Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Diabetes aggravates myocardial ischaemia reperfusion injury via activating Nox2‐related programmed cell death in an AMPK‐dependent manner
by
Yao, Weifeng
, Yuan, Wenlin
, Xia, Zhengyuan
, Zhang, Zhongjun
, Zhu, Lijie
, Sun, Lingbin
, Wang, Chunyan
in
Acetylcysteine
/ AMP-Activated Protein Kinases - metabolism
/ AMPK
/ Animals
/ Apoptosis
/ Apoptosis - drug effects
/ Cardiovascular disease
/ Cardiovascular diseases
/ Cell death
/ CYBB protein
/ Diabetes
/ Diabetes mellitus
/ Diabetes Mellitus, Experimental - complications
/ Diabetes Mellitus, Experimental - enzymology
/ Diabetes Mellitus, Experimental - pathology
/ Energy metabolism
/ Ferroptosis
/ Glucose
/ Glucose - toxicity
/ Hypoxia
/ Ischemia
/ Isoforms
/ L-Lactate dehydrogenase
/ Laboratory animals
/ Lactic acid
/ Male
/ Myocardial infarction
/ myocardial ischaemia reperfusion injury
/ Myocardial Reperfusion Injury - complications
/ Myocardial Reperfusion Injury - enzymology
/ Myocardial Reperfusion Injury - pathology
/ Myocardium - enzymology
/ Myocardium - pathology
/ Myocytes, Cardiac - drug effects
/ Myocytes, Cardiac - metabolism
/ Myocytes, Cardiac - pathology
/ NADPH Oxidase 2 - antagonists & inhibitors
/ NADPH Oxidase 2 - metabolism
/ Nox2
/ NOX4 protein
/ Original
/ Oxidative stress
/ Oxidative Stress - drug effects
/ programmed cell death
/ Proteins
/ Pyroptosis
/ Rats, Sprague-Dawley
/ Reperfusion
/ siRNA
/ Streptozocin
/ Veins & arteries
2020
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Diabetes aggravates myocardial ischaemia reperfusion injury via activating Nox2‐related programmed cell death in an AMPK‐dependent manner
by
Yao, Weifeng
, Yuan, Wenlin
, Xia, Zhengyuan
, Zhang, Zhongjun
, Zhu, Lijie
, Sun, Lingbin
, Wang, Chunyan
in
Acetylcysteine
/ AMP-Activated Protein Kinases - metabolism
/ AMPK
/ Animals
/ Apoptosis
/ Apoptosis - drug effects
/ Cardiovascular disease
/ Cardiovascular diseases
/ Cell death
/ CYBB protein
/ Diabetes
/ Diabetes mellitus
/ Diabetes Mellitus, Experimental - complications
/ Diabetes Mellitus, Experimental - enzymology
/ Diabetes Mellitus, Experimental - pathology
/ Energy metabolism
/ Ferroptosis
/ Glucose
/ Glucose - toxicity
/ Hypoxia
/ Ischemia
/ Isoforms
/ L-Lactate dehydrogenase
/ Laboratory animals
/ Lactic acid
/ Male
/ Myocardial infarction
/ myocardial ischaemia reperfusion injury
/ Myocardial Reperfusion Injury - complications
/ Myocardial Reperfusion Injury - enzymology
/ Myocardial Reperfusion Injury - pathology
/ Myocardium - enzymology
/ Myocardium - pathology
/ Myocytes, Cardiac - drug effects
/ Myocytes, Cardiac - metabolism
/ Myocytes, Cardiac - pathology
/ NADPH Oxidase 2 - antagonists & inhibitors
/ NADPH Oxidase 2 - metabolism
/ Nox2
/ NOX4 protein
/ Original
/ Oxidative stress
/ Oxidative Stress - drug effects
/ programmed cell death
/ Proteins
/ Pyroptosis
/ Rats, Sprague-Dawley
/ Reperfusion
/ siRNA
/ Streptozocin
/ Veins & arteries
2020
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Diabetes aggravates myocardial ischaemia reperfusion injury via activating Nox2‐related programmed cell death in an AMPK‐dependent manner
by
Yao, Weifeng
, Yuan, Wenlin
, Xia, Zhengyuan
, Zhang, Zhongjun
, Zhu, Lijie
, Sun, Lingbin
, Wang, Chunyan
in
Acetylcysteine
/ AMP-Activated Protein Kinases - metabolism
/ AMPK
/ Animals
/ Apoptosis
/ Apoptosis - drug effects
/ Cardiovascular disease
/ Cardiovascular diseases
/ Cell death
/ CYBB protein
/ Diabetes
/ Diabetes mellitus
/ Diabetes Mellitus, Experimental - complications
/ Diabetes Mellitus, Experimental - enzymology
/ Diabetes Mellitus, Experimental - pathology
/ Energy metabolism
/ Ferroptosis
/ Glucose
/ Glucose - toxicity
/ Hypoxia
/ Ischemia
