The importance of matrix in cardiomyogenesis: Defined substrates for maturation and chamber specificity

Q1 Medicine Matrix Biology Plus Pub Date : 2024-08-20 DOI:10.1016/j.mbplus.2024.100160
Jake Ireland , Kristopher A. Kilian
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引用次数: 0

Abstract

Human embryonic stem cell-derived cardiomyocytes (hESC-CM) are a promising source of cardiac cells for disease modelling and regenerative medicine. However, current protocols invariably lead to mixed population of cardiac cell types and often generate cells that resemble embryonic phenotypes. Here we developed a combinatorial approach to assess the importance of extracellular matrix proteins (ECMP) in directing the differentiation of cardiomyocytes from human embryonic stem cells (hESC). We did this by focusing on combinations of ECMP commonly found in the developing heart with a broad goal of identifying combinations that promote maturation and influence chamber specific differentiation. We formulated 63 unique ECMP combinations fabricated from collagen 1, collagen 3, collagen 4, fibronectin, laminin, and vitronectin, presented alone and in combinations, leading to the identification of specific ECMP combinations that promote hESC proliferation, pluripotency, and germ layer specification. When hESC were subjected to a differentiation protocol on the ECMP combinations, it revealed precise protein combinations that enhance differentiation as determined by the expression of cardiac progenitor markers kinase insert domain receptor (KDR) and mesoderm posterior transcription factor 1 (MESP1). High expression of cardiac troponin (cTnT) and the relative expression of myosin light chain isoforms (MLC2a and MLC2v) led to the identification of three surfaces that promote a mature cardiomyocyte phenotype. Action potential morphology was used to assess chamber specificity, which led to the identification of matrices that promote chamber-specific cardiomyocytes. This study provides a matrix-based approach to improve control over cardiomyocyte phenotypes during differentiation, with the scope for translation to cardiac laboratory models and for the generation of functional chamber specific cardiomyocytes for regenerative therapies.

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基质在心肌生成中的重要性:明确的成熟基质和腔室特异性
人类胚胎干细胞衍生的心肌细胞(hESC-CM)是用于疾病建模和再生医学的一种前景广阔的心脏细胞来源。然而,目前的方案总是导致心脏细胞类型的混合,生成的细胞往往与胚胎表型相似。在这里,我们开发了一种组合方法来评估细胞外基质蛋白(ECMP)在引导人类胚胎干细胞(hESC)分化心肌细胞中的重要性。为此,我们重点研究了发育中的心脏中常见的ECMP组合,其广泛目标是确定促进成熟和影响心室特异性分化的组合。我们用胶原蛋白 1、胶原蛋白 3、胶原蛋白 4、纤连蛋白、层粘连蛋白和玻璃连蛋白配制了 63 种独特的 ECMP 组合,这些 ECMP 组合既可单独使用,也可组合使用,从而确定了能促进 hESC 增殖、多能性和胚层分化的特定 ECMP 组合。当对 hESC 进行 ECMP 组合的分化方案时,通过心脏祖细胞标记激酶插入域受体(KDR)和中胚层后转录因子 1(MESP1)的表达,发现了能促进分化的精确蛋白质组合。心肌肌钙蛋白(cTnT)的高表达和肌球蛋白轻链同工酶(MLC2a和MLC2v)的相对表达导致确定了促进成熟心肌细胞表型的三个表面。利用动作电位形态学评估心室特异性,从而确定了促进心室特异性心肌细胞的基质。这项研究提供了一种基于基质的方法,可在分化过程中改善对心肌细胞表型的控制,并有望转化为心脏实验室模型,以及用于再生疗法的功能性腔室特异性心肌细胞的生成。
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来源期刊
Matrix Biology Plus
Matrix Biology Plus Medicine-Histology
CiteScore
9.00
自引率
0.00%
发文量
25
审稿时长
105 days
期刊最新文献
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