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心肌微组织对急性局部损伤的力学反应。

Mechanical response of cardiac microtissues to acute localized injury.

机构信息

Harvard-MIT Program in Health Sciences and Technology, Institute for Medical Engineering and Science, Massachusetts Institute of Technology, Cambridge, Massachusetts.

Department of Biomedical Engineering, Boston University, Boston, Massachusetts.

出版信息

Am J Physiol Heart Circ Physiol. 2022 Oct 1;323(4):H738-H748. doi: 10.1152/ajpheart.00305.2022. Epub 2022 Sep 2.

Abstract

After a myocardial infarction (MI), the heart undergoes changes including local remodeling that can lead to regional abnormalities in mechanical and electrical properties, ultimately increasing the risk of arrhythmias and heart failure. Although these responses have been successfully recapitulated in animal models of MI, local changes in tissue and cell-level mechanics caused by MI remain difficult to study in vivo. Here, we developed an in vitro cardiac microtissue (CMT) injury system that through acute focal injury recapitulates aspects of the regional responses seen following an MI. With a pulsed laser, cell death was induced in the center of the microtissue causing a loss of calcium signaling and a complete loss of contractile function in the injured region and resulting in a 39% reduction in the CMT's overall force production. After 7 days, the injured area remained void of cardiomyocytes (CMs) and showed increased expression of vimentin and fibronectin, two markers for fibrotic remodeling. Interestingly, although the injured region showed minimal recovery, calcium amplitudes in uninjured regions returned to levels comparable with control. Furthermore, overall force production returned to preinjury levels despite the lack of contractile function in the injured region. Instead, uninjured regions exhibited elevated contractile function, compensating for the loss of function in the injured region, drawing parallels to changes in tissue-level mechanics seen in vivo. Overall, this work presents a new in vitro model to study cardiac tissue remodeling and electromechanical changes after injury. We report an in vitro cardiac injury model that uses a high-powered laser to induce regional cell death and a focal fibrotic response within a human-engineered cardiac microtissue. The model captures the effects of acute injury on tissue response, remodeling, and electromechanical recovery in both the damaged region and surrounding healthy tissue, modeling similar changes to contractile function observed in vivo following myocardial infarction.

摘要

心肌梗死后(MI),心脏会发生变化,包括局部重构,这可能导致机械和电性能的区域性异常,最终增加心律失常和心力衰竭的风险。虽然这些反应已在 MI 的动物模型中成功再现,但 MI 引起的组织和细胞水平力学的局部变化仍然难以在体内研究。在这里,我们开发了一种体外心脏微组织(CMT)损伤系统,该系统通过急性局灶性损伤再现了 MI 后观察到的区域性反应的某些方面。通过脉冲激光,在微组织的中心诱导细胞死亡,导致钙信号丧失和损伤区域的收缩功能完全丧失,导致 CMT 的整体力产生减少 39%。7 天后,损伤区域仍然没有心肌细胞(CM),并且表现出波形蛋白和纤连蛋白的表达增加,这两种蛋白是纤维化重构的标志物。有趣的是,尽管损伤区域几乎没有恢复,但未损伤区域的钙幅度恢复到与对照相当的水平。此外,尽管损伤区域缺乏收缩功能,但整体力产生恢复到损伤前的水平。相反,未损伤区域表现出升高的收缩功能,补偿了损伤区域的功能丧失,与体内观察到的组织水平力学变化相平行。总的来说,这项工作提出了一种新的体外模型来研究损伤后心脏组织重构和机电变化。我们报告了一种体外心脏损伤模型,该模型使用高功率激光在人源化心脏微组织内诱导局部细胞死亡和局灶性纤维化反应。该模型捕获了急性损伤对组织反应、重构和损伤区域和周围健康组织的机电恢复的影响,模拟了心肌梗死后体内观察到的收缩功能的类似变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d686/9662801/b07219368663/ajpheart.00305.2022_f001.jpg

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