Development of tissue-engineered myocardial patches using genipin-crosslinked submucosa of small intestine and stem cells
Chen Yan-Ming, Song Yu-Ting, Xing Zhe-Rui, Zhang Ji-Ye, Mou Li-Ping, Liu Peng-Cheng, Xie Hui-Qi, Xing Wan-Hong
Journal:Oxford Open Materials Science
IF:4.3
DOI:10.1093/oxfmat/itag001
PMID:
Published:2026-01-16
research field:分子生物学进化生物学
Abstract
Congenital heart disease (CHD) is the leading cause of neonatal death worldwide. Tissue-engineered myocardial patches have emerged as a breakthrough solution with the potential to rebuild damaged myocardial tissue while providing essential paracrine signals for endogenous repair. In this study, a genipin-crosslinked small intestinal submucosa (GP-SIS) scaffold was prepared, which exhibits excellent mechanical properties and biocompatibility. Furthermore, two types of tissue-engineered myocardial patches based on GP-SIS scaffold combined with induced differentiation of umbilical cord mesenchymal stem cells (D-UC-MSCs) and urine-derived stem cells (D-USCs) was developed to address different clinical needs in the treatment of CHD. Both types of patches have good in vivo angiogenesis ability, among which GP-SIS/D-UC-MSCs are suitable for acute myocardial repair, while GP-SIS/D-USCs are more suitable for chronic treatment due to their non-invasive acquisition and personalized advantages. This dual strategy provides a new idea for the precise treatment of CHD.
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