Literature DB >> 32936680

Effects of sex and menstrual cycle on volume-regulatory responses to 24-h fluid restriction.

Gabrielle E W Giersch1,2, Abigail T Colburn3, Margaret C Morrissey2, Cody R Butler2, Michaela L Pruchnicki2, Stavros A Kavouras3, Nisha Charkoudian1, Douglas J Casa2.   

Abstract

Reproductive hormones have significant nonreproductive physiological effects, including altering fluid regulation. Our purpose was to explore the impact of sex and menstrual cycle (MC) phase on volume-regulatory responses to 24-h fluid restriction (24-h FR). Participants (men: n = 12, 20 ± 2 yr; women: n = 10, 20 ± 1 yr) were assigned two randomized and counterbalanced fluid prescriptions [Euhy: euhydrated, urine specific gravity (USG) < 1.020; Dehy: 24-h FR, USG > 1.020]. Men completed both (MEuhy, MDehy), while women completed both in the late-follicular (days 10-13; FDehy, FEuhy) and midluteal (days 18-22; LDehy, LEuhy) phases. We measured body mass, plasma and urine osmolality (Posm, Uosm), urine specific gravity (USG), urine color (Ucol), and serum copeptin; 24-h FR yielded mild dehydration without influence of sex or MC (P > 0.05). Copeptin increased in men following Dehy (pre: 8.2 ± 5.2, post: 15.8 ± 12.6, P = 0.04) but not in women (FDehy pre: 4.3 ± 1.6, post: 10.5 ± 6.9, P = 0.06; LDehy pre: 5.6 ± 3.5, post: 10.4 ± 6.2, P = 0.16). In FDehy, Posm increased following FR (pre: 288 ± 2, post: 292 ± 1, P = 0.03) but not in men (pre: 292 ± 3, post: 293 ± 2, P = 0.46). No MC differences were observed between body mass loss, Posm, Uosm, USG, and copeptin (P > 0.05). These results suggest that volume-regulatory responses to 24-h FR were present in men but not in women, without apparent effects of the menstrual cycle.

Entities:  

Keywords:  body mass loss; copeptin; estrogen; sex differences

Year:  2020        PMID: 32936680     DOI: 10.1152/ajpregu.00173.2020

Source DB:  PubMed          Journal:  Am J Physiol Regul Integr Comp Physiol        ISSN: 0363-6119            Impact factor:   3.619


  3 in total

1.  Furosemide-induced systemic dehydration alters the proteome of rabbit vocal folds.

Authors:  Naila Cannes do Nascimento; Andrea Pires Dos Santos; Rodrigo Mohallem; Uma K Aryal; Jun Xie; Abigail Cox; M Preeti Sivasankar
Journal:  J Proteomics       Date:  2021-11-23       Impact factor: 4.044

2.  Sex difference in initial thermoregulatory response to dehydrated exercise in the heat.

Authors:  Gabrielle E W Giersch; Margaret C Morrissey; Cody R Butler; Abigail T Colburn; Zachariah S Demarais; Stavros A Kavouras; Ollie Jay; Nisha Charkoudian; Douglas J Casa
Journal:  Physiol Rep       Date:  2021-07

3.  Estrogen to Progesterone Ratio and Fluid Regulatory Responses to Varying Degrees and Methods of Dehydration.

Authors:  Gabrielle E W Giersch; Nisha Charkoudian; Margaret C Morrissey; Cody R Butler; Abigail T Colburn; Aaron R Caldwell; Stavros A Kavouras; Douglas J Casa
Journal:  Front Sports Act Living       Date:  2021-10-14
  3 in total

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