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Neurovascular mechanisms underlying augmented cold‐induced reflex cutaneous vasoconstriction in human hypertension

机译:高血压引起的冷诱导反射性皮肤血管收缩增强的神经血管机制

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摘要

Key points class="unordered" style="list-style-type:disc" id="tjp12136-list-0001">In hypertensive adults (HTN), cardiovascular risk increases disproportionately during environmental cold exposure.Despite ample evidence of dysregulated sympathetic control of the peripheral vasculature in hypertension, no studies have examined integrated neurovascular function during cold stress in HTN.The findings of the present study show that whole‐body cold stress elicits greater increases in sympathetic outflow directed to the cutaneous vasculature and, correspondingly, greater reductions in skin blood flow in HTN.We further demonstrate an important role for non‐adrenergic sympathetic co‐transmitters in mediating the vasoconstrictor response to cold stress in hypertension.In the context of thermoregulation and the maintenance of core temperature, sympathetically‐mediated control of the cutaneous vasculature is not only preserved, but also exaggerated in hypertension. Given the increasing prevalence of hypertension, clarifying the mechanistic underpinnings of hypertension‐induced alterations in neurovascular function during cold exposure is clinically relevant.
机译:关键点 class =“ unordered” style =“ list-style-type:disc” id =“ tjp12136-list-0001”> <!-list-behavior = unordered prefix-word = mark-type = disc max- label-size = 0-> 在高血压成年人(HTN)中,环境冷暴露期间心血管疾病的风险成比例增加。 尽管有充分的证据表明高血压患者外周脉管系统的交感控制失调,但尚无研究已经研究了HTN在冷应激过程中的整合性神经血管功能。 本研究的结果表明,全身冷应激引起针对皮肤脉管系统的交感神经流出增加更多,相应地,皮肤减少也更多 我们进一步证明了非肾上腺能交感神经递质在介导高血压对冷应激的血管收缩反应中的重要作用。 在体温调节和维持核心温度,通过交感神经介导的控制如果在高血压中不仅保留了皮肤血管,而且夸大了皮肤。鉴于高血压的患病率不断上升,弄清高血压导致的冷暴露过程中神经血管功能改变的机制基础具有临床意义。

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