Cargando…

Enhanced phosphate absorption in intestinal epithelial cell‐specific NHE3 knockout mice

AIMS: The kidneys play a major role in maintaining P(i) homeostasis. Patients in later stages of CKD develop hyperphosphatemia. One novel treatment option is tenapanor, an intestinal‐specific NHE3 inhibitor. To gain mechanistic insight into the role of intestinal NHE3 in P(i) homeostasis, we studied...

Descripción completa

Detalles Bibliográficos
Autores principales: Xue, Jianxiang, Thomas, Linto, Murali, Sathish Kumar, Levi, Moshe, Fenton, Robert A., Dominguez Rieg, Jessica A., Rieg, Timo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9286053/
https://www.ncbi.nlm.nih.gov/pubmed/34978760
http://dx.doi.org/10.1111/apha.13756
_version_ 1784747923037224960
author Xue, Jianxiang
Thomas, Linto
Murali, Sathish Kumar
Levi, Moshe
Fenton, Robert A.
Dominguez Rieg, Jessica A.
Rieg, Timo
author_facet Xue, Jianxiang
Thomas, Linto
Murali, Sathish Kumar
Levi, Moshe
Fenton, Robert A.
Dominguez Rieg, Jessica A.
Rieg, Timo
author_sort Xue, Jianxiang
collection PubMed
description AIMS: The kidneys play a major role in maintaining P(i) homeostasis. Patients in later stages of CKD develop hyperphosphatemia. One novel treatment option is tenapanor, an intestinal‐specific NHE3 inhibitor. To gain mechanistic insight into the role of intestinal NHE3 in P(i) homeostasis, we studied tamoxifen‐inducible intestinal epithelial cell‐specific NHE3 knockout (NHE3(IEC‐KO)) mice. METHODS: Mice underwent dietary P(i) challenges, and hormones as well as urinary/plasma P(i) were determined. Intestinal (33)P uptake studies were conducted in vivo to compare the effects of tenapanor and NHE3(IEC‐KO). Ex vivo P(i) transport was measured in everted gut sacs and brush border membrane vesicles. Intestinal and renal protein expression of P(i) transporters were determined. RESULTS: On the control diet, NHE3(IEC‐KO) mice had similar P(i) homeostasis, but a ~25% reduction in FGF23 compared with control mice. Everted gut sacs and brush border membrane vesicles showed enhanced P(i) uptake associated with increased Npt2b expression in NHE3(IEC‐KO) mice. Acute oral P(i) loading resulted in higher plasma P(i) in NHE3(IEC‐KO) mice. Tenapanor inhibited intestinal (33)P uptake acutely but then led to hyper‐absorption at later time points compared to vehicle. In response to high dietary P(i), plasma P(i) and FGF23 increased to higher levels in NHE3(IEC‐KO) mice which was associated with greater Npt2b expression. Reduced renal Npt2c and a trend for reduced Npt2a expression were unable to correct for higher plasma P(i). CONCLUSION: Intestinal NHE3 has a significant contribution to P(i) homeostasis. In contrast to effects described for tenapanor on P(i) homeostasis, NHE3(IEC‐KO) mice show enhanced, rather than reduced, intestinal P(i) uptake.
format Online
Article
Text
id pubmed-9286053
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-92860532022-07-19 Enhanced phosphate absorption in intestinal epithelial cell‐specific NHE3 knockout mice Xue, Jianxiang Thomas, Linto Murali, Sathish Kumar Levi, Moshe Fenton, Robert A. Dominguez Rieg, Jessica A. Rieg, Timo Acta Physiol (Oxf) Gastrointestinal Physiology AIMS: The kidneys play a major role in maintaining P(i) homeostasis. Patients in later stages of CKD develop hyperphosphatemia. One novel treatment option is tenapanor, an intestinal‐specific NHE3 inhibitor. To gain mechanistic insight into the role of intestinal NHE3 