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Suppressing the Na+/H+ exchanger 1: a new sight to treat depression

机译:抑制Na + / H +交换子1:治疗抑郁症的新视点

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摘要

Na+/H+ exchanger 1 (NHE1), an important regulator of intracellular pH (pHi) and extracellular pH (pHe), plays a crucial role in various physiological and pathological processes. However, the role of NHE1 in depression has not yet been reported. This study was designed to investigate the role of NHE1 in the animal model of depression and explore the underlying mechanisms. Our results showed that inhibition of rho-associated kinase 2 (ROCK2) by fasudil (Fas) or baicalin (BA) significantly alleviated chronic unpredictable mild stress (CUMS) paradigm-induced depression-related behaviours in mice, as shown by decreased sucrose consumption in sucrose preference test (SPT), reduced locomotor activity in the open field test (OFT), and increased immobility time in the tail suspension test (TST) and forced swimming test (FST). Furthermore, ROCK2 inhibition inhibited the activation of NHE1, calpain1, and reduced neuronal apoptosis in the CUMS animal model of depression. Next, we used the lipopolysaccharide (LPS)-challenged animal model of depression to induce NHE1 activation. Our results revealed that mice subjected to 1 μl LPS (10 mg/ml) injection intracerebroventricularly (i.c.v.) showed depressive-like behaviours and NHE1 activation. Amiloride (Ami), an NHE1 inhibitor, significantly reversed the decrease in sucrose consumption and reduction in immobility time in the TST and FST induced by LPS challenge. Furthermore, Ami decreased the expression of ROCK2, NHE1, calpain1, and caspase-3 and increased the Bcl-1/Bax ratio in the hippocampus of LPS-challenged mice. Ami treatment also led to antidepressive effects in the CUMS-induced animal model of depression. Thus ROCK2 inhibition could be proposed as a neuroprotective strategy against neuronal apoptosis, and NHE1 might be a potential therapeutic target in depression.
机译:Na + / H + 交换子1(NHE1)是细胞内pH(pHi)和细胞外pH(pHe)的重要调节剂,在各种生理和病理学中起着至关重要的作用流程。但是,尚未报道NHE1在抑郁症中的作用。这项研究旨在调查NHE1在抑郁症动物模型中的作用,并探讨其潜在机制。我们的研究结果表明,法舒地尔(Fas)或黄in苷(BA)抑制rho相关激酶2(ROCK2)可以显着减轻小鼠慢性不可预测的轻度应激(CUMS)引起的抑郁相关行为,如蔗糖消耗量的减少蔗糖偏爱测试(SPT),开放视野测试(OFT)的运动能力降低以及尾部悬吊测试(TST)和强迫游泳测试(FST)的不动时间增加。此外,ROCK2抑制可抑制CUMS抑郁动物模型中NHE1,calpain1的活化并减少神经元凋亡。接下来,我们使用脂多糖(LPS)激发的抑郁症动物模型诱导NHE1激活。我们的结果表明,经心室内(i.c.v.)注射1μlLPS(10μmg/ ml)的小鼠表现出抑郁样行为和NHE1激活。 NHE1抑制剂阿米洛利(Ami)显着逆转了LPS刺激诱导的蔗糖消耗的减少以及TST和FST固定时间的减少。此外,Ami降低了LPS攻击小鼠海马中ROCK2,NHE1,calpain1和caspase-3的表达,并提高了Bcl-1 / Bax比。 Ami治疗还导致CUMS诱发的抑郁症动物模型产生抗抑郁作用。因此,ROCK2抑制可被提议作为针对神经元凋亡的神经保护策略,而NHE1可能是抑郁症的潜在治疗靶点。

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