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If these myocytes could talk, they would speak the language of metabolites

机译:如果这些肌细胞可以说话,他们会说代谢物的语言

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摘要

Cardiac wound healing following ischemic injury requires a well-described spatiotemporal progression of events involving multiple cell types and cell-cell interactions. While cellular crosstalk among immune cell, endothelial cell, and fibroblast populations is known to regulate these progressive phases, the role of cardiac myocytes in controlling the wound-healing program is unclear. In this issue of the JCI , Li et al. describe a mechanism of cellular crosstalk between cardiac myocytes and fibroblasts that disrupts nonmyocyte cell function and worsens wound healing outcomes following myocardial infarction (MI). This tour de force study used an arsenal of multidisciplinary approaches to identify a central role for the ectonucleotidase ENPP1 in this process. These findings have clear therapeutic implications, as the authors identified a small molecular inhibitor of ENPP1 that improved post-MI outcomes in mice. These exciting data provide impactful mechanistic information that advance the field’s understanding of cardiac repair and remodeling.
机译:在缺血性损伤后心肌伤口愈合需要熟练描述的时尚进展涉及多种细胞类型和细胞间相互作用的事件。虽然已知免疫细胞,内皮细胞和成纤维细胞群中的细胞串扰来调节这些渐进阶段,但是心肌细胞在控制伤口愈合程序中的作用尚不清楚。在这个问题的JCI,Li等人。描述心肌细胞和成纤维细胞之间的细胞串扰的机制,其破坏非血细胞细胞功能并在心肌梗塞(MI)后恶化伤口愈合结果。该巡回演出研究使用了多学科方法的阿森纳,以确定该过程中异位核苷酸酶ENPP1的核心作用。这些发现具有明显的治疗意义,因为作者确定了eNPP1的小分子抑制剂,其在小鼠中改善了MI后结果。这些令人兴奋的数据提供了有影响力的机制信息,提高了该领域对心脏修复和重塑的理解。

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