Effects of Baicalin on Diabetic Cardiac Autonomic Neuropathy Mediated by the P2Y12 Receptor in Rat Stellate Ganglia

Background/Aims: Chronic diabetic hyperglycemia can damage various of organ systems and cause serious complications. Although diabetic cardiac autonomic neuropathy (DCAN) is the primary cause of death in diabetic patients, its pathogenesis remains to be fully elucidated. Baicalin is a flavonoid extr...

Full description

Bibliographic Details
Main Authors: Xuan Sheng, Jiayue Wang, Jingjing Guo, Yurong Xu, Huaide Jiang, Chaoran Zheng, Zixi Xu, Yuanruohan Zhang, Hongyu Che, Shangdong Liang, Gaochun Zhu, Guilin Li
Format: Article
Language:English
Published: Cell Physiol Biochem Press GmbH & Co KG 2018-04-01
Series:Cellular Physiology and Biochemistry
Subjects:
Online Access:https://www.karger.com/Article/FullText/488828
id doaj-356ee8909c4a40dd8cfce84fd77fcdfe
record_format Article
spelling doaj-356ee8909c4a40dd8cfce84fd77fcdfe2020-11-25T01:22:57ZengCell Physiol Biochem Press GmbH & Co KGCellular Physiology and Biochemistry1015-89871421-97782018-04-0146398699810.1159/000488828488828Effects of Baicalin on Diabetic Cardiac Autonomic Neuropathy Mediated by the P2Y12 Receptor in Rat Stellate GangliaXuan ShengJiayue WangJingjing GuoYurong XuHuaide JiangChaoran ZhengZixi XuYuanruohan ZhangHongyu CheShangdong LiangGaochun ZhuGuilin LiBackground/Aims: Chronic diabetic hyperglycemia can damage various of organ systems and cause serious complications. Although diabetic cardiac autonomic neuropathy (DCAN) is the primary cause of death in diabetic patients, its pathogenesis remains to be fully elucidated. Baicalin is a flavonoid extracted from Scutellaria baicalensis root and has antibacterial, diuretic, anti-inflammatory, anti- metamorphotic, and antispasmodic effects. Our study explored the effects of baicalin on enhancing sympathoexcitatory response induced by DCAN via the P2Y12 receptor. Methods: A type 2 diabetes mellitus rat model was induced by a combination of diet and streptozotocin. Serum epinephrine was measured by enzyme-linked immunosorbent assay. Blood pressure and heart rate were measured using the indirect tail-cuff method. Heart rate variability was analyzed using the frequency-domain of electrocardiogram recordings. The expression levels of P2Y12, interleukin-1beta (IL-1β), tumor necrosis factor alpha (TNF-α), and connexin 43 (Cx43) were determined by quantitative real-time reverse transcription-polymerase chain reaction and western blotting. The interaction between baicalin and P2Y12 determined using by molecular docking. Results: Baicalin alleviated elevated blood pressure and heart rate, improved heart rate variability, and decreased the elevated expression levels of P2Y12, IL-1β, TNF-α, and Cx43 in the stellate ganglia of diabetic rats. Baicalin also reduced the elevated concentration of serum epinephrine and the phosphorylation of p38 mitogen-activated protein kinase in diabetic rats. Conclusion: Baicalin decreases sympathetic activity by inhibiting the P2Y12 receptor in stellate ganglia satellite glial cells to maintain the balance between sympathetic and parasympathetic nerves and relieves DCAN in the rat.https://www.karger.com/Article/FullText/488828Diabetic cardiac autonomic neuropathyBaicalinP2Y12 receptorStellate gangliaSatellite glial cells
collection DOAJ
language English
format Article
sources DOAJ
author Xuan Sheng
Jiayue Wang
Jingjing Guo
Yurong Xu
Huaide Jiang
Chaoran Zheng
Zixi Xu
Yuanruohan Zhang
Hongyu Che
Shangdong Liang
Gaochun Zhu
Guilin Li
spellingShingle Xuan Sheng
Jiayue Wang
Jingjing Guo
Yurong Xu
Huaide Jiang
Chaoran Zheng
Zixi Xu
Yuanruohan Zhang
Hongyu Che
Shangdong Liang
Gaochun Zhu
Guilin Li
Effects of Baicalin on Diabetic Cardiac Autonomic Neuropathy Mediated by the P2Y12 Receptor in Rat Stellate Ganglia
Cellular Physiology and Biochemistry
Diabetic cardiac autonomic neuropathy
Baicalin
P2Y12 receptor
Stellate ganglia
Satellite glial cells
author_facet Xuan Sheng
Jiayue Wang
