粒体自噬
自噬
线粒体
生物
细胞生物学
缺血
再灌注损伤
内科学
医学
生物化学
细胞凋亡
作者
Mireia Náger,Kenneth Bowitz Larsen,Zambarlal Bhujabal,Trine Kalstad,Judith Rössinger,Truls Myrmel,Florian Weinberger,Åsa Birna Birgisdottir
摘要
The paradoxical exacerbation of cellular injury and death during reperfusion remains a problem in treatment of myocardial infarction. Mitochondrial dysfunction plays a key role in the pathogenesis of myocardial ischemia and reperfusion injury. Dysfunctional mitochondria can be removed by mitophagy, culminating in their degradation within acidic lysosomes. Mitophagy is pivotal in maintaining cardiac homeostasis and emerges as a potential therapeutic target. Here we employ beating human engineered heart tissue (EHT) to assess mitochondrial dysfunction and mitophagy during ischemia and reperfusion simulation. Our data indicate adverse ultrastructural changes in mitochondrial morphology and impairment of mitochondrial respiration. Furthermore, our pH-sensitive mitophagy reporter EHTs, generated by CRISPR/Cas9 endogenous knock-in strategy, reveal induced mitophagy flux in EHTs after ischemia and reperfusion simulation. The induced flux requires the activity of the protein kinase ULK1, a member of the core-autophagy machinery. Our results demonstrate the applicability of the reporter EHTs for mitophagy assessment in a clinically relevant setting. Deciphering mitophagy in the human heart will facilitate development of novel therapeutic strategies.
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