Three-dimensional heart extracellular matrix enhances chemically induced direct cardiac reprogramming

Трёхмерный внеклеточный матрикс сердца усиливает прямое химически индуцированное перепрограммирование в кардиомиоциты
Yoonhee Jin, Hyeok Kim, Sungjin Min, Yi Sun Choi, Seung Ju Seo, Eunseon Jeong, Su Kyeom Kim, Hyang‐Ae Lee, Sung‐Hyun Jo, Jae-Hyun Park, Bong‐Woo Park, Woo‐Sup Sim, Jin-Ju Kim, Kiwon Ban, Yun‐Gon Kim, Hun‐Jun Park, Seung‐Woo Cho
2022-12-14

chemically induced cardiomyocytesdecellularized extracellular matrixdirect cardiac reprogrammingmyocardial infarctionthree-dimensional heart extracellular matrix
Direct cardiac reprogramming has emerged as a promising therapeutic approach for cardiac regeneration. Full chemical reprogramming with small molecules to generate cardiomyocytes may be more amenable than genetic reprogramming for clinical applications as it avoids safety concerns associated with genetic manipulations. However, challenges remain regarding low conversion efficiency and incomplete cardiomyocyte maturation. Furthermore, the therapeutic potential of chemically induced cardiomyocytes (CiCMs) has not been investigated. Here, we report that a three-dimensional microenvironment reconstituted with decellularized heart extracellular matrix can enhance chemical reprogramming and cardiac maturation of fibroblasts to cardiomyocytes. The resultant CiCMs exhibit elevated cardiac marker expression, sarcomeric organization, and improved electrophysiological features and drug responses. We investigated the therapeutic potential of CiCMs reprogrammed in three-dimensional heart extracellular matrix in a rat model of myocardial infarction. Our platform can facilitate the use of CiCMs for regenerative medicine, disease modeling, and drug screening.
1
A three-dimensional microenvironment reconstructed with decellularized heart extracellular matrix enhances chemically induced reprogramming of fibroblasts into cardiomyocytes.
2
Chemically induced cardiomyocytes generated in the three-dimensional matrix show improved electrophysiological properties and drug responses.
3
Heart extracellular matrix improves the maturation of chemically induced cardiomyocytes, including cardiac marker expression and sarcomeric organization.
4
The platform may support applications of chemically induced cardiomyocytes in cardiac regeneration, disease modeling, and drug screening.
5
The study investigates the therapeutic potential of matrix-reprogrammed chemically induced cardiomyocytes in a rat myocardial infarction model.

chemically induced cardiomyocytes (CiCMs) generated by direct reprogramming of fibroblasts within a three-dimensional microenvironment reconstituted with decellularized heart extracellular matrix

the enhancement of chemical reprogramming and cardiac maturation, including cardiac marker expression, sarcomeric organization, electrophysiological properties, drug responses, and therapeutic potential

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2022-12-14
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Authors
Yoonhee Jin
Hyeok Kim
Sungjin Min
Yi Sun Choi
Seung Ju Seo
Eunseon Jeong
Su Kyeom Kim
Hyang‐Ae Lee
Sung‐Hyun Jo
Jae-Hyun Park
Bong‐Woo Park
Woo‐Sup Sim
Jin-Ju Kim
Kiwon Ban
Yun‐Gon Kim
Hun‐Jun Park
Seung‐Woo Cho
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