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神经生长因子(Ngf)基因驱动的信号素 3a(Sema3a)表达加剧了小鼠的胸主动脉瘤夹层。

Nerve growth factor (Ngf) gene-driven semaphorin 3a (Sema3a) expression exacerbates thoracic aortic aneurysm dissection in mice.

机构信息

Key Laboratory of Cellular Physiology at Shanxi Medical University, Ministry of Education.

Department of Physiology, Shanxi Medical University.

出版信息

J Hypertens. 2024 May 1;42(5):816-827. doi: 10.1097/HJH.0000000000003647. Epub 2023 Dec 21.

Abstract

Thoracic aortic aneurysm and dissection (TAAD) is a life-threatening disease and currently there is no pharmacological therapy. Sympathetic nerve overactivity plays an important role in the development of TAAD. Sympathetic innervation is mainly controlled by nerve growth factor (NGF, a key neural chemoattractant) and semaphoring 3A (Sema3A, a key neural chemorepellent), while the roles of these two factors in aortic sympathetic innervation and especially TAAD are unknown. We hypothesized that genetically manipulating the NGF/Sema3A ratio by the Ngf -driven Sema3a expression approach may reduce aortic sympathetic nerve innervation and mitigate TAAD progression. A mouse strain of Ngf gene-driven Sema3a expression (namely NgfSema3a/Sema3a mouse) was established by inserting the 2A-Sema3A expression frame to the Ngf terminating codon using CRISPR/Cas9 technology. TAAD was induced by β-aminopropionitrile monofumarate (BAPN) both in NgfSema3a/Sema3a mice and wild type (WT) littermates. Contrary to our expectation, the BAPN-induced TAAD was severer in NgfSema3a/Sema3a mice than in wild-type (WT) mice. In addition, NgfSema3a/Sema3a mice showed higher aortic sympathetic innervation, inflammation and extracellular matrix degradation than the WT mice after BAPN treatment. The aortic vascular smooth muscle cells isolated from NgfSema3a/Sema3a mice and pretreated with BAPN in vivo for two weeks showed stronger capabilities of proliferation and migration than that from the WT mice. We conclude that the strategy of Ngf -driven Sema3a expression cannot suppress but worsens the BAPN-induced TAAD. By investigating the aortic phenotype of NgfSema3a/Sema3a mouse strain, we unexpectedly find a path to exacerbate BAPN-induced TAAD which might be useful in future TAAD studies.

摘要

胸主动脉瘤和夹层(TAAD)是一种危及生命的疾病,目前尚无药物治疗方法。交感神经活性过度在 TAAD 的发展中起着重要作用。交感神经支配主要受神经生长因子(NGF,一种关键的神经趋化因子)和 Sema3A(一种关键的神经化学排斥物)控制,而这两种因子在主动脉交感神经支配中的作用,尤其是在 TAAD 中的作用尚不清楚。我们假设通过 NGF 驱动的 Sema3a 表达方法来改变 NGF/Sema3A 比值可能会减少主动脉交感神经支配并减轻 TAAD 的进展。我们使用 CRISPR/Cas9 技术在 NGF 终止密码子处插入 2A-Sema3A 表达框,构建了 NGF 基因驱动 Sema3a 表达的小鼠品系(即 NgfSema3a/Sema3a 小鼠)。通过β-氨基丙腈单富马酸盐(BAPN)在 NgfSema3a/Sema3a 小鼠和野生型(WT)同窝仔鼠中诱导 TAAD。与我们的预期相反,BAPN 诱导的 TAAD 在 NgfSema3a/Sema3a 小鼠中比在野生型(WT)小鼠中更为严重。此外,在 BAPN 处理后,NgfSema3a/Sema3a 小鼠的主动脉交感神经支配、炎症和细胞外基质降解程度高于 WT 小鼠。从 NgfSema3a/Sema3a 小鼠中分离出的主动脉血管平滑肌细胞,并在体内用 BAPN 预处理两周后,其增殖和迁移能力强于 WT 小鼠。我们得出的结论是,NGF 驱动的 Sema3a 表达策略不能抑制而是加重 BAPN 诱导的 TAAD。通过研究 NgfSema3a/Sema3a 小鼠品系的主动脉表型,我们意外地发现了一种加重 BAPN 诱导的 TAAD 的途径,这可能对未来的 TAAD 研究有用。

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