/ Isoforms
/ L-Lactate dehydrogenase
/ Laboratory animals
/ Lactic acid
/ Male
/ Myocardial infarction
/ myocardial ischaemia reperfusion injury
/ Myocardial Reperfusion Injury - complications
/ Myocardial Reperfusion Injury - enzymology
/ Myocardial Reperfusion Injury - pathology
/ Myocardium - enzymology
/ Myocardium - pathology
/ Myocytes, Cardiac - drug effects
/ Myocytes, Cardiac - metabolism
/ Myocytes, Cardiac - pathology
/ NADPH Oxidase 2 - antagonists & inhibitors
/ NADPH Oxidase 2 - metabolism
/ Nox2
/ NOX4 protein
/ Original
/ Oxidative stress
/ Oxidative Stress - drug effects
/ programmed cell death
/ Proteins
/ Pyroptosis
/ Rats, Sprague-Dawley
/ Reperfusion
/ siRNA
/ Streptozocin
/ Veins & arteries
2020
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Diabetes aggravates myocardial ischaemia reperfusion injury via activating Nox2‐related programmed cell death in an AMPK‐dependent manner
Journal Article
Diabetes aggravates myocardial ischaemia reperfusion injury via activating Nox2‐related programmed cell death in an AMPK‐dependent manner
2020
Request Book From Autostore
and Choose the Collection Method
Overview
Cardiovascular diseases such as myocardial ischaemia have a high fatality rate in patients with diabetes. This study was designed to expose the crosstalk between oxidative stress and AMPK, a vital molecule that controls biological energy metabolism, in myocardial ischaemia reperfusion injury (I/RI) in diabetic rats. Diabetes was stimulated in rats using streptozotocin injection. Rats were separated on random into control, control + I/R, Diabetes, Diabetes + I/R, Diabetes + I/R + N‐acetylcysteine and Diabetes + I/R + Vas2870 groups. Myocardial infarct size was determined, and the predominant Nox family isoforms were analysed. In vitro, the H9C2 cells were administered excess glucose and exposed to hypoxia/reoxygenation to mimic diabetes and I/R. The AMPK siRNA or AICAR was used to inhibit or activate AMPK expression in H9C2 cells, respectively. Then, myocardial oxidative stress and programmed cell death were measured. Diabetes or high glucose levels were found to aggravate myocardial I/RI or hypoxia/reoxygenation in H9C2 cells, as demonstrated by an increase in myocardial infarct size or lactate dehydrogenase levels, oxidative stress generation and induction of programmed cell death. In diabetic rat hearts, cardiac Nox1, Nox2 and Nox4 were all heightened. The suppression of Nox2 expression using Vas2870 or Nox2‐siRNA treatment in vivo or in vitro, respectively, protected diabetic rats from myocardial I/RI. AMPK gene knockout increased Nox2 protein expression while AMPK agonist decreased Nox2 expression. Therefore, diabetes aggravates myocardial I/RI by generating of Nox2‐associated oxidative stress in an AMPK‐dependent manner, which led to the induction of programmed cell death such as apoptosis, pyroptosis and ferroptosis.
Publisher
John Wiley & Sons, Inc,John Wiley and Sons Inc
Subject
/ AMP-Activated Protein Kinases - metabolism
/ AMPK
/ Animals
/ Diabetes
/ Diabetes Mellitus, Experimental - complications
/ Diabetes Mellitus, Experimental - enzymology
/ Diabetes Mellitus, Experimental - pathology
/ Glucose
/ Hypoxia
/ Ischemia
/ Isoforms
/ Male
/ myocardial ischaemia reperfusion injury
/ Myocardial Reperfusion Injury - complications
/ Myocardial Reperfusion Injury - enzymology
/ Myocardial Reperfusion Injury - pathology
/ Myocytes, Cardiac - drug effects
/ Myocytes, Cardiac - metabolism
/ Myocytes, Cardiac - pathology
/ NADPH Oxidase 2 - antagonists & inhibitors
/ NADPH Oxidase 2 - metabolism
/ Nox2
/ Original
/ Oxidative Stress - drug effects
/ Proteins
/ siRNA
This website uses cookies to ensure you get the best experience on our website.