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首页> 外文期刊>Acta physiologica >Transient receptor potential vanilloid-4 channels are involved in diminished myogenic tone in brain parenchymal arterioles in response to chronic hypoperfusion in mice
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Transient receptor potential vanilloid-4 channels are involved in diminished myogenic tone in brain parenchymal arterioles in response to chronic hypoperfusion in mice

机译:瞬态受体潜在的香草4通道涉及脑实质动脉瘤中的肌菌调低,响应小鼠的慢性低血量灌注

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Aim Adaptive responses of brain parenchymal arterioles (PAs), a target for cerebral small vessel disease, to chronic cerebral hypoperfusion are largely unknown. Previous evidence suggested that transient receptor potential vanilloid 4 channels may be involved in the regulation of cerebrovascular tone. Therefore, we investigated the role of TRPV4 in adaptations of PAs in a mouse model of chronic hypoperfusion. Methods TRPV4 knockout ((-/-)) and wild-type (WT) mice were subjected to unilateral common carotid artery occlusion (UCCAo) for 28 days. Function and structure of PAs ipsilateral to UCCAo were studied isolated and pressurized in an arteriograph. Results Basal tone of PAs was similar between WT and TRPV4(-/-) mice (22 +/- 3 vs 23 +/- 5%). After UCCAo, active inner diameters of PAs from WT mice were larger than control (41 +/- 2 vs 26 +/- 5 mu m, P 0.05) that was due to decreased tone (8 +/- 2 vs 23 +/- 5%, P 0.05), increased passive inner diameters (46 +/- 3 vs 34 +/- 2 mu m, P 0.05), and decreased wall-to-lumen ratio (0.104 +/- 0.01 vs 0.137 +/- 0.01, P 0.05). However, UCCAo did not affect vasodilation to a small- and intermediate-conductance calcium-activated potassium channel agonist NS309, the nitric oxide (NO) donor sodium nitroprusside, or constriction to a NO synthase inhibitor L-NNA. Wall thickness and distensibility in PAs from WT mice were unaffected. In TRPV4(-/-) mice, UCCAo had no effect on active inner diameters or tone and only increased passive inner diameters (53 +/- 2 vs 43 +/- 3 mu m, P 0.05). Conclusion Adaptive response of PAs to chronic cerebral hypoperfusion includes myogenic tone reduction and outward remodelling. TRPV4 channels were involved in tone reduction but not outward remodelling in response to UCCAo.
机译:脑实质血液(PAS)的AIM自适应反应,脑小血管疾病的靶标,慢性脑低血量灌注在很大程度上。以前的证据表明,瞬时受体潜在的香草4通道可以参与脑血管间调的调节。因此,我们研究了TRPV4在慢性低渗血液模型中PAS调整的作用。方法对TRPV4敲除(( - / - ))和野生型(WT)小鼠进行单侧常见的颈动脉闭塞(UCCAO)28天。研究了Pas IpsilateLal的功能和结构,在动脉造影中分离和加压。结果WT和TRPV4( - / - )小鼠(22 +/- 3 Vs 23 +/- 5%)之间的PAS基础音调相似。在UCCAO之后,来自WT小鼠的PAS的活性内径大于对照(41 +/- 2与26 +/-5μm,P <0.05),其由于基调降低(8 +/- 2 Vs 23 + / - 5%,P <0.05),增加无源内径(46 +/- 3 Vs 34 +/-2μm,p <0.05),壁到腔比率下降(0.104 +/- 0.01 vs 0.137 +/- 0.01,p <0.05)。然而,UCCAO不影响血管舒张,对小型和中间导电钙活化的钾通道A激动剂NS309,一氧化氮(NO)供体硝酸钠或对NO合酶抑制剂L-NNA的收缩。来自WT小鼠的PAS中的壁厚和扩张不受影响。在TRPV4( - / - )小鼠中,UCCAO对有源内径或音调没有影响,并且只有增加的无源内径(53 +/- 2 Vs 43 +/-3μm,p <0.05)。结论PA对慢性脑低渗的适应性响应包括肌原源性调节和向外重塑。 TRPV4频道涉及音调减少,但响应于UCCAO而言,没有向外重塑。

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