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September 28, 2025AJP Renal Physiology0 citationsOpen Access

Sex differences in renal acid-base regulation

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JDJessica A. DominguezLOLene OdgaardJXJianxiang Xue

Key Points

  • Significant decreases in urine pH and blood bicarbonate were observed in both sexes after acid challenge.
  • Blood and urine analyses revealed that male mice had a greater increase in pH and bicarbonate after base challenge compared to females.
  • Seven out of twelve tested transport proteins showed significant sexual dimorphism in response to acid-base challenges.
  • The protein NKCC2 emerged as a key factor in the differential response to acid-base regulation.

Abstract

Transport across cells of the renal tubule differs between females and males, possibly as a consequence of varying abundance of transport proteins along the nephron. We hypothesized that sex-specific differences in the physiological responses and in transport protein abundances exist in the context of acid-base challenges. We used female and male C57Bl/6J mice and challenged them with acid (NH 4 Cl) or base (NaHCO 3 ) in their drinking water for 8 days. Blood and urine samples were collected at baseline and at the end of the experimental period before kidneys were harvested and protein abundances determined. In response to NH 4 Cl challenge, the significant decreases in urine pH, blood HCO 3 - , and base excess were similar in both sexes despite a smaller intake of NH 4 Cl in male compared to female mice. In response to NaHCO 3 challenge, urine pH significantly increased in both sexes; however, blood pH, HCO 3 - , and base excess were increased significantly and to a greater extent in male compared to female mice. Two-way analysis of variance demonstrated that out of the 12 tested proteins, 7 were significantly affected by sex, 7 were significantly affected by treatment, and the interaction of sex and treatment was significant for NKCC2. In summary, our study demonstrates (i) sex differences in protein abundance, (ii) proteins are affected differentially in response to acid-base challenges and, (iii) NKCC2 is a new and potentially important player in acid-base regulation.

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Cite This Study

Dominguez et al. (2025) studied this question.

synapsesocial.com/papers/68d90bc941e1c178a14f72e7https://doi.org/10.1152/ajprenal.00174.2024
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