Enhanced Cerebral Hemodynamics and Cognitive Function Via Knockout of Dual-Specificity Protein Phosphatase 5.

Journal of pharmacy and pharmacology research Pub Date : 2023-01-01 Epub Date: 2023-05-12 DOI:10.26502/fjppr.070
Huawei Zhang, Jane J Border, Xing Fang, Yedan Liu, Chengyun Tang, Wenjun Gao, Shaoxun Wang, Seung Min Shin, Ya Guo, Chao Zhang, Ezekiel Gonzalez-Fernandez, Hongwei Yu, Peng Sun, Richard J Roman, Fan Fan
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Abstract

Alzheimer's Disease (AD) and Alzheimer's Disease-Related Dementias (ADRD) are neurodegenerative disorders. Recent studies suggest that cerebral hypoperfusion is an early symptom of AD/ADRD. Dual-specificity protein phosphatase 5 (DUSP5) has been implicated in several pathological conditions, including pulmonary hypertension and cancer, but its role in AD/ADRD remains unclear. The present study builds on our previous findings, demonstrating that inhibition of ERK and PKC leads to a dose-dependent dilation of the middle cerebral artery and penetrating arteriole, with a more pronounced effect in Dusp5 KO rats. Both ERK and PKC inhibitors resulted in a significant reduction of myogenic tone in vessels from Dusp5 KO rats. Dusp5 KO rats exhibited stronger autoregulation of the surface but not deep cortical cerebral blood flow. Inhibition of ERK and PKC significantly enhanced the contractile capacity of vascular smooth muscle cells from both strains. Finally, a significant improvement in learning and memory was observed in Dusp5 KO rats 24 hours after initial training. Our results suggest that altered vascular reactivity in Dusp5 KO rats may involve distinct mechanisms for different vascular beds, and DUSP5 deletion could be a potential therapeutic target for AD/ADRD. Further investigations are necessary to determine the effects of DUSP5 inhibition on capillary stalling, blood-brain barrier permeability, and neurodegeneration in aging and disease models.

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通过敲除双特异性蛋白磷酸酶5增强脑血流动力学和认知功能。
阿尔茨海默病(AD)和阿尔茨海默病相关痴呆症(ADRD)是神经退行性疾病。最近的研究表明,脑灌注不足是AD/ARD的早期症状。双特异性蛋白磷酸酶5(DUSP5)与多种病理状况有关,包括肺动脉高压和癌症,但其在AD/ADD中的作用尚不清楚。本研究建立在我们之前的研究结果的基础上,证明ERK和PKC的抑制导致大脑中动脉和穿透小动脉的剂量依赖性扩张,在Dusp5 KO大鼠中具有更显著的作用。ERK和PKC抑制剂均导致Dusp5 KO大鼠血管中肌源性张力的显著降低。Dusp5-KO大鼠表现出更强的皮层表面而非深层脑血流的自动调节。ERK和PKC的抑制显著增强了两种菌株血管平滑肌细胞的收缩能力。最后,在初次训练后24小时,在Dusp5 KO大鼠中观察到学习和记忆的显著改善。我们的研究结果表明,Dusp5 KO大鼠血管反应性的改变可能涉及不同血管床的不同机制,Dusp5缺失可能是AD/ADD的潜在治疗靶点。需要进一步研究DUSP5抑制对衰老和疾病模型中毛细血管停滞、血脑屏障通透性和神经退行性变的影响。
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