Click chemistry-modified cardiomyocytes enhance cardiac contractility and prevent remodeling in ischemia-reperfusion injured hearts

One of the challenges in cardiac cell therapy using cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) is their poor engraftment and survival rate in infarcted tissues. Click chemistry and lipid insertion are simple methods for modifying the surface of hPSC-CMs with a collagen hybridizing peptide (CHP), providing binding motifs to increase their retention and engraftment in fibrotic hearts after ischemia-reperfusion (I/R) injury. In this study, we developed CHP-modified CMs (CHP-mCMs) to attach cells to damaged collagen in infarcted tissues. We injected CHP-mCMs into the border zone of infarcted hearts 7 days post-MI and evaluated cardiac function for 6 weeks. Serial echocardiography revealed that CHP-mCMs not only improved cardiac function but also reduced adverse remodeling in I/R-injured hearts. These findings indicate that CHP-mCM transplantation was associated with enhanced engraftment, reduced adverse remodeling, and improved cardiac function in the rat I/R model.

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Publication Details

Journal
Bioactive Materials
Published
2026-09-16
DOI
https://doi.org/10.1016/j.bioactmat.2026.08.016
Primary Topic
Cardiac Fibrosis and Remodeling
Type
article
Field-Weighted Citation Impact
0.00

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article

Click chemistry-modified cardiomyocytes enhance cardiac contractility and prevent remodeling in ischemia-reperfusion injured hearts

Seong Woo Choi, Kiwon Ban, Heebeom Koo, Jin Ryeol An et al.
Bioactive Materials
Cardiac Fibrosis and Remodeling
article

Click chemistry-modified cardiomyocytes enhance cardiac contractility and prevent remodeling in ischemia-reperfusion injured hearts

Seong Woo Choi, Kiwon Ban, Heebeom Koo, Jin Ryeol An, Hun‐Jun Park, Woo‐Sup Sim, Donghyun Lee, Seo Young Cheon, Jae-Hyun Park, Mi Seon Seo, Dong-Yeon Han, Hyejin Hong, Jin-Ju Kim, Soo-Jeong Kim
article en

Abstract

One of the challenges in cardiac cell therapy using cardiomyocytes derived from human pluripotent stem cells (hPSC-CMs) is their poor engraftment and survival rate in infarcted tissues. Click chemistry and lipid insertion are simple methods for modifying the surface of hPSC-CMs with a collagen hybridizing peptide (CHP), providing binding motifs to increase their retention and engraftment in fibrotic hearts after ischemia-reperfusion (I/R) injury. In this study, we developed CHP-modified CMs (CHP-mCMs) to attach cells to damaged collagen in infarcted tissues. We injected CHP-mCMs into the border zone of infarcted hearts 7 days post-MI and evaluated cardiac function for 6 weeks. Serial echocardiography revealed that CHP-mCMs not only improved cardiac function but also reduced adverse remodeling in I/R-injured hearts. These findings indicate that CHP-mCM transplantation was associated with enhanced engraftment, reduced adverse remodeling, and improved cardiac function in the rat I/R model.

Bioactive MaterialsVol. 68
Ministry of Science and ICT, South Korea
Zero hunger
Openalex Percentile: Top 11%
Cardiac Fibrosis and Remodeling
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Click chemistry-modified cardiomyocytes enhance cardiac contractility and prevent remodeling in ischemia-reperfusion injured hearts — Seong Woo Choi, Kiwon Ban, et al. · Bioactive Materials (2026) | TGRS Research Map | TGRS