Barreto-Gamarra Carlos, Domenech Maribella
Department of Chemical Engineering, University of Puerto Rico-Mayagüez, Call Box 9000, Mayagüez, PR 00681-9000, United States.
Department of Chemical Engineering, University of Puerto Rico-Mayagüez, Call Box 9000, Mayagüez, PR 00681-9000, United States..
J Mol Cell Cardiol. 2025 Apr;201:70-86. doi: 10.1016/j.yjmcc.2025.02.009. Epub 2025 Feb 27.
Cell manufacturing challenges have hampered effective preclinical evaluations of mature cardiac cells derived from human-induced pluripotent stem cells (hiPSCs). These challenges mainly stem from standard differentiation methods yielding cardiac cells of an immature phenotype, low cell yields and the need for extended culture for enhanced maturation. Although the intricate relationship between extracellular matrix (ECM) components and integrin expression levels plays a pivotal role during heart development, the impact of differentiation and maturation of cardiac cells on integrin behavior has not been thoroughly studied. This study postulates that cardiac cell maturation is significantly influenced by the timing of integrin stimulation via cell-matrix interactions. We profiled integrin expression levels throughout the differentiation process of cardiac cells and assessed the effects of utilizing defined ECM components as culture substrates on cell adhesion, proliferation, differentiation, and maturation. Our findings reveal that integrins facilitate hiPSC adhesion to ECM coated culture surfaces and underscores dynamic alterations in integrin expression during cardiac cell differentiation. Remarkably, we observed significant enrichments in α2 and β1 collagen integrin levels at the progenitor and differentiated stages. These shifts in collagen integrin levels were associated with enhanced cell seeding efficiency on collagen-type I surfaces and altered population doubling times. The stimulation of collagen integrins at the progenitor stage markedly boosted cardiac cell maturation, demonstrated by a significant (∼3-fold) increase in cardiac troponin I expression compared to the standard method after 15 days of culture. Enhanced maturation levels were further supported by significant increases in sarcomere development, maturation gene expression, morphological features, improved beating potency, and fatty acid metabolism dependency. Cardiac maturation driven by collagen was abrogated upon inhibition of collagen integrins targeted with selective pharmacological blockers, affirming their indispensable role in maturation without affecting cardiac differentiation levels. Our work confirms that stimulating collagen integrins at the progenitor stage is a potential strategy to achieve rapid maturation of hiPSC-derived cardiac cells. STATEMENT OF SIGNIFICANCE: This study offers a novel strategy guided by integrin expression levels for generating hiPSC-CMs with improved maturation features in a short culture period (<16 days). The improvements in cardiac cell maturation were achieved by stimulating collagen type 1 integrin at the progenitor stage. The potential benefits of this method for regenerative cardiac repair will pave the way for the preclinical examination of mature cardiac cells in tissues to advance cell manufacturing and cardiac toxicity studies.
细胞制造方面的挑战阻碍了对源自人诱导多能干细胞(hiPSC)的成熟心脏细胞进行有效的临床前评估。这些挑战主要源于标准分化方法产生的是未成熟表型的心脏细胞、细胞产量低以及需要延长培养时间以促进成熟。尽管细胞外基质(ECM)成分与整合素表达水平之间的复杂关系在心脏发育过程中起着关键作用,但心脏细胞分化和成熟对整合素行为的影响尚未得到充分研究。本研究假设,通过细胞-基质相互作用对整合素进行刺激的时机对心脏细胞成熟有显著影响。我们分析了心脏细胞整个分化过程中的整合素表达水平,并评估了使用特定的ECM成分作为培养底物对细胞黏附、增殖、分化和成熟的影响。我们的研究结果表明,整合素促进hiPSC黏附到ECM包被的培养表面,并强调了心脏细胞分化过程中整合素表达的动态变化。值得注意的是,我们在祖细胞阶段和分化阶段观察到α2和β1胶原整合素水平显著升高。这些胶原整合素水平的变化与在I型胶原表面上提高的细胞接种效率和改变的群体倍增时间相关。在祖细胞阶段刺激胶原整合素显著促进了心脏细胞成熟,培养15天后,与标准方法相比,心肌肌钙蛋白I表达显著增加(约3倍)即可证明。肌节发育、成熟基因表达、形态特征、跳动能力的改善以及脂肪酸代谢依赖性的显著增加进一步支持了成熟水平的提高。用选择性药理阻滞剂靶向抑制胶原整合素后,由胶原驱动的心脏成熟被消除,这证实了它们在成熟过程中不可或缺的作用,而不影响心脏分化水平。我们的工作证实,在祖细胞阶段刺激胶原整合素是实现hiPSC衍生心脏细胞快速成熟的一种潜在策略。重要性声明:本研究提供了一种以整合素表达水平为指导的新策略,用于在短培养期(<16天)内生成具有改善成熟特征的hiPSC-CM。通过在祖细胞阶段刺激I型胶原整合素来实现心脏细胞成熟的改善。这种方法对心脏再生修复的潜在益处将为组织中成熟心脏细胞的临床前检查铺平道路,以推进细胞制造和心脏毒性研究。