Study2024

Hypohydration attenuates increases in creatinine clearance to oral protein loading and the renal hemodynamic response to exercise pressor reflex

Chapman CL, Holt SM, O'Connell CT, Brazelton SC, Medved HN, Howells WAB, Reed EL, Needham KW, Halliwill JR, Minson CT

Journal of applied physiology (Bethesda, Md. : 1985) · 8 citations

How it was studied

Design
Controlled clinical trial (classified by our AI screen)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Independent funding
University or hospital
University of Oregon
Government
National Institutes of Health
Government
National Heart, Lung, and Blood Institute
Government
Eunice Kennedy Shriver National Institute of Child Health and Human Development
Government
HHS | NIH | National Heart, Lung, and Blood Institute
Government
NHLBI NIH HHS
Government
NICHD NIH HHS
Government
HHS | National Institutes of Health
Grants
National Heart, Lung, and Blood Institute (R01 HL144128); National Heart, Lung, and Blood Institute (F32 HL164021); Eunice Kennedy Shriver National Institute of Child Health and Human Development (R25HD070817); National Institutes of Health (R25HD070817)

Based on 8 listed funder(s).

Publication

Published
2024-01-11 · J Appl Physiol (1985) · vol. 136 · issue 3 · pp. 492–508
Publisher
American Physiological Society
Cited
7 citations · more than 82% of similar papers · 1.6× the field average
References
86 works
Access
Open access (repository copy)
Research areas
Thermoregulation and physiological responses · Heart Rate Variability and Autonomic Control · High Altitude and Hypoxia
Keywords
Reflex, Medicine, Creatinine, Hemodynamics, Endocrinology, Internal medicine, Renal function, Vascular resistance, Urine, Haemodynamic response, Blood pressure, Heart rate
MeSH
humans, water, creatinine, reflex, hand strength, female, male, hemodynamics, young adult

10 authors

From US

  • Christopher L. ChapmanUniversity of Oregon
  • Sadie M. HoltUniversity of Oregon
  • Cameron T. O’ConnellUniversity of Oregon
  • Shaun C. BrazeltonUniversity of Oregon
  • Hannah N. MedvedUniversity of Oregon
  • William A. B. HowellsUniversity of Oregon

Abstract

Insufficient hydration is prevalent among free living adults. This study investigated whether hypohydration alters 1) renal functional reserve, 2) the renal hemodynamic response to the exercise pressor reflex, and 3) urine-concentrating ability during oral protein loading. In a block-randomized crossover design, 22 healthy young adults (11 females and 11 males) underwent 24-h fluid deprivation (Hypohydrated) or 24-h normal fluid consumption (Euhydrated). Renal functional reserve was assessed by oral protein loading. Renal hemodynamics during the exercise pressor reflex were assessed via Doppler ultrasound. Urine-concentrating ability was assessed via free water clearance. Creatinine clearance did not differ at 150 min postprotein consumption between conditions [Hypohydrated: 246 mL/min, 95% confidence interval (CI): 212-280; Euhydrated: 231 mL/min, 95% CI: 196-265, P = 0.2691] despite an elevated baseline in Hypohydrated (261 mL/min, 95% CI: 218-303 vs. 143 mL/min, 95% CI: 118-168, P P = 0.9290), but increases were attenuated in Hypohydrated versus Euhydrated at the end of handgrip (0.5 mmHg/cm/s, 95% CI: 0.4-0.7 vs. 0.8 mmHg/cm/s 95% CI: 0.6-1.1, P = 0.0203) and end occlusion (0.2 mmHg/cm/s, 95% CI: 0.1-0.3 vs. 0.4 mmHg/cm/s 95% CI: 0.3-0.6, P = 0.0127). There were no differences between conditions in free water clearance at 150 min postprotein (P = 0.3489). These data indicate that hypohydration 1) engages renal functional reserve and attenuates the ability to further increase creatinine clearance, 2) attenuates increases in renal artery vascular resistance to the exercise pressor reflex, and 3) does not further enhance nor impair urine-concentrating ability during oral protein loading.NEW & NOTEWORTHY Insufficient hydration is prevalent among free living adults. This study found that hypohydration induced by 24-h fluid deprivation engaged renal functional reserve and that oral protein loading did not further increase creatinine clearance. Hypohydration also attenuated the ability to increase renal vascular resistance during the exercise pressor reflex. In addition, hypohydration neither enhanced nor impaired urine-concentrating ability during oral protein loading. These data support the importance of mitigating hypohydration in free living adults.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

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