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Pharmacological characterization of the calcium influx pathways involved in nitric oxide production by endothelial cells

OBJECTIVE: To characterize the calcium influx pathways implicated in the sustained elevation of endothelial intracellular calcium concentration, required for the synthesis and release of relaxing factors. METHODS: We evaluated the effect of the newly synthesized pyrazole derivatives, described as se...

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Autores principales: da Silva, Janyerson Dannys Pereira, Ballejo, Gustavo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Instituto Israelita de Ensino e Pesquisa Albert Einstein 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6550436/
https://www.ncbi.nlm.nih.gov/pubmed/31166411
http://dx.doi.org/10.31744/einstein_journal/2019AO4600
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author da Silva, Janyerson Dannys Pereira
Ballejo, Gustavo
author_facet da Silva, Janyerson Dannys Pereira
Ballejo, Gustavo
author_sort da Silva, Janyerson Dannys Pereira
collection PubMed
description OBJECTIVE: To characterize the calcium influx pathways implicated in the sustained elevation of endothelial intracellular calcium concentration, required for the synthesis and release of relaxing factors. METHODS: We evaluated the effect of the newly synthesized pyrazole derivatives, described as selective inhibitors for ORAI (BTP2/Pyr2 and Pyr6) and TRPC3 (Pyr3 and Pyr10) channels, upon endothelium- and extracellular calcium-dependent relaxations stimulated by acetylcholine and thapsigargin, in pre-constricted rat thoracic aortic rings. RESULTS: Acetylcholine and thapsigargin responses were completely reverted by Pyr2 and Pyr6 (1 to 3μM). Pyr3 (0.3 to 3μM) caused a rapid reversal of acetylcholine (6.2±0.08mg.s(−1)) and thapsigargin (3.9±0.25mg.s(−1)) relaxations, whereas the more selective TRPC3 blocker Pyr10 (1 to 3μM) had no effect. The recently described TRPC4/5 selective blocker, ML204 (1 to 3μM), reverted completely acetylcholine relaxations, but minimally thapsigargin induced ones. Noteworthy, relaxations elicited by GSK1016790A (TRPV4 agonist) were unaffected by pyrazole compounds or ML204. After Pyr2 and Pyr6 pre-incubation, acetylcholine and thapsigargin evoked transient relaxations similar in magnitude and kinetics to those observed in the absence of extracellular calcium. Sodium nitroprusside relaxations as well as phenylephrine-induced contractions (denuded aorta) were not affected by any of pyrazole compounds (1 to 3μM). CONCLUSION: These observations revealed a previously unrecognized complexity in rat aorta endothelial calcium influx pathways, which result in production and release of nitric oxide. Pharmacologically distinguishable pathways mediate acetylcholine (ORAI/TRPC other than TRPC3/TRPC4 calcium-permeable channels) and thapsigargin (TRPC4 not required) induced calcium influx.
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spelling pubmed-65504362019-06-17 Pharmacological characterization of the calcium influx pathways involved in nitric oxide production by endothelial cells da Silva, Janyerson Dannys Pereira Ballejo, Gustavo Einstein (Sao Paulo) Original Article OBJECTIVE: To characterize the calcium influx pathways implicated in the sustained elevation of endothelial intracellular calcium concentration, required for the synthesis and release of relaxing factors. METHODS: We evaluated the effect of the newly synthesized pyrazole derivatives, described as selective inhibitors for ORAI (BTP2/Pyr2 and Pyr6) and TRPC3 (Pyr3 and Pyr10) channels, upon endothelium- and extracellular calcium-dependent relaxations stimulated by acetylcholine and thapsigargin, in pre-constricted rat thoracic aortic rings. RESULTS: Acetylcholine and thapsigargin responses were completely reverted by Pyr2 and Pyr6 (1 to 3μM). Pyr3 (0.3 to 3μM) caused a rapid reversal of acetylcholine (6.2±0.08mg.s(−1)) and thapsigargin (3.9±0.25mg.s(−1)) relaxations, whereas the more selective TRPC3 blocker Pyr10 (1 to 3μM) had no effect. The recently described TRPC4/5 selective blocker, ML204 (1 to 3μM), reverted completely acetylcholine relaxations, but minimally thapsigargin induced ones. Noteworthy, relaxations elicited by GSK1016790A (TRPV4 agonist) were unaffected by pyrazole compounds or ML204. After Pyr2 and Pyr6 pre-incubation, acetylcholine and thapsigargin evoked transient relaxations similar in magnitude and kinetics to those observed in the absence of extracellular calcium. Sodium nitroprusside relaxations as well as phenylephrine-induced contractions (denuded aorta) were not affected by any of pyrazole compounds (1 to 3μM). CONCLUSION: These observations revealed a previously unrecognized complexity in rat aorta endothelial calcium influx pathways, which result in production and release of nitric oxide. Pharmacologically distinguishable pathways mediate acetylcholine (ORAI/TRPC other than TRPC3/TRPC4 calcium-permeable channels) and thapsigargin (TRPC4 not required) induced calcium influx. Instituto Israelita de Ensino e Pesquisa Albert Einstein 2019-05-30 /pmc/articles/PMC6550436/ /pubmed/31166411 http://dx.doi.org/10.31744/einstein_journal/2019AO4600 Text en https://creativecommons.org/licenses/cc-by/4.0/ This content is licensed under a Creative Commons Attribution 4.0 International License.
spellingShingle Original Article
da Silva, Janyerson Dannys Pereira
Ballejo, Gustavo
Pharmacological characterization of the calcium influx pathways involved in nitric oxide production by endothelial cells
title Pharmacological characterization of the calcium influx pathways involved in nitric oxide production by endothelial cells
title_full Pharmacological characterization of the calcium influx pathways involved in nitric oxide production by endothelial cells
title_fullStr Pharmacological characterization of the calcium influx pathways involved in nitric oxide production by endothelial cells
title_full_unstemmed Pharmacological characterization of the calcium influx pathways involved in nitric oxide production by endothelial cells
title_short Pharmacological characterization of the calcium influx pathways involved in nitric oxide production by endothelial cells
title_sort pharmacological characterization of the calcium influx pathways involved in nitric oxide production by endothelial cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6550436/
https://www.ncbi.nlm.nih.gov/pubmed/31166411
http://dx.doi.org/10.31744/einstein_journal/2019AO4600
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