成分最少、不含蛋白质、经济高效的人类多能干细胞心肌细胞分化技术

Jessika B. Iwanski, Odunayo S. Lawal, William T. Kwon, Isabella Vazquez, Jared M. Churko
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引用次数: 0

摘要

人类多能干细胞来源的心肌细胞(hPSC-CMs)已经成为心脏疾病体外建模和各种其他重要应用的强大来源,包括心脏毒性筛选和再生细胞替代疗法。虽然已经开发了许多从人类多能干细胞生成心肌细胞的分化方案,但这些方案昂贵且复杂,需要昂贵且通常不必要的成分(例如,B27培养基补充)。此外,动物源性生长因子的使用限制了其用于再生医学目的。为了解决这些问题,我们开发了一种高效、经济、无蛋白的hPSC-CM方案,只使用两种成分:DMEM/F12基础培养基和l-抗坏血酸2-磷酸。通过消除异种和复杂成分,定向分化的效率提高,心脏分化之间的可变性降低,细胞生产的可扩展性增强。这种高效、低成本、用户友好的心脏分化方案将丰富hPSC-CMs在药物发现、细胞治疗、组织工程、疾病建模、精准医学和心脏再生医学中的实用性和适用性。©2025 Wiley期刊公司基本方案1:hPSC细胞培养基本方案2:hPSC- cm分化基本方案3:免疫荧光(IF)成像表征hPSC- cms
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Minimal Component, Protein-Free, and Cost-effective Human Pluripotent Stem Cell Cardiomyocyte Differentiation

Human pluripotent stem cell-derived cardiomyocytes (hPSC-CMs) have become a powerful source for the in vitro modeling of cardiac diseases and various other essential applications, including cardiotoxicity screening and regenerative cell replacement therapies. Although many differentiation protocols have been developed to generate cardiomyocytes from human pluripotent stem cells, these protocols are costly and complex, requiring expensive and often unnecessary components (e.g., B27 medium supplement). In addition, the use of animal-derived growth factors limits their use for regenerative medicine purposes. To address these issues, herein, we have developed an efficient, cost-effective, and protein-free hPSC-CM protocol using only two components: DMEM/F12 basal medium and l-ascorbic acid 2-phosphate. By eliminating xenobiotic and complex components, the efficiency of directed differentiations is increased, the variability between cardiac differentiations is decreased, and the scalability of cell production is enhanced. Adaptation of this efficient, low-cost, and user-friendly cardiac differentiation protocol will enrich the utility and applicability of hPSC-CMs in drug discovery, cell therapies, tissue engineering, disease modeling, precision medicine, and cardiac regenerative medicine. © 2025 Wiley Periodicals LLC.

Basic Protocol 1: hPSC cell culture

Basic Protocol 2: hPSC-CM differentiation

Basic Protocol 3: Characterization of hPSC-CMs by immunofluorescence (IF) imaging

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