Oxidative inactivation of gastric peroxidase by site-specific generation of hydroxyl radical and its role in stress-induced gastric ulceration

D Das, D Bandyopadhyay, RK Banerjee - Free Radical Biology and …, 1998 - Elsevier
We have shown earlier that restraint-cold stress-induced gastric ulceration in rats is caused
by metal ion dependent generation of hydroxyl radical (OḢ) and oxidative inactivation of …

[引用][C] Oxidative Inactivation of Gastric Peroxidase by Site-Specific Generation of Hydroxyl Radical and Its Role in Stress-Induced Gastric Ulceration

D Das, D Bandyopadhyay, RK Banerjee - Free Radical Biology and …, 1998 - cir.nii.ac.jp
Oxidative Inactivation of Gastric Peroxidase by Site-Specific Generation of Hydroxyl Radical
and Its Role in Stress-Induced Gastric Ulceration | CiNii Research CiNii 国立情報学研究所 学術 …

[引用][C] Oxidative inactivation of gastric peroxidase by site-specific generation of hydroxyl radical and its role in stress-induced gastric ulceration

D Das, D Bandyopadhyay, RK Banerjee - Free Radical Biology and …, 1998 - hero.epa.gov
Oxidative inactivation of gastric peroxidase by site-specific generation of hydroxyl radical
and its role in stress-induced gastric ulceration | Health & Environmental Research Online (HERO) …

Oxidative Inactivation of Gastric Peroxidase by Site-Specific Generation of Hydroxyl Radical and Its Role in Stress-Induced Gastric Ulceration

D Das, D Bandyopadhyay, RK Banerjee - Free Radical Biology & …, 1998 - elibrary.ru
We have shown earlier that restraint-cold stress-induced gastric ulceration in rats is caused
by metal ion dependent generation of hydroxyl radical (OH#) and oxidative inactivation of …

Oxidative inactivation of gastric peroxidase by site-specific generation of hydroxyl radical and its role in stress-induced gastric ulceration.

D Das, D Bandyopadhyay… - Free Radical Biology & …, 1998 - europepmc.org
We have shown earlier that restraint-cold stress-induced gastric ulceration in rats is caused
by metal ion-dependent generation of hydroxyl radical (OH.) and oxidative inactivation of the …

Oxidative Inactivation of Gastric Peroxidase by Site-Specific Generation of Hydroxyl Radical and Its Role in Stress-Induced Gastric Ulceration

D Das, D Bandyopadhyay, RK Banerjee - Free Radical Biology and …, 1998 - infona.pl
We have shown earlier that restraint-cold stress-induced gastric ulceration in rats is caused
by metal ion dependent generation of hydroxyl radical (OH) and oxidative inactivation of the …

Oxidative inactivation of gastric peroxidase by site-specific generation of hydroxyl radical and its role in stress-induced gastric ulceration

D Das, D Bandyopadhyay… - Free Radical Biology & …, 1998 - repository.ias.ac.in
