Pericardial Delivery of SDF‐1α Puerarin Hydrogel Promotes Heart Repair and Electrical Coupling

Author:

Luo Li123,Li Yuetong1,Bao Ziwei4,Zhu Dashuai5,Chen Guoqin6,Li Weirun123,Xiao Yingxian123,Wang Zhenzhen5,Zhang Yixin7,Liu Huifang7,Chen Yanmei38,Liao Yulin38,Cheng Ke9ORCID,Li Zhenhua123ORCID

Affiliation:

1. The Tenth Affiliated Hospital of Southern Medical University Dongguan Guangdong 523059 China

2. The First School of Clinical Medicine Southern Medical University Guangzhou Guangdong 510515 China

3. Guangdong Provincial Key Laboratory of Cardiac Function and Microcirculation Guangzhou 510515 China

4. Guangzhou University of Chinese Medicine Guangzhou 510006 China

5. Department of Molecular Biomedical Sciences North Carolina State University Raleigh NC 27606 USA

6. Cardiology Department of Panyu Central Hospital and Cardiovascular Disease Institute of Panyu District Guangzhou 511400 P. R. China

7. College of Pharmaceutical Science Key Laboratory of Pharmaceutical Quality Control of Hebei Province Hebei University Baoding 071002 China

8. Department of Cardiology Nanfang Hospital Southern Medical University Guangzhou 510515 China

9. Department of Biomedical Engineering Columbia University New York 10032 USA

Abstract

AbstractThe stromal‐derived factor 1α/chemokine receptor 4 (SDF‐1α/CXCR4) axis contributes to myocardial protection after myocardial infarction (MI) by recruiting endogenous stem cells into the ischemic tissue. However, excessive inflammatory macrophages are also recruited simultaneously, aggravating myocardial damage. More seriously, the increased inflammation contributes to abnormal cardiomyocyte electrical coupling, leading to inhomogeneities in ventricular conduction and retarded conduction velocity. It is highly desirable to selectively recruit the stem cells but block the inflammation. In this work, SDF‐1α‐encapsulated Puerarin (PUE) hydrogel (SDF‐1α@PUE) is capable of enhancing endogenous stem cell homing and simultaneously polarizing the recruited monocyte/macrophages into a repairing phenotype. Flow cytometry analysis of the treated heart tissue shows that endogenous bone marrow mesenchymal stem cells, hemopoietic stem cells, and immune cells are recruited while SDF‐1α@PUE efficiently polarizes the recruited monocytes/macrophages into the M2 type. These macrophages influence the preservation of connexin 43 (Cx43) expression which modulates intercellular coupling and improves electrical conduction. Furthermore, by taking advantage of the improved “soil”, the recruited stem cells mediate an improved cardiac function by preventing deterioration, promoting neovascular architecture, and reducing infarct size. These findings demonstrate a promising therapeutic platform for MI that not only facilitates heart regeneration but also reduces the risk of cardiac arrhythmias.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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