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Bradykinin‐mediated estrogen‐dependent depressor response by direct activation of female‐specific distribution of myelinated Ah‐type baroreceptor neurons in rats

AIM: To understand the direct impact of bradykinin in autonomic control of circulation through baroreflex afferent pathway. METHODS: The mean arterial pressure (MAP) was monitored while bradykinin and its agonists were applied via nodose (NG) microinjection, the expression of bradykinin receptors (B...

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Autores principales: Li, Ke‐Xin, Feng, Yan, Fan, Xiong‐Xiong, Sun, Xun, Li, Ying, Wu, Di, Liu, Li, Cui, Chang‐Peng, Xiong, Xue, Li, Hu‐Die, Zhou, Meng, Ma, Hai‐Lan, Liu, Yang, Zhang, Rong, Li, Bai‐Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8841294/
https://www.ncbi.nlm.nih.gov/pubmed/34964272
http://dx.doi.org/10.1111/cns.13792
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author Li, Ke‐Xin
Feng, Yan
Fan, Xiong‐Xiong
Sun, Xun
Li, Ying
Wu, Di
Liu, Li
Cui, Chang‐Peng
Xiong, Xue
Li, Hu‐Die
Zhou, Meng
Ma, Hai‐Lan
Liu, Yang
Zhang, Rong
Li, Bai‐Yan
author_facet Li, Ke‐Xin
Feng, Yan
Fan, Xiong‐Xiong
Sun, Xun
Li, Ying
Wu, Di
Liu, Li
Cui, Chang‐Peng
Xiong, Xue
Li, Hu‐Die
Zhou, Meng
Ma, Hai‐Lan
Liu, Yang
Zhang, Rong
Li, Bai‐Yan
author_sort Li, Ke‐Xin
collection PubMed
description AIM: To understand the direct impact of bradykinin in autonomic control of circulation through baroreflex afferent pathway. METHODS: The mean arterial pressure (MAP) was monitored while bradykinin and its agonists were applied via nodose (NG) microinjection, the expression of bradykinin receptors (BRs) in the NG (1(st)‐order) and nucleus tractus solitarius (NTS, 2(nd)‐order) were tested in adult male, age‐matched female, and ovariectomized rats under physiological and hypertensive conditions. Additionally, bradykinin‐induced depolarization was also tested in identified baroreceptor and baroreceptive neurons using whole‐cell patch‐clamp technique. RESULTS: Under physiological condition, bradykinin‐induced dose‐ and estrogen‐dependent reductions of MAP with lower estimated EC(50) in females. B(2)R agonist mediated more dramatic MAP reduction with long‐lasting effect compared with B(1)R activation. These functional observations were consistent with the molecular and immunostaining evidences. However, under hypertensive condition, the MAP reduction was significantly less dramatic in N(’)‐Nitro‐L‐Arginine‐methyl ester (L‐NAME) induced secondary and spontaneous hypertension rats in males compared with female rats. Electrophysiological data showed that bradykinin‐elicited concentration‐dependent membrane depolarization with discharges during initial phase in identified myelinated Ah‐types baroreceptor neurons, not myelinated A‐types; while, higher concentration of bradykinin was required for depolarization of unmyelinated C‐types without initial discharges. CONCLUSION: These datasets have demonstrated for the first time that bradykinin mediates direct activation of baroreflex afferent function to trigger estrogen‐dependent depressor response, which is due mainly to the direct activation/neuroexcitation of female‐specific myelinated Ah‐type baroreceptor neurons leading to a sexual dimorphism in parasympathetic domination of blood pressure regulation via activation of B(2)R/B(1)R expression in baroreflex afferent pathway.
