Modeling the contribution of cardiac fibroblasts in dilated cardiomyopathy using induced pluripotent stem cells.

IF 3.2 3区 医学 Q2 PHARMACOLOGY & PHARMACY Molecular Pharmacology Pub Date : 2025-01-01 Epub Date: 2024-11-22 DOI:10.1124/molpharm.124.000958
Grace R Mazarura, Terence E Hébert
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Abstract

Fibrosis is implicated in nearly all forms of cardiomyopathy and significantly influences disease severity and outcomes. The primary cell responsible for fibrosis is the cardiac fibroblast, which remains understudied relative to cardiomyocytes in the context of cardiomyopathy. The development of induced pluripotent stem cell-derived cardiac fibroblasts (iPSC-CFs) allows for the modeling of patient-specific disease characteristics and provides a scalable source of fibroblasts. iPSC-CFs are invaluable for understanding molecular pathways that affect disease progression and outcomes. This review explores various aspects of cardiomyopathy, with a focus on dilated cardiomyopathy, that can be modeled using iPSC-CFs and their application in drug discovery, given the current lack of approved therapies for cardiac fibrosis. We examine how iPSC-CFs can be utilized to study heart development, fibroblast heterogeneity, and activation, with the ultimate goal of developing better therapies for patients with cardiomyopathies. SIGNIFICANCE STATEMENT: We explore how induced pluripotent stem cell-derived cardiac fibroblasts (iPSC-CFs) are used to study the fibrotic component of dilated cardiomyopathy. Most research has focused on cardiomyocytes, but iPSC-CFs serve as a valuable tool to elucidate molecular pathways leading to fibrosis and paracrine interactions with cardiomyocytes. Gaining insights into these events could aid in the development of new therapies and enable the use of patient-derived iPSC-CFs for precision medicine, ultimately improving patient outcomes.

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几乎所有形式的心肌病都与纤维化有关,并对疾病的严重程度和预后产生重大影响。造成纤维化的主要细胞是心脏成纤维细胞,相对于心肌细胞而言,成纤维细胞在心肌病方面的研究仍然不足。诱导多能干细胞衍生的心脏成纤维细胞(iPSC-CFs)的开发可模拟患者特异性疾病特征,并提供可扩展的成纤维细胞来源。本综述探讨了可使用 iPSC-CFs 建模的心肌病的各个方面(重点是扩张型心肌病)及其在药物发现中的应用,因为目前还没有针对心脏纤维化的获批疗法。我们研究了如何利用 iPSC-CFs 研究心脏发育、成纤维细胞异质性和活化,最终目标是为心肌病患者开发更好的疗法。意义声明:我们探讨了如何利用诱导多能干细胞衍生的心脏成纤维细胞(iPSC-CFs)来研究扩张型心肌病的纤维化成分。大多数研究集中于心肌细胞,但iPSC-CFs是阐明导致纤维化的分子途径以及与心肌细胞的旁分泌相互作用的宝贵工具。深入了解这些事件有助于开发新的疗法,并能将源自患者的 iPSC-CFs 用于精准医疗,最终改善患者的预后。
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来源期刊
Molecular Pharmacology
Molecular Pharmacology 医学-药学
CiteScore
7.20
自引率
2.80%
发文量
50
审稿时长
3-6 weeks
期刊介绍: Molecular Pharmacology publishes findings derived from the application of innovative structural biology, biochemistry, biophysics, physiology, genetics, and molecular biology to basic pharmacological problems that provide mechanistic insights that are broadly important for the fields of pharmacology and toxicology. Relevant topics include: Molecular Signaling / Mechanism of Drug Action Chemical Biology / Drug Discovery Structure of Drug-Receptor Complex Systems Analysis of Drug Action Drug Transport / Metabolism
期刊最新文献
Bioengineered miR-7-5p modulates non-small cell lung cancer cell metabolism to improve therapy. Evaluation of allosteric N-methyl-d-aspartate receptor modulation by GluN2A-selective antagonists using pharmacological equilibrium modeling. Modeling the contribution of cardiac fibroblasts in dilated cardiomyopathy using induced pluripotent stem cells. Repurposing lapatinib as a triple antagonist of chemokine receptors 3, 4, and 5. Role of the G protein-coupled receptor kinase 2/3 N terminus in discriminating the endocytic effects of opioid agonist drugs.
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