Tanshinone IIA alleviates the damage of neurocytes by targeting GLUT1 in ischaemia reperfusion model (in vivo and in vitro experiments)

Stroke is partial or complete brain dysfunction combined with acute cerebral circulatory disorders, and it affects millions of individuals around the world each year. A total of 70-80% of patients experience ischaemic stroke caused by disturbances in cerebral circulation, leading to cerebral ischaem...

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Main Authors: Jing Wang, Haibo Tong, Xiangyang Wang, Xinxing Wang, Yang Wang
Format: Article
Language:English
Published: Termedia Publishing House 2020-06-01
Series:Folia Neuropathologica
Subjects:
Online Access:https://www.termedia.pl/Tanshinone-IIA-alleviates-the-damage-of-neurocytes-by-targeting-GLUT1-in-ischaemia-reperfusion-model-in-vivo-and-in-vitro-experiments-,20,41192,1,1.html
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spelling doaj-d5da34b20c1149d2a497a8802bc091922021-10-06T10:22:12ZengTermedia Publishing HouseFolia Neuropathologica1641-46401509-572X2020-06-0158217619310.5114/fn.2020.9698341192Tanshinone IIA alleviates the damage of neurocytes by targeting GLUT1 in ischaemia reperfusion model (in vivo and in vitro experiments)Jing WangHaibo TongXiangyang WangXinxing WangYang WangStroke is partial or complete brain dysfunction combined with acute cerebral circulatory disorders, and it affects millions of individuals around the world each year. A total of 70-80% of patients experience ischaemic stroke caused by disturbances in cerebral circulation, leading to cerebral ischaemia, neuronal apoptosis, and necrosis. Tanshinone IIA is a natural compound extracted from Salvia miltiorrhiza and has been proven to assist in recovery from cerebral ischaemia reperfusion injury. GLUT1 is ubiquitously expressed in all types of tissues in the human body and has important physiological functions due to its glucose uptake ability. This experiment was performed to detect the effect of GLUT1 in promoting the therapeutic effect of tanshinone IIA. Here, we found that tanshinone IIA treatment increased the viability of neurons and promoted the recovery of brain function, and that the concentration of glucose in serum and cultured medium was also increased. We noticed that these effects might be mediated by an increased glucose uptake ability. In addition, we further found that the PI3K/mTOR/HER3 signalling pathway played an important role in regulating these effects. Thus, we thought that overexpression of GLUT1 might be an important target in the treatment of cerebral ischaemia-reperfusion.https://www.termedia.pl/Tanshinone-IIA-alleviates-the-damage-of-neurocytes-by-targeting-GLUT1-in-ischaemia-reperfusion-model-in-vivo-and-in-vitro-experiments-,20,41192,1,1.htmltanshinone iia glut1 ischaemia reperfusion pi3k/mtor signalling pathway mitochondrial function.
collection DOAJ
language English
format Article
sources DOAJ
author Jing Wang
Haibo Tong
Xiangyang Wang
Xinxing Wang
Yang Wang
spellingShingle Jing Wang
Haibo Tong
Xiangyang Wang
Xinxing Wang
Yang Wang
Tanshinone IIA alleviates the damage of neurocytes by targeting GLUT1 in ischaemia reperfusion model (in vivo and in vitro experiments)
Folia Neuropathologica
tanshinone iia
glut1
ischaemia reperfusion
pi3k/mtor signalling pathway
mitochondrial function.
author_facet Jing Wang
Haibo Tong
Xiangyang Wang
Xinxing Wang
Yang Wang
author_sort Jing Wang
title Tanshinone IIA alleviates the damage of neurocytes by targeting GLUT1 in ischaemia reperfusion model (in vivo and in vitro experiments)
title_short Tanshinone IIA alleviates the damage of neurocytes by targeting GLUT1 in ischaemia reperfusion model (in vivo and in vitro experiments)
title_full Tanshinone IIA alleviates the damage of neurocytes by targeting GLUT1 in ischaemia reperfusion model (in vivo and in vitro experiments)
title_fullStr Tanshinone IIA alleviates the damage of neurocytes by targeting GLUT1 in ischaemia reperfusion model (in vivo and in vitro experiments)
title_full_unstemmed Tanshinone IIA alleviates the damage of neurocytes by targeting GLUT1 in ischaemia reperfusion model (in vivo and in vitro experiments)
title_sort tanshinone iia alleviates the damage of neurocytes by targeting glut1 in ischaemia reperfusion model (in vivo and in vitro experiments)
publisher Termedia Publishing House
series Folia Neuropathologica
issn 1641-4640
1509-572X
publishDate 2020-06-01
description Stroke is partial or complete brain dysfunction combined with acute cerebral circulatory disorders, and it affects millions of individuals around the world each year. A total of 70-80% of patients experience ischaemic stroke caused by disturbances in cerebral circulation, leading to cerebral ischaemia, neuronal apoptosis, and necrosis. Tanshinone IIA is a natural compound extracted from Salvia miltiorrhiza and has been proven to assist in recovery from cerebral ischaemia reperfusion injury. GLUT1 is ubiquitously expressed in all types of tissues in the human body and has important physiological functions due to its glucose uptake ability. This experiment was performed to detect the effect of GLUT1 in promoting the therapeutic effect of tanshinone IIA. Here, we found that tanshinone IIA treatment increased the viability of neurons and promoted the recovery of brain function, and that the concentration of glucose in serum and cultured medium was also increased. We noticed that these effects might be mediated by an increased glucose uptake ability. In addition, we further found that the PI3K/mTOR/HER3 signalling pathway played an important role in regulating these effects. Thus, we thought that overexpression of GLUT1 might be an important target in the treatment of cerebral ischaemia-reperfusion.
topic tanshinone iia
glut1
ischaemia reperfusion
pi3k/mtor signalling pathway
mitochondrial function.
url https://www.termedia.pl/Tanshinone-IIA-alleviates-the-damage-of-neurocytes-by-targeting-GLUT1-in-ischaemia-reperfusion-model-in-vivo-and-in-vitro-experiments-,20,41192,1,1.html
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