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spelling pubmed-88412942022-02-22 Bradykinin‐mediated estrogen‐dependent depressor response by direct activation of female‐specific distribution of myelinated Ah‐type baroreceptor neurons in rats Li, Ke‐Xin Feng, Yan Fan, Xiong‐Xiong Sun, Xun Li, Ying Wu, Di Liu, Li Cui, Chang‐Peng Xiong, Xue Li, Hu‐Die Zhou, Meng Ma, Hai‐Lan Liu, Yang Zhang, Rong Li, Bai‐Yan CNS Neurosci Ther Original Articles AIM: To understand the direct impact of bradykinin in autonomic control of circulation through baroreflex afferent pathway. METHODS: The mean arterial pressure (MAP) was monitored while bradykinin and its agonists were applied via nodose (NG) microinjection, the expression of bradykinin receptors (BRs) in the NG (1(st)‐order) and nucleus tractus solitarius (NTS, 2(nd)‐order) were tested in adult male, age‐matched female, and ovariectomized rats under physiological and hypertensive conditions. Additionally, bradykinin‐induced depolarization was also tested in identified baroreceptor and baroreceptive neurons using whole‐cell patch‐clamp technique. RESULTS: Under physiological condition, bradykinin‐induced dose‐ and estrogen‐dependent reductions of MAP with lower estimated EC(50) in females. B(2)R agonist mediated more dramatic MAP reduction with long‐lasting effect compared with B(1)R activation. These functional observations were consistent with the molecular and immunostaining evidences. However, under hypertensive condition, the MAP reduction was significantly less dramatic in N(’)‐Nitro‐L‐Arginine‐methyl ester (L‐NAME) induced secondary and spontaneous hypertension rats in males compared with female rats. Electrophysiological data showed that bradykinin‐elicited concentration‐dependent membrane depolarization with discharges during initial phase in identified myelinated Ah‐types baroreceptor neurons, not myelinated A‐types; while, higher concentration of bradykinin was required for depolarization of unmyelinated C‐types without initial discharges. CONCLUSION: These datasets have demonstrated for the first time that bradykinin mediates direct activation of baroreflex afferent function to trigger estrogen‐dependent depressor response, which is due mainly to the direct activation/neuroexcitation of female‐specific myelinated Ah‐type baroreceptor neurons leading to a sexual dimorphism in parasympathetic domination of blood pressure regulation via activation of B(2)R/B(1)R expression in baroreflex afferent pathway. John Wiley and Sons Inc. 2021-12-28 /pmc/articles/PMC8841294/ /pubmed/34964272 http://dx.doi.org/10.1111/cns.13792 Text en © 2021 The Authors. CNS Neuroscience & Therapeutics published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Li, Ke‐Xin
Feng, Yan
Fan, Xiong‐Xiong
Sun, Xun
Li, Ying
Wu, Di
Liu, Li
Cui, Chang‐Peng
Xiong, Xue
Li, Hu‐Die
Zhou, Meng
Ma, Hai‐Lan
Liu, Yang
Zhang, Rong
Li, Bai‐Yan
Bradykinin‐mediated estrogen‐dependent depressor response by direct activation of female‐specific distribution of myelinated Ah‐type baroreceptor neurons in rats
title Bradykinin‐mediated estrogen‐dependent depressor response by direct activation of female‐specific distribution of myelinated Ah‐type baroreceptor neurons in rats
title_full Bradykinin‐mediated estrogen‐dependent depressor response by direct activation of female‐specific distribution of myelinated Ah‐type baroreceptor neurons in rats
title_fullStr Bradykinin‐mediated estrogen‐dependent depressor response by direct activation of female‐specific distribution of myelinated Ah‐type baroreceptor neurons in rats
title_full_unstemmed Bradykinin‐mediated estrogen‐dependent depressor response by direct activation of female‐specific distribution of myelinated Ah‐type baroreceptor neurons in rats
title_short Bradykinin‐mediated estrogen‐dependent depressor response by direct activation of female‐specific distribution of myelinated Ah‐type baroreceptor neurons in rats
title_sort bradykinin‐mediated estrogen‐dependent depressor response by direct activation of female‐specific distribution of myelinated ah‐type baroreceptor neurons in rats
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8841294/
https://www.ncbi.nlm.nih.gov/pubmed/34964272
http://dx.doi.org/10.1111/cns.13792
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