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脑动静脉畸形发病机制中的氧化应激和炎症:同一问题的两个方面。

Oxidative stress and inflammation in cerebral cavernous malformation disease pathogenesis: Two sides of the same coin.

机构信息

Department of Clinical and Biological Sciences, School of Medicine and Surgery, University of Torino, Regione Gonzole 10, 10043 Orbassano, Torino, Italy; CCM Italia Research Network(1).

University of Rochester Medical Center, School of Medicine and Dentistry, 601 Elmwood Ave, 14642 Rochester, NY, USA.

出版信息

Int J Biochem Cell Biol. 2016 Dec;81(Pt B):254-270. doi: 10.1016/j.biocel.2016.09.011. Epub 2016 Sep 14.

Abstract

Cerebral Cavernous Malformation (CCM) is a vascular disease of proven genetic origin, which may arise sporadically or is inherited as an autosomal dominant condition with incomplete penetrance and highly variable expressivity. CCM lesions exhibit a range of different phenotypes, including wide inter-individual differences in lesion number, size, and susceptibility to intracerebral hemorrhage (ICH). Lesions may remain asymptomatic or result in pathological conditions of various type and severity at any age, with symptoms ranging from recurrent headaches to severe neurological deficits, seizures, and stroke. To date there are no direct therapeutic approaches for CCM disease besides the surgical removal of accessible lesions. Novel pharmacological strategies are particularly needed to limit disease progression and severity and prevent de novo formation of CCM lesions in susceptible individuals. Useful insights into innovative approaches for CCM disease prevention and treatment are emerging from a growing understanding of the biological functions of the three known CCM proteins, CCM1/KRIT1, CCM2 and CCM3/PDCD10. In particular, accumulating evidence indicates that these proteins play major roles in distinct signaling pathways, including those involved in cellular responses to oxidative stress, inflammation and angiogenesis, pointing to pathophysiological mechanisms whereby the function of CCM proteins may be relevant in preventing vascular dysfunctions triggered by these events. Indeed, emerging findings demonstrate that the pleiotropic roles of CCM proteins reflect their critical capacity to modulate the fine-tuned crosstalk between redox signaling and autophagy that govern cell homeostasis and stress responses, providing a novel mechanistic scenario that reconciles both the multiple signaling pathways linked to CCM proteins and the distinct therapeutic approaches proposed so far. In addition, recent studies in CCM patient cohorts suggest that genetic susceptibility factors related to differences in vascular sensitivity to oxidative stress and inflammation contribute to inter-individual differences in CCM disease susceptibility and severity. This review discusses recent progress into the understanding of the molecular basis and mechanisms of CCM disease pathogenesis, with specific emphasis on the potential contribution of altered cell responses to oxidative stress and inflammatory events occurring locally in the microvascular environment, and consequent implications for the development of novel, safe, and effective preventive and therapeutic strategies.

摘要

脑海绵状血管畸形(CCM)是一种已证实具有遗传起源的血管疾病,它可以散发发生,也可以作为不完全外显和表现度高度可变的常染色体显性遗传疾病遗传。CCM 病变表现出一系列不同的表型,包括病变数量、大小和易发性颅内出血(ICH)的个体间广泛差异。病变可能仍然无症状,或者在任何年龄导致各种类型和严重程度的病理性情况,症状范围从反复发作的头痛到严重的神经功能缺损、癫痫发作和中风。迄今为止,除了切除可触及的病变外,CCM 疾病没有直接的治疗方法。特别需要新的药理学策略来限制疾病进展和严重程度,并防止易感个体中新的 CCM 病变形成。对三种已知 CCM 蛋白(CCM1/KRIT1、CCM2 和 CCM3/PDCD10)的生物学功能的深入了解为 CCM 疾病的预防和治疗提供了新的见解。特别是,越来越多的证据表明,这些蛋白在不同的信号通路中发挥主要作用,包括参与细胞对氧化应激、炎症和血管生成的反应的信号通路,这表明 CCM 蛋白的功能可能与预防这些事件触发的血管功能障碍有关的病理生理机制。事实上,新的发现表明 CCM 蛋白的多效性作用反映了它们调节氧化还原信号和自噬之间精细相互作用的关键能力,氧化还原信号和自噬控制着细胞的稳态和应激反应,为协调与 CCM 蛋白相关的多种信号通路和迄今为止提出的不同治疗方法提供了一个新的机制情景。此外,CCM 患者队列的最近研究表明,与氧化应激和炎症引起的血管敏感性差异相关的遗传易感性因素导致 CCM 疾病易感性和严重程度的个体间差异。这篇综述讨论了对 CCM 疾病发病机制的分子基础和机制的最新理解进展,特别强调了细胞对局部微血管环境中发生的氧化应激和炎症事件的反应改变对新的、安全和有效的预防和治疗策略的发展的潜在贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8812/5155701/747526174b70/fx1.jpg

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