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颅内海绵状血管畸形的发病机制:利用动物模型研究病变形成和进展。

Cerebral Cavernous Malformation Pathogenesis: Investigating Lesion Formation and Progression with Animal Models.

机构信息

Neuroscience Graduate Program, University of Michigan Medical School, Ann Arbor, MI 48109, USA.

Department of Pathology, University of Michigan Medical School, Ann Arbor, MI 48109, USA.

出版信息

Int J Mol Sci. 2022 Apr 30;23(9):5000. doi: 10.3390/ijms23095000.

Abstract

Cerebral cavernous malformation (CCM) is a cerebromicrovascular disease that affects up to 0.5% of the population. Vessel dilation, decreased endothelial cell-cell contact, and loss of junctional complexes lead to loss of brain endothelial barrier integrity and hemorrhagic lesion formation. Leakage of hemorrhagic lesions results in patient symptoms and complications, including seizures, epilepsy, focal headaches, and hemorrhagic stroke. CCMs are classified as sporadic (sCCM) or familial (fCCM), associated with loss-of-function mutations in , , and Identifying the CCM proteins has thrust the field forward by (1) revealing cellular processes and signaling pathways underlying fCCM pathogenesis, and (2) facilitating the development of animal models to study CCM protein function. CCM animal models range from various murine models to zebrafish models, with each model providing unique insights into CCM lesion development and progression. Additionally, these animal models serve as preclinical models to study therapeutic options for CCM treatment. This review briefly summarizes CCM disease pathology and the molecular functions of the CCM proteins, followed by an in-depth discussion of animal models used to study CCM pathogenesis and developing therapeutics.

摘要

脑 海绵状血管畸形(CCM)是一种影响高达 0.5%人群的脑微血管疾病。血管扩张、内皮细胞间接触减少以及连接复合体丢失导致脑内皮屏障完整性丧失和出血性病变形成。出血性病变的渗漏导致患者出现症状和并发症,包括癫痫发作、癫痫、局灶性头痛和出血性中风。CCM 分为散发性(sCCM)或家族性(fCCM),与 、 和 的功能丧失突变相关。鉴定 CCM 蛋白通过(1)揭示 fCCM 发病机制的细胞过程和信号通路,以及(2)促进 CCM 蛋白功能的动物模型的开发,推动了该领域的发展。CCM 动物模型范围从各种小鼠模型到斑马鱼模型,每种模型都为 CCM 病变发展和进展提供了独特的见解。此外,这些动物模型还可用作研究 CCM 治疗治疗选择的临床前模型。本综述简要总结了 CCM 疾病病理学和 CCM 蛋白的分子功能,随后深入讨论了用于研究 CCM 发病机制和开发治疗方法的动物模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13a7/9105545/2624b57e69ea/ijms-23-05000-g001.jpg

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