Cargando…

Electrical and freeze-fracture analysis of the effects of ionic cadmium on cell membranes of human proximal tubule cells.

We previously reported that cell cultures of human proximal tubule (HPT) cells respond to ionic cadmium in a manner consistent with well-defined Cd(2+)-elicited responses reported for in vivo systems. However, one unique finding was that the transepithelial electrical resistance and tight junction s...

Descripción completa

Detalles Bibliográficos
Autores principales: Hazen-Martin, D J, Todd, J H, Sens, M A, Khan, W, Bylander, J E, Smyth, B J, Sens, D A
Formato: Texto
Lenguaje:English
Publicado: 1993
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1519902/
https://www.ncbi.nlm.nih.gov/pubmed/8137780
_version_ 1782128750942486528
author Hazen-Martin, D J
Todd, J H
Sens, M A
Khan, W
Bylander, J E
Smyth, B J
Sens, D A
author_facet Hazen-Martin, D J
Todd, J H
Sens, M A
Khan, W
Bylander, J E
Smyth, B J
Sens, D A
author_sort Hazen-Martin, D J
collection PubMed
description We previously reported that cell cultures of human proximal tubule (HPT) cells respond to ionic cadmium in a manner consistent with well-defined Cd(2+)-elicited responses reported for in vivo systems. However, one unique finding was that the transepithelial electrical resistance and tight junction sealing strands were altered as a result of Cd2+ exposure at micromolar concentrations. These alterations are reexamined in detail in the present report to determine whether the Cd(2+)-induced alterations are specific alterations in the tight junction structure or reflect a general alteration in the cell membrane. Exhaustive analysis of tight junction sealing strands demonstrated no significant alterations due to Cd2+ exposure, even at the concentration that elicited a significant reduction in transepithelial resistance. Further analysis of intramembrane particle distribution demonstrated a significant increase in apical intramembrane particles, indicating that Cd2+ exposure altered the characteristics of the apical cell membrane. Overall, the results were consistent with evidence of Cd(2+)-induced alteration in the apical cell membrane of the HPT cell.
format Text
id pubmed-1519902
institution National Center for Biotechnology Information
language English
publishDate 1993
record_format MEDLINE/PubMed
spelling pubmed-15199022006-07-26 Electrical and freeze-fracture analysis of the effects of ionic cadmium on cell membranes of human proximal tubule cells. Hazen-Martin, D J Todd, J H Sens, M A Khan, W Bylander, J E Smyth, B J Sens, D A Environ Health Perspect Research Article We previously reported that cell cultures of human proximal tubule (HPT) cells respond to ionic cadmium in a manner consistent with well-defined Cd(2+)-elicited responses reported for in vivo systems. However, one unique finding was that the transepithelial electrical resistance and tight junction sealing strands were altered as a result of Cd2+ exposure at micromolar concentrations. These alterations are reexamined in detail in the present report to determine whether the Cd(2+)-induced alterations are specific alterations in the tight junction structure or reflect a general alteration in the cell membrane. Exhaustive analysis of tight junction sealing strands demonstrated no significant alterations due to Cd2+ exposure, even at the concentration that elicited a significant reduction in transepithelial resistance. Further analysis of intramembrane particle distribution demonstrated a significant increase in apical intramembrane particles, indicating that Cd2+ exposure altered the characteristics of the apical cell membrane. Overall, the results were consistent with evidence of Cd(2+)-induced alteration in the apical cell membrane of the HPT cell. 1993-11 /pmc/articles/PMC1519902/ /pubmed/8137780 Text en
spellingShingle Research Article
Hazen-Martin, D J
Todd, J H
Sens, M A
Khan, W
Bylander, J E
Smyth, B J
Sens, D A
Electrical and freeze-fracture analysis of the effects of ionic cadmium on cell membranes of human proximal tubule cells.
title Electrical and freeze-fracture analysis of the effects of ionic cadmium on cell membranes of human proximal tubule cells.
title_full Electrical and freeze-fracture analysis of the effects of ionic cadmium on cell membranes of human proximal tubule cells.
title_fullStr Electrical and freeze-fracture analysis of the effects of ionic cadmium on cell membranes of human proximal tubule cells.
title_full_unstemmed Electrical and freeze-fracture analysis of the effects of ionic cadmium on cell membranes of human proximal tubule cells.
title_short Electrical and freeze-fracture analysis of the effects of ionic cadmium on cell membranes of human proximal tubule cells.
title_sort electrical and freeze-fracture analysis of the effects of ionic cadmium on cell membranes of human proximal tubule cells.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1519902/
https://www.ncbi.nlm.nih.gov/pubmed/8137780
work_keys_str_mv AT hazenmartindj electricalandfreezefractureanalysisoftheeffectsofioniccadmiumoncellmembranesofhumanproximaltubulecells
AT toddjh electricalandfreezefractureanalysisoftheeffectsofioniccadmiumoncellmembranesofhumanproximaltubulecells
AT sensma electricalandfreezefractureanalysisoftheeffectsofioniccadmiumoncellmembranesofhumanproximaltubulecells
AT khanw electricalandfreezefractureanalysisoftheeffectsofioniccadmiumoncellmembranesofhumanproximaltubulecells
AT bylanderje electricalandfreezefractureanalysisoftheeffectsofioniccadmiumoncellmembranesofhumanproximaltubulecells
AT smythbj electricalandfreezefractureanalysisoftheeffectsofioniccadmiumoncellmembranesofhumanproximaltubulecells
AT sensda electricalandfreezefractureanalysisoftheeffectsofioniccadmiumoncellmembranesofhumanproximaltubulecells