Hif-1α ablation reduces the efficiency of NeuroD1 gene-based therapy and aggravates the brain damage following ischemic stroke.

Expert opinion on drug delivery Pub Date : 2025-01-01 Epub Date: 2024-12-04 DOI:10.1080/17425247.2024.2435458
Nashwa Amin, Fei Wu, Bing-Xin Zhao, Zongjie Shi, Ahmed Abdelsadik, Abuelhassan Elshazly Younis, Irum Naz Abbasi, Javaria Sundus, Azhar Badry Hussein, Yu Geng, Marong Fang
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Abstract

Introduction: Hypoxia-inducible factor 1α [HIF1α] regulates gene expression, allowing the organism to respond to low oxygen levels. Meanwhile, astrocytes participate in inflammatory processes and are associated with neurotoxic chemicals that can increase stroke volume, contributing considerably to the devastating effects of a stroke.

Objective: To evaluate whether Hif-1α ablation from the central nervous system is implicated in motor dysfunction and ischemic brain damage following stroke. Furthermore, to explore if Hif-1α ablation affects the therapeutic impact of NeuroD1 gene-based therapy.

Methods: Endothelin-1 [ET-1] was injected to induce ischemic stroke in mice. Both wild-type and Hypoxia-inducible factor 1α conditional knockout [Hif-1α CKO] mice were used. The effect of Hif-1α ablation was assessed by the neuron numbers, astrocyte activity, vascular endothelial growth factor [VEGF] expression, and behavioral tests. Moreover, western blot, ELISA, and RNA sequencing were used. Then, we used pAAV2/9-GfaABC1D-NeuroD1-P2A-EGFP-WPRE injection to examine the impact of NeuroD1 in Hif-1α CKO mice following ischemic stroke.

Results: We found that following stroke, motor dysfunction significantly increased in Hif-1α CKO mice. Furthermore, elevation of apoptosis and activation in both microglia and astrocytes were observed, consequently up-regulating neuroinflammation. Meanwhile, Hif-1α ablation significantly decreased the efficiency of NeuroD1 gene-based therapy.

Conclusion: Our findings demonstrate that Hif-1α ablation from the nervous system is implicated in ischemic stroke pathogenesis mainly by increasing neuron cell death and inducing astrocytes as well as decreasing the efficiency of NeuroD1. These data support the idea that manipulating HIF-1α is a viable therapeutic for ischemic stroke.

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Hif-1α消融降低了基于NeuroD1基因治疗的效率,并加重了缺血性脑卒中后的脑损伤。
导语:缺氧诱导因子1α [HIF1α]调节基因表达,使机体对低氧水平作出反应。同时,星形胶质细胞参与炎症过程,并与神经毒性化学物质有关,这些化学物质可以增加中风的体积,对中风的破坏性影响有很大贡献。目的:探讨中枢神经系统Hif-1α消融是否与脑卒中后运动功能障碍和缺血性脑损伤有关。此外,探讨Hif-1α消融是否影响基于NeuroD1基因治疗的治疗效果。方法:注射内皮素-1 (ET-1)诱导小鼠缺血性脑卒中。使用野生型和缺氧诱导因子1α条件敲除[Hif-1α CKO]小鼠。通过神经元数量、星形胶质细胞活性、血管内皮生长因子(VEGF)表达和行为测试来评估Hif-1α消融的效果。此外,采用western blot、ELISA和RNA测序。然后,我们使用pAAV2/9-GfaABC1D-NeuroD1-P2A-EGFP-WPRE注射剂检测Hif-1α CKO小鼠缺血性脑卒中后NeuroD1的影响。结果:我们发现中风后,Hif-1α CKO小鼠的运动功能障碍显著增加。此外,观察到小胶质细胞和星形胶质细胞凋亡和活化的升高,从而上调神经炎症。同时,Hif-1α消融显著降低了基于NeuroD1基因治疗的疗效。结论:神经系统的Hif-1α消融主要通过增加神经元细胞死亡和诱导星形胶质细胞以及降低NeuroD1的效率参与缺血性卒中的发病机制。这些数据支持了操纵HIF-1α是缺血性中风可行的治疗方法的观点。
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