5aa8cb2c/peerj-12-18422-g001.jpg

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