Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Novel Isoxazole Derivative Attenuates Ethanol-Induced Gastric Mucosal Injury through Inhibition of H+/K+-ATPase Pump, Oxidative Stress and Inflammatory Pathways
by
Qazi, Neelum Gul
, Nadeem, Humaira
, Bungau, Simona
, Hassan, Syed Shams ul
, Ali, Fawad
, Khan, Arif-ullah
, Razzaq, Sidra
, Minhas, Amber Mahmood
in
Adenosine triphosphatase
/ anti-inflammatory
/ antioxidant
/ Antioxidants
/ Care and treatment
/ Drugs
/ Ethanol
/ gastric ulcer
/ Gastrointestinal diseases
/ H+/K+-ATPase inhibition
/ Health aspects
/ Heterocyclic compounds
/ in-silico
/ Inflammation
/ isoxazole
/ Laboratory animals
/ Ligands
/ Oxidative stress
/ Pharmaceutical industry
/ Pharmaceutical sciences
/ Physiological aspects
/ Proteins
/ Testing
/ Ulcers
2022
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?
Novel Isoxazole Derivative Attenuates Ethanol-Induced Gastric Mucosal Injury through Inhibition of H+/K+-ATPase Pump, Oxidative Stress and Inflammatory Pathways
by
Qazi, Neelum Gul
, Nadeem, Humaira
, Bungau, Simona
, Hassan, Syed Shams ul
, Ali, Fawad
, Khan, Arif-ullah
, Razzaq, Sidra
, Minhas, Amber Mahmood
in
Adenosine triphosphatase
/ anti-inflammatory
/ antioxidant
/ Antioxidants
/ Care and treatment
/ Drugs
/ Ethanol
/ gastric ulcer
/ Gastrointestinal diseases
/ H+/K+-ATPase inhibition
/ Health aspects
/ Heterocyclic compounds
/ in-silico
/ Inflammation
/ isoxazole
/ Laboratory animals
/ Ligands
/ Oxidative stress
/ Pharmaceutical industry
/ Pharmaceutical sciences
/ Physiological aspects
/ Proteins
/ Testing
/ Ulcers
2022
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?
Novel Isoxazole Derivative Attenuates Ethanol-Induced Gastric Mucosal Injury through Inhibition of H+/K+-ATPase Pump, Oxidative Stress and Inflammatory Pathways
by
Qazi, Neelum Gul
, Nadeem, Humaira
, Bungau, Simona
, Hassan, Syed Shams ul
, Ali, Fawad
, Khan, Arif-ullah
, Razzaq, Sidra
, Minhas, Amber Mahmood
in
Adenosine triphosphatase
/ anti-inflammatory
/ antioxidant
/ Antioxidants
/ Care and treatment
/ Drugs
/ Ethanol
/ gastric ulcer
/ Gastrointestinal diseases
/ H+/K+-ATPase inhibition
/ Health aspects
/ Heterocyclic compounds
/ in-silico
/ Inflammation
/ isoxazole
/ Laboratory animals
/ Ligands
/ Oxidative stress
/ Pharmaceutical industry
/ Pharmaceutical sciences
/ Physiological aspects
/ Proteins
/ Testing
/ Ulcers
2022
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.
Novel Isoxazole Derivative Attenuates Ethanol-Induced Gastric Mucosal Injury through Inhibition of H+/K+-ATPase Pump, Oxidative Stress and Inflammatory Pathways
Journal Article
Novel Isoxazole Derivative Attenuates Ethanol-Induced Gastric Mucosal Injury through Inhibition of H+/K+-ATPase Pump, Oxidative Stress and Inflammatory Pathways
2022
Request Book From Autostore
and Choose the Collection Method
Overview
Isoxazole derivatives are significant enough due to their wide range of pharmacological and therapeutic activities. The purpose of the current study is to use computational, in vitro, in vivo, and extensive molecular approaches to examine the possible anti-ulcer activity of 4-benzylidene-3 methyl-1,2-isoxazol-5(4H)-one (MBO). Biovia Discovery Studio visualizer (DSV) was utilized for virtual screening. A tissue antioxidant investigation, H+/K+-ATPase test, and anti-H. pylori activities were carried out. ELISA, immunohistochemistry, and PCR methods were employed for the proteome analysis. An ethanol-induced stomach ulcer model was used to examine the anti-ulcer potential in rats. The binding affinities for MBO ranged from −5.4 to −8.2 Kcal/mol. In vitro findings revealed inhibitory activity against H. pylori and the H+/K+-ATPase pump. It also enhanced levels of glutathione, catalase, and glutathione-S-transferase and reduced lipid peroxidation levels in gastric tissues of rats. In vivo results showed the gastro-protective effect of MBO (30 mg/kg) in ulcerative rat stomachs. The proteomic study revealed decreased expression of inflammatory markers (cyclooxygenase-2, p-NFkB, and TNF-α). In RT-PCR analysis, the expression levels of H+/K+-ATPase were reduced. Furthermore, ADMET (absorption, distribution, metabolism, excretion and toxicity) studies revealed that MBO has high GIT solubility and has a safer profile for cardiac toxicity. This study suggests that MBO displayed anti-ulcer potential, which may have been mediated through the inhibition of the H+/K+-ATPase pump, as well as antioxidant and anti-inflammatory pathways. It has the potential to be a lead molecule in the treatment of peptic ulcers with fewer adverse effects.
This website uses cookies to ensure you get the best experience on our website.