Human myofibroblasts increase the arrhythmogenic potential of human induced pluripotent stem cell-derived cardiomyocytes

被引:7
作者
Johnson, Robert D. [1 ]
Lei, Ming [2 ]
Mcvey, John H. [1 ]
Camelliti, Patrizia [1 ]
机构
[1] Univ Surrey, Sch Psychol, Guildford, England
[2] Univ Oxford, Dept Pharmacol, Oxford, England
关键词
Cardiac cell therapy; Myocardial infarction; Heterocellular communication; Connexin-43; Interleukin-6; Fibroblasts; Crosstalk; Paracrine; SARCOPLASMIC-RETICULUM; CARDIAC FIBROBLASTS; IMPULSE CONDUCTION; HEART-FAILURE; MESSENGER-RNA; EXPRESSION; TRANSPLANTATION; MATURATION; MYOCYTES; MODEL;
D O I
10.1007/s00018-023-04924-3
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) have the potential to remuscularize infarcted hearts but their arrhythmogenicity remains an obstacle to safe transplantation. Myofibroblasts are the predominant cell-type in the infarcted myocardium but their impact on transplanted hiPSC-CMs remains poorly defined. Here, we investigate the effect of myofibroblasts on hiPSC-CMs electrophysiology and Ca2+ handling using optical mapping of advanced human cell coculture systems mimicking cell-cell interaction modalities. Human myofibroblasts altered the electrophysiology and Ca2+ handling of hiPSC-CMs and downregulated mRNAs encoding voltage channels (KV4.3, KV11.1 and Kir6.2) and SERCA2a calcium pump. Interleukin-6 was elevated in the presence of myofibroblasts and direct stimulation of hiPSC-CMs with exogenous interleukin-6 recapitulated the paracrine effects of myofibroblasts. Blocking interleukin-6 reduced the effects of myofibroblasts only in the absence of physical contact between cell-types. Myofibroblast-specific connexin43 knockdown reduced functional changes in contact cocultures only when combined with interleukin-6 blockade. This provides the first in-depth investigation into how human myofibroblasts modulate hiPSC-CMs function, identifying interleukin-6 and connexin43 as paracrine- and contact-mediators respectively, and highlighting their potential as targets for reducing arrhythmic risk in cardiac cell therapy.
引用
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页数:18
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