Li Jinli, Li Yang, Song Guangtao, Wang Haiying, Zhang Qing, Wang Min, Zhao Muxue, Wang Bei, Zhu HuiGuo, Ranzhi Liu, Wang Qiang, Xiong Yuyan
Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education, Faculty of Life Sciences and Medicine, College of Life Sciences, Northwest University, Xi'an, 710069, Shaanxi, China.
Department of Orthopaedics, Shenmu Hospital, The Affiliated Shenmu Hospital of Northwest University, Guangming Road, Shenmu, China.
Mater Today Bio. 2024 Dec 9;30:101396. doi: 10.1016/j.mtbio.2024.101396. eCollection 2025 Feb.
Organoids, exhibiting the capability to undergo differentiation in specific in vitro growth environments, have garnered significant attention in recent years due to their capacity to recapitulate human organs with resemblant in vivo structures and physiological functions. This groundbreaking technology offers a unique opportunity to study human diseases and address the limitations of traditional animal models. Cardiovascular diseases (CVDs), a leading cause of mortality worldwide, have spurred an increasing number of researchers to explore the great potential of human cardiovascular organoids for cardiovascular research. This review initiates by elaborating on the development and manufacture of human cardiovascular organoids, including cardiac organoids and blood vessel organoids. Next, we provide a comprehensive overview of their applications in modeling various cardiovascular disorders. Furthermore, we shed light on the prospects of cardiovascular organoids in CVDs therapy, and unfold an in-depth discussion of the current challenges of human cardiovascular organoids in the development and application for understanding and treating CVDs.
类器官能够在特定的体外生长环境中进行分化,近年来因其能够在体外重现具有类似体内结构和生理功能的人体器官而备受关注。这项开创性技术为研究人类疾病和克服传统动物模型的局限性提供了独特契机。心血管疾病(CVD)是全球主要死因,促使越来越多的研究人员探索人类心血管类器官在心血管研究中的巨大潜力。本文首先阐述人类心血管类器官的发育和制造,包括心脏类器官和血管类器官。接下来,我们全面概述它们在模拟各种心血管疾病方面的应用。此外,我们阐明心血管类器官在心血管疾病治疗中的前景,并深入讨论人类心血管类器官在理解和治疗心血管疾病的开发与应用中目前面临的挑战。