in P(i) homeostasis, we studied tamoxifen‐inducible intestinal epithelial cell‐specific NHE3 knockout (NHE3(IEC‐KO)) mice. METHODS: Mice underwent dietary P(i) challenges, and hormones as well as urinary/plasma P(i) were determined. Intestinal (33)P uptake studies were conducted in vivo to compare the effects of tenapanor and NHE3(IEC‐KO). Ex vivo P(i) transport was measured in everted gut sacs and brush border membrane vesicles. Intestinal and renal protein expression of P(i) transporters were determined. RESULTS: On the control diet, NHE3(IEC‐KO) mice had similar P(i) homeostasis, but a ~25% reduction in FGF23 compared with control mice. Everted gut sacs and brush border membrane vesicles showed enhanced P(i) uptake associated with increased Npt2b expression in NHE3(IEC‐KO) mice. Acute oral P(i) loading resulted in higher plasma P(i) in NHE3(IEC‐KO) mice. Tenapanor inhibited intestinal (33)P uptake acutely but then led to hyper‐absorption at later time points compared to vehicle. In response to high dietary P(i), plasma P(i) and FGF23 increased to higher levels in NHE3(IEC‐KO) mice which was associated with greater Npt2b expression. Reduced renal Npt2c and a trend for reduced Npt2a expression were unable to correct for higher plasma P(i). CONCLUSION: Intestinal NHE3 has a significant contribution to P(i) homeostasis. In contrast to effects described for tenapanor on P(i) homeostasis, NHE3(IEC‐KO) mice show enhanced, rather than reduced, intestinal P(i) uptake. John Wiley and Sons Inc. 2022-01-11 2022-02 /pmc/articles/PMC9286053/ /pubmed/34978760 http://dx.doi.org/10.1111/apha.13756 Text en © 2022 The Authors. Acta Physiologica published by John Wiley & Sons Ltd on behalf of Scandinavian Physiological Society https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Gastrointestinal Physiology
Xue, Jianxiang
Thomas, Linto
Murali, Sathish Kumar
Levi, Moshe
Fenton, Robert A.
Dominguez Rieg, Jessica A.
Rieg, Timo
Enhanced phosphate absorption in intestinal epithelial cell‐specific NHE3 knockout mice
title Enhanced phosphate absorption in intestinal epithelial cell‐specific NHE3 knockout mice
title_full Enhanced phosphate absorption in intestinal epithelial cell‐specific NHE3 knockout mice
title_fullStr Enhanced phosphate absorption in intestinal epithelial cell‐specific NHE3 knockout mice
title_full_unstemmed Enhanced phosphate absorption in intestinal epithelial cell‐specific NHE3 knockout mice
title_short Enhanced phosphate absorption in intestinal epithelial cell‐specific NHE3 knockout mice
title_sort enhanced phosphate absorption in intestinal epithelial cell‐specific nhe3 knockout mice
topic Gastrointestinal Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9286053/
https://www.ncbi.nlm.nih.gov/pubmed/34978760
http://dx.doi.org/10.1111/apha.13756
work_keys_str_mv AT xuejianxiang enhancedphosphateabsorptioninintestinalepithelialcellspecificnhe3knockoutmice
AT thomaslinto enhancedphosphateabsorptioninintestinalepithelialcellspecificnhe3knockoutmice
AT muralisathishkumar enhancedphosphateabsorptioninintestinalepithelialcellspecificnhe3knockoutmice
AT levimoshe enhancedphosphateabsorptioninintestinalepithelialcellspecificnhe3knockoutmice
AT fentonroberta enhancedphosphateabsorptioninintestinalepithelialcellspecificnhe3knockoutmice
AT dominguezriegjessicaa enhancedphosphateabsorptioninintestinalepithelialcellspecificnhe3knockoutmice
AT riegtimo enhancedphosphateabsorptioninintestinalepithelialcellspecificnhe3knockoutmice