Endothelial Nitric Oxide Synthase–Deficient Mice

白质 一氧化氮合酶 星形胶质增生 动脉发生 病理 医学 神经退行性变 伊诺斯 生物 内分泌学 内科学 血管生成 神经科学 一氧化氮 疾病 磁共振成像 中枢神经系统 放射科
作者
Francesca‐Fang Liao,Geng Lin,Xingyong Chen,Ling Chen,Wei Xing Zheng,Rajendra Raghow,Fu-Ming Zhou,Andy Y. Shih,Xing-Lin Tan
出处
期刊:American Journal of Pathology [Elsevier BV]
卷期号:191 (11): 1932-1945 被引量:37
标识
DOI:10.1016/j.ajpath.2021.02.022
摘要

Age-related cerebral small-vessel disease (CSVD) is a major cause of stroke and dementia. Despite a widespread acceptance of small-vessel arteriopathy, lacunar infarction, diffuse white matter injury, and cognitive impairment as four cardinal features of CSVD, a unifying pathologic mechanism of CSVD remains elusive. Herein, we introduce partial endothelial nitric oxide synthase (eNOS)–deficient mice as a model of age-dependent, spontaneous CSVD. These mice developed cerebral hypoperfusion and blood-brain barrier leakage at a young age, which progressively worsened with advanced age. Their brains exhibited elevated oxidative stress, astrogliosis, cerebral amyloid angiopathy, microbleeds, microinfarction, and white matter pathology. Partial eNOS-deficient mice developed gait disturbances at middle age, and hippocampus-dependent memory deficits at older ages. These mice also showed enhanced expression of bone morphogenetic protein 4 (BMP4) in brain pericytes before myelin loss and white matter pathology. Because BMP4 signaling not only promotes astrogliogenesis but also blocks oligodendrocyte differentiation, we posit that paracrine actions of BMP4, localized within the neurovascular unit, promote white matter disorganization and neurodegeneration. These observations point to BMP4 signaling pathway in the aging brain vasculature as a potential therapeutic target. Finally, because studies in partial eNOS-deficient mice corroborated recent clinical evidence that blood-brain barrier disruption is a primary cause of white matter pathology, the mechanism of impaired nitric oxide signaling-mediated CSVD warrants further investigation.
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