1997
DOI: 10.1006/bbrc.1997.9995
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Electrophysiological Responses to Oxytocin and ATP in Monolayers of a Human Sweat Gland Cell Line

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Cited by 17 publications
(9 citation statements)
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“…These results suggested that, similar to the intact sweat gland and other exocrine cells, K + and Cl − effluxes occurred through Ca 2+ ‐activated channels. Calcium‐activated chloride effluxes from the NCL‐SG3 cells were later confirmed as was the presence and functionality of a calcium‐activated chloride channel (CaCC) TMEM16A …”
Section: Immortal Sweat Gland Cell Linementioning
confidence: 90%
“…These results suggested that, similar to the intact sweat gland and other exocrine cells, K + and Cl − effluxes occurred through Ca 2+ ‐activated channels. Calcium‐activated chloride effluxes from the NCL‐SG3 cells were later confirmed as was the presence and functionality of a calcium‐activated chloride channel (CaCC) TMEM16A …”
Section: Immortal Sweat Gland Cell Linementioning
confidence: 90%
“…However, oxytocin elicited electrophysiological responses in a human immortalized sweat gland cell line. The results were implicated in the context that oxytocin stimulates natriuresis in some species 19…”
Section: Principal Adjustments To Hot Arid Conditionsmentioning
confidence: 92%
“…Electrophysiological studies showed that monolayers of the NCL-SG3 cell line respond to ATP with a transient transepithelial potential change with a more pronounced response to apical than basal application (Ring and Mö rk, 1997). Extracellular ATP, but not UTP, via P2Y receptors, caused a decrease in Cl À and K þ in primary cultures of reabsorptive ducts of human sweat glands studied with X-ray microanalysis (Hongpaisan and Roomans, 1998).…”
Section: Sweat Glandsmentioning
confidence: 99%