Necrosis-like cell death modes in heart failure: the influence of aetiology and the effects of RIP3 inhibition

IF 7.5 1区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS
Izabela Jarabicová, Csaba Horváth, Jaroslav Hrdlička, Almos Boroš, Veronika Olejníčková, Eva Zábrodská, Soňa Štemberková Hubáčková, Hana Mauer Šutovská, Ľuboš Molčan, Libor Kopkan, Martin Chudý, Branislav Kura, Barbora Kaločayová, Eva Goncalvesová, Jan Neckář, Michal Zeman, František Kolář, Adriana Adameová
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引用次数: 0

Abstract

Since cell dying in heart failure (HF) may vary based on the aetiology, we examined the main forms of regulated necrosis, such as necroptosis and pyroptosis, in the hearts damaged due to myocardial infarction (MI) or pressure overload. We also investigated the effects of a drug inhibiting RIP3, a proposed convergent point for both these necrosis-like cell death modes. In rat hearts, left ventricular function, remodelling, pro-cell death, and pro-inflammatory events were investigated, and the pharmacodynamic action of RIP3 inhibitor (GSK'872) was assessed. Regardless of the HF aetiology, the heart cells were dying due to necroptosis, albeit the upstream signals may be different. Pyroptosis was observed only in post-MI HF. The dysregulated miRNAs in post-MI hearts were accompanied by higher levels of a predicted target, HMGB1, its receptors (TLRs), as well as the exacerbation of inflammation likely originating from macrophages. The RIP3 inhibitor suppressed necroptosis, unlike pyroptosis, normalised the dysregulated miRNAs and tended to decrease collagen content and affect macrophage infiltration without affecting cardiac function or structure. The drug also mitigated the local heart inflammation and normalised the higher circulating HMGB1 in rats with post-MI HF. Elevated serum levels of HMGB1 were also detected in HF patients and positively correlated with C-reactive protein, highlighting pro-inflammatory axis. In conclusion, in MI-, but not pressure overload-induced HF, both necroptosis and pyroptosis operate and might underlie HF pathogenesis. The RIP3-targeting pharmacological intervention might protect the heart by preventing pro-death and pro-inflammatory mechanisms, however, additional strategies targeting multiple pro-death pathways may exhibit greater cardioprotection.

心衰中坏死样细胞死亡模式:病因及RIP3抑制作用的影响
由于心力衰竭(HF)中的细胞死亡可能因病因而异,因此我们研究了由于心肌梗死(MI)或压力过载而受损的心脏中的主要调节坏死形式,如坏死性坏死和焦亡。我们还研究了一种药物抑制RIP3的作用,RIP3是这两种坏死样细胞死亡模式的汇合点。在大鼠心脏中,研究了左心室功能、重构、促细胞死亡和促炎症事件,并评估了RIP3抑制剂(GSK'872)的药效学作用。不管HF的病因是什么,心脏细胞都是由于坏死下垂而死亡的,尽管上游信号可能不同。仅在心肌梗死后HF中观察到焦亡。心肌梗死后心脏的mirna失调伴随着预测靶标HMGB1及其受体(tlr)水平升高,以及可能源自巨噬细胞的炎症加剧。与焦亡不同,RIP3抑制剂抑制坏死性上睑下垂,使失调的mirna正常化,并倾向于降低胶原含量,影响巨噬细胞浸润,而不影响心脏功能或结构。该药还能减轻局部心脏炎症,使心肌梗死后HF大鼠较高的循环HMGB1正常化。HF患者血清HMGB1水平升高,与c反应蛋白呈正相关,突出促炎轴。综上所述,在心肌梗死中,而不是压力过载引起的HF,坏死性上睑下垂和焦上睑下垂都可能起作用,并可能是HF发病的基础。靶向rip3的药理学干预可能通过阻止促死亡和促炎症机制来保护心脏,然而,针对多种促死亡途径的其他策略可能表现出更大的心脏保护作用。
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来源期刊
Basic Research in Cardiology
Basic Research in Cardiology 医学-心血管系统
CiteScore
16.30
自引率
5.30%
发文量
54
审稿时长
6-12 weeks
期刊介绍: Basic Research in Cardiology is an international journal for cardiovascular research. It provides a forum for original and review articles related to experimental cardiology that meet its stringent scientific standards. Basic Research in Cardiology regularly receives articles from the fields of - Molecular and Cellular Biology - Biochemistry - Biophysics - Pharmacology - Physiology and Pathology - Clinical Cardiology
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