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在正常体温和被动热应激期间,健康年轻男性和女性的肾血管控制没有差异。

Renal vascular control during normothermia and passive heat stress does not differ between healthy younger men and women.

作者信息

Freemas Jessica A, Worley Morgan L, Gabler Mikaela C, Hess Hayden W, Goss Curtis S, Baker Tyler B, Johnson Blair D, Chapman Christopher L, Schlader Zachary J

机构信息

Department of Kinesiology, H.H. Morris Human Performance Laboratories, Indiana University School of Public Health, Bloomington, Indiana, United States.

Department of Exercise and Nutrition Sciences, Center for Research and Education in Special Environments, University at Buffalo, Buffalo, New York, United States.

出版信息

Am J Physiol Renal Physiol. 2024 May 1;326(5):F802-F813. doi: 10.1152/ajprenal.00034.2024. Epub 2024 Mar 28.

Abstract

Men are likely at greater risk for heat-induced acute kidney injury compared with women, possibly due to differences in vascular control. We tested the hypothesis that the renal vasoconstrictor and vasodilator responses will be greater in younger women compared with men during passive heat stress. Twenty-five healthy adults [12 women (early follicular phase) and 13 men] completed two experimental visits, heat stress or normothermic time-control, assigned in a block-randomized crossover design. During heat stress, participants wore a water-perfused suit perfused with 50°C water. Core temperature was increased by ∼0.8°C in the first hour before commencing a 2-min cold pressor test (CPT). Core temperature remained clamped and at 1-h post-CPT, subjects ingested a whey protein shake (1.2 g of protein/kg body wt), and measurements were taken pre-, 75 min, and 150 min post-protein. Beat-to-beat blood pressure (Penaz method) was measured and segmental artery vascular resistance (VR, Doppler ultrasound) was calculated as segmental artery blood velocity ÷ mean arterial pressure. CPT-induced increases in segmental artery VR did not differ between trials (trial effect: = 0.142) nor between men (heat stress: 1.5 ± 1.0 mmHg/cm/s, normothermia: 1.4 ± 1.0 mmHg/cm/s) and women (heat stress: 1.4 ± 1.2 mmHg/cm/s, normothermia: 2.1 ± 1.1 mmHg/cm/s) (group effect: = 0.429). Reductions in segmental artery VR following oral protein loading did not differ between trials (trial effect: = 0.080) nor between men (heat stress: -0.6 ± 0.8 mmHg/cm/s, normothermia: -0.6 ± 0.6 mmHg/cm/s) and women (heat stress: -0.5 ± 0.5 mmHg/cm/s, normothermia: -1.1 ± 0.6 mmHg/cm/s) (group effect: = 0.204). Renal vasoconstrictor responses to the cold pressor test and vasodilator responses following an oral protein load during heat stress or normothermia do not differ between younger men and younger women in the early follicular phase of the menstrual cycle. The mechanisms underlying greater heat-induced acute kidney injury risk in men versus women remain unknown. This study examined renal vascular control, including both vasodilatory (oral protein load) and vasoconstrictor (cold presser test) responses, during normothermia and heat stress and compared these responses between men and women. The results indicated that in both conditions neither renal vasodilatory nor vasoconstrictor responses differ between younger men and younger women.

摘要

与女性相比,男性因高温导致急性肾损伤的风险可能更高,这可能是由于血管控制方面的差异。我们检验了这样一个假设:在被动热应激期间,年轻女性的肾血管收缩和舒张反应比男性更强烈。25名健康成年人[12名女性(卵泡早期)和13名男性]完成了两次实验性访视,采用区组随机交叉设计,分别进行热应激或常温时间对照。在热应激期间,参与者穿着灌注50°C水的水灌注服。在开始2分钟冷加压试验(CPT)前的第一小时,核心体温升高约0.8°C。核心体温保持稳定,在CPT后1小时,受试者摄入乳清蛋白奶昔(1.2 g蛋白质/千克体重),并在摄入蛋白质前、75分钟和150分钟进行测量。测量逐搏血压(Penaz法),并计算节段动脉血管阻力(VR,多普勒超声),计算方法为节段动脉血流速度÷平均动脉压。CPT引起的节段动脉VR增加在各试验之间(试验效应: = 0.142)以及男性(热应激:1.5±1.0 mmHg/cm/s,常温:1.4±1.0 mmHg/cm/s)和女性(热应激:1.4±1.2 mmHg/cm/s,常温:2.1±1.1 mmHg/cm/s)之间均无差异(组效应: = 0.429)。口服蛋白质负荷后节段动脉VR的降低在各试验之间(试验效应: = 0.080)以及男性(热应激:-0.6±0.8 mmHg/cm/s,常温:-0.6±0.6 mmHg/cm/s)和女性(热应激:-0.5±0.5 mmHg/cm/s,常温:-1.1±0.6 mmHg/cm/s)之间均无差异(组效应: = 0.204)。在月经周期的卵泡早期,年轻男性和年轻女性在热应激或常温期间对冷加压试验的肾血管收缩反应以及口服蛋白质负荷后的血管舒张反应没有差异。男性比女性因高温导致急性肾损伤风险更高的潜在机制仍然未知。本研究在常温及热应激期间检查了肾血管控制,包括血管舒张(口服蛋白质负荷)和血管收缩(冷加压试验)反应,并比较了男性和女性之间的这些反应。结果表明,在两种情况下,年轻男性和年轻女性的肾血管舒张和收缩反应均无差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d11c/11381026/f1f760b270f5/f-00034-2024r01.jpg

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