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克服当前类器官技术局限性的策略——工程化类器官。

Strategies to overcome the limitations of current organoid technology - engineered organoids.

作者信息

Fan Xulong, Hou Kun, Liu Gaojian, Shi Ruolin, Wang Wenjie, Liang Gaofeng

机构信息

School of Basic Medicine and Forensic Medicine, Henan University of Science & Technology, Luoyang, China.

Institute of Organoids on Chips Translational Research, Henan Academy of Sciences, Zhengzhou, China.

出版信息

J Tissue Eng. 2025 Apr 15;16:20417314251319475. doi: 10.1177/20417314251319475. eCollection 2025 Jan-Dec.

Abstract

Organoids, as 3D in vitro models derived from stem cells, have unparalleled advantages over traditional cell and animal models for studying organogenesis, disease mechanisms, drug screening, and personalized diagnosis and treatment. Despite the tremendous progress made in organoid technology, the translational application of organoids still presents enormous challenges due to the complex structure and function of human organs. In this review, the limitations of the translational application of traditional organoid technologies are first described. Next, we explore ways to address many of the limitations of traditional organoid cultures by engineering various dimensions of organoid systems. Finally, we discuss future directions in the field, including potential roles in drug screening, simulated microphysiology system and personalized diagnosis and treatment. We hope that this review inspires future research into organoids and microphysiology system.

摘要

类器官作为源自干细胞的三维体外模型,在研究器官发生、疾病机制、药物筛选以及个性化诊断和治疗方面,相较于传统的细胞和动物模型具有无与伦比的优势。尽管类器官技术取得了巨大进展,但由于人体器官结构和功能的复杂性,类器官的转化应用仍然面临巨大挑战。在这篇综述中,首先描述了传统类器官技术转化应用的局限性。接下来,我们探讨了通过对类器官系统的各个维度进行工程改造来解决传统类器官培养诸多局限性的方法。最后,我们讨论了该领域的未来方向,包括在药物筛选、模拟微生理学系统以及个性化诊断和治疗中的潜在作用。我们希望这篇综述能激发未来对类器官和微生理学系统的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34fa/12033597/595b02a64b60/10.1177_20417314251319475-fig1.jpg

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