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Sodium Coupled Bicarbonate Influx Regulates Intracellular and Apical pH in Cultured Rat Caput Epididymal Epithelium

BACKGROUND: The epithelium lining the epididymis provides an optimal acidic fluid microenvironment in the epididymal tract that enable spermatozoa to complete the maturation process. The present study aims to investigate the functional role of Na(+)/HCO(3) (−) cotransporter in the pH regulation in r...

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Autores principales: Zuo, Wu-Lin, Li, Sheng, Huang, Jie-Hong, Yang, Deng-Liang, Zhang, Geng, Chen, Si-Liang, Ruan, Ye-Chun, Ye, Ke-Nan, Cheng, Christopher H. K., Zhou, Wen-Liang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3159570/
https://www.ncbi.nlm.nih.gov/pubmed/21887217
http://dx.doi.org/10.1371/journal.pone.0022283
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author Zuo, Wu-Lin
Li, Sheng
Huang, Jie-Hong
Yang, Deng-Liang
Zhang, Geng
Chen, Si-Liang
Ruan, Ye-Chun
Ye, Ke-Nan
Cheng, Christopher H. K.
Zhou, Wen-Liang
author_facet Zuo, Wu-Lin
Li, Sheng
Huang, Jie-Hong
Yang, Deng-Liang
Zhang, Geng
Chen, Si-Liang
Ruan, Ye-Chun
Ye, Ke-Nan
Cheng, Christopher H. K.
Zhou, Wen-Liang
author_sort Zuo, Wu-Lin
collection PubMed
description BACKGROUND: The epithelium lining the epididymis provides an optimal acidic fluid microenvironment in the epididymal tract that enable spermatozoa to complete the maturation process. The present study aims to investigate the functional role of Na(+)/HCO(3) (−) cotransporter in the pH regulation in rat epididymis. METHOD/PRINCIPAL FINDINGS: Immunofluorescence staining of pan cytokeratin in the primary culture of rat caput epididymal epithelium showed that the system was a suitable model for investigating the function of epididymal epithelium. Intracellular and apical pH were measured using the fluorescent pH sensitive probe carboxy-seminaphthorhodafluor-4F acetoxymethyl ester (SNARF-4F) and sparklet pH electrode respectively to explore the functional role of rat epididymal epithelium. In the HEPES buffered Krebs-Henseleit(KH) solution, the intracellular pH (pHi) recovery from NH(4)Cl induced acidification in the cultured caput epididymal epithelium was completely inhibited by amiloride, the inhibitor of Na(+)/H(+) exchanger (NHE). Immediately changing of the KH solution from HEPES buffered to HCO(3) (−) buffered would cause another pHi recovery. The pHi recovery in HCO(3) (−) buffered KH solution was inhibited by 4, 4diisothiocyanatostilbene-2, 2-disulfonic acid (DIDS), the inhibitor of HCO(3) (−) transporter or by removal of extracellular Na(+). The extracellular pH measurement showed that the apical pH would increase when adding DIDS to the apical side of epididymal epithelial monolayer, however adding DIDS to the basolateral side had no effect on apical pH. CONCLUSIONS: The present study shows that sodium coupled bicarbonate influx regulates intracellular and apical pH in cultured caput epididymal epithelium.
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spelling pubmed-31595702011-09-01 Sodium Coupled Bicarbonate Influx Regulates Intracellular and Apical pH in Cultured Rat Caput Epididymal Epithelium Zuo, Wu-Lin Li, Sheng Huang, Jie-Hong Yang, Deng-Liang Zhang, Geng Chen, Si-Liang Ruan, Ye-Chun Ye, Ke-Nan Cheng, Christopher H. K. Zhou, Wen-Liang PLoS One Research Article BACKGROUND: The epithelium lining the epididymis provides an optimal acidic fluid microenvironment in the epididymal tract that enable spermatozoa to complete the maturation process. The present study aims to investigate the functional role of Na(+)/HCO(3) (−) cotransporter in the pH regulation in rat epididymis. METHOD/PRINCIPAL FINDINGS: Immunofluorescence staining of pan cytokeratin in the primary culture of rat caput epididymal epithelium showed that the system was a suitable model for investigating the function of epididymal epithelium. Intracellular and apical pH were measured using the fluorescent pH sensitive probe carboxy-seminaphthorhodafluor-4F acetoxymethyl ester (SNARF-4F) and sparklet pH electrode respectively to explore the functional role of rat epididymal epithelium. In the HEPES buffered Krebs-Henseleit(KH) solution, the intracellular pH (pHi) recovery from NH(4)Cl induced acidification in the cultured caput epididymal epithelium was completely inhibited by amiloride, the inhibitor of Na(+)/H(+) exchanger (NHE). Immediately changing of the KH solution from HEPES buffered to HCO(3) (−) buffered would cause another pHi recovery. The pHi recovery in HCO(3) (−) buffered KH solution was inhibited by 4, 4diisothiocyanatostilbene-2, 2-disulfonic acid (DIDS), the inhibitor of HCO(3) (−) transporter or by removal of extracellular Na(+). The extracellular pH measurement showed that the apical pH would increase when adding DIDS to the apical side of epididymal epithelial monolayer, however adding DIDS to the basolateral side had no effect on apical pH. CONCLUSIONS: The present study shows that sodium coupled bicarbonate influx regulates intracellular and apical pH in cultured caput epididymal epithelium. Public Library of Science 2011-08-22 /pmc/articles/PMC3159570/ /pubmed/21887217 http://dx.doi.org/10.1371/journal.pone.0022283 Text en Zuo et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zuo, Wu-Lin
Li, Sheng
Huang, Jie-Hong
Yang, Deng-Liang
Zhang, Geng
Chen, Si-Liang
Ruan, Ye-Chun
Ye, Ke-Nan
Cheng, Christopher H. K.
Zhou, Wen-Liang
Sodium Coupled Bicarbonate Influx Regulates Intracellular and Apical pH in Cultured Rat Caput Epididymal Epithelium
title Sodium Coupled Bicarbonate Influx Regulates Intracellular and Apical pH in Cultured Rat Caput Epididymal Epithelium
title_full Sodium Coupled Bicarbonate Influx Regulates Intracellular and Apical pH in Cultured Rat Caput Epididymal Epithelium
title_fullStr Sodium Coupled Bicarbonate Influx Regulates Intracellular and Apical pH in Cultured Rat Caput Epididymal Epithelium
title_full_unstemmed Sodium Coupled Bicarbonate Influx Regulates Intracellular and Apical pH in Cultured Rat Caput Epididymal Epithelium
title_short Sodium Coupled Bicarbonate Influx Regulates Intracellular and Apical pH in Cultured Rat Caput Epididymal Epithelium
title_sort sodium coupled bicarbonate influx regulates intracellular and apical ph in cultured rat caput epididymal epithelium
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3159570/
https://www.ncbi.nlm.nih.gov/pubmed/21887217
http://dx.doi.org/10.1371/journal.pone.0022283
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