Generation of human vascularized and chambered cardiac organoids for cardiac disease modelling and drug evaluation

Author:

Yang Jingsi1,Lei Wei1,Xiao Yang1,Tan Shuai1,Yang Jiani1,Lin Yingjiong1,Yang Zhuangzhuang1,Zhao Dandan1,Zhang Chunxiang2,Shen Zhenya1,Hu Shijun1ORCID

Affiliation:

1. Department of Cardiovascular Surgery of the First Affiliated Hospital & Institute for Cardiovascular Science, Collaborative Innovation Center of Hematology, State Key Laboratory of Radiation Medicine and Protection Suzhou Medical College, Soochow University Suzhou China

2. Department of Cardiology, Key Laboratory of Medical Electrophysiology, Ministry of Education, Institute of Cardiovascular Research, the Affiliated Hospital Southwest Medical University Luzhou China

Abstract

AbstractHuman induced pluripotent stem cell (hiPSC)‐derived cardiac organoids (COs) have shown great potential in modelling human heart development and cardiovascular diseases, a leading cause of global death. However, several limitations such as low reproducibility, limited vascularization and difficulty in formation of cardiac chamber were yet to be overcome. We established a new method for robust generation of COs, via combination of methodologies of hiPSC‐derived vascular spheres and directly differentiated cardiomyocytes from hiPSCs, and investigated the potential application of human COs in cardiac injury modelling and drug evaluation. The human COs we built displayed a vascularized and chamber‐like structure, and hence were named vaschamcardioids (vcCOs). These vcCOs exhibited approximately 90% spontaneous beating ratio. Single‐cell transcriptomics identified a total of six cell types in the vcCOs, including cardiomyocytes, cardiac precursor cells, endothelial cells, fibroblasts, etc. We successfully recaptured the processes of cardiac injury and fibrosis in vivo on vcCOs, and showed that the FDA‐approved medication captopril significantly attenuated cardiac injury‐induced fibrosis and functional disorders. In addition, the human vcCOs exhibited an obvious drug toxicity reaction to doxorubicin in a dose‐dependent manner. We developed a three‐step method for robust generation of chamber‐like and vascularized complex vcCOs, and our data suggested that vcCOs might become a useful model for understanding pathophysiological mechanisms of cardiovascular diseases, developing intervention strategies and screening drugs.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

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