Jingjing Guo
Yurong Xu
Huaide Jiang
Chaoran Zheng
Zixi Xu
Yuanruohan Zhang
Hongyu Che
Shangdong Liang
Gaochun Zhu
Guilin Li
author_sort Xuan Sheng
title Effects of Baicalin on Diabetic Cardiac Autonomic Neuropathy Mediated by the P2Y12 Receptor in Rat Stellate Ganglia
title_short Effects of Baicalin on Diabetic Cardiac Autonomic Neuropathy Mediated by the P2Y12 Receptor in Rat Stellate Ganglia
title_full Effects of Baicalin on Diabetic Cardiac Autonomic Neuropathy Mediated by the P2Y12 Receptor in Rat Stellate Ganglia
title_fullStr Effects of Baicalin on Diabetic Cardiac Autonomic Neuropathy Mediated by the P2Y12 Receptor in Rat Stellate Ganglia
title_full_unstemmed Effects of Baicalin on Diabetic Cardiac Autonomic Neuropathy Mediated by the P2Y12 Receptor in Rat Stellate Ganglia
title_sort effects of baicalin on diabetic cardiac autonomic neuropathy mediated by the p2y12 receptor in rat stellate ganglia
publisher Cell Physiol Biochem Press GmbH & Co KG
series Cellular Physiology and Biochemistry
issn 1015-8987
1421-9778
publishDate 2018-04-01
description Background/Aims: Chronic diabetic hyperglycemia can damage various of organ systems and cause serious complications. Although diabetic cardiac autonomic neuropathy (DCAN) is the primary cause of death in diabetic patients, its pathogenesis remains to be fully elucidated. Baicalin is a flavonoid extracted from Scutellaria baicalensis root and has antibacterial, diuretic, anti-inflammatory, anti- metamorphotic, and antispasmodic effects. Our study explored the effects of baicalin on enhancing sympathoexcitatory response induced by DCAN via the P2Y12 receptor. Methods: A type 2 diabetes mellitus rat model was induced by a combination of diet and streptozotocin. Serum epinephrine was measured by enzyme-linked immunosorbent assay. Blood pressure and heart rate were measured using the indirect tail-cuff method. Heart rate variability was analyzed using the frequency-domain of electrocardiogram recordings. The expression levels of P2Y12, interleukin-1beta (IL-1β), tumor necrosis factor alpha (TNF-α), and connexin 43 (Cx43) were determined by quantitative real-time reverse transcription-polymerase chain reaction and western blotting. The interaction between baicalin and P2Y12 determined using by molecular docking. Results: Baicalin alleviated elevated blood pressure and heart rate, improved heart rate variability, and decreased the elevated expression levels of P2Y12, IL-1β, TNF-α, and Cx43 in the stellate ganglia of diabetic rats. Baicalin also reduced the elevated concentration of serum epinephrine and the phosphorylation of p38 mitogen-activated protein kinase in diabetic rats. Conclusion: Baicalin decreases sympathetic activity by inhibiting the P2Y12 receptor in stellate ganglia satellite glial cells to maintain the balance between sympathetic and parasympathetic nerves and relieves DCAN in the rat.
topic Diabetic cardiac autonomic neuropathy
Baicalin
P2Y12 receptor
Stellate ganglia
Satellite glial cells
url https://www.karger.com/Article/FullText/488828
work_keys_str_mv AT xuansheng effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
AT jiayuewang effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
AT jingjingguo effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
AT yurongxu effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
AT huaidejiang effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
AT chaoranzheng effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
AT zixixu effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
AT yuanruohanzhang effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
AT hongyuche effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
AT shangdongliang effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
AT gaochunzhu effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
AT guilinli effectsofbaicalinondiabeticcardiacautonomicneuropathymediatedbythep2y12receptorinratstellateganglia
_version_ 1725124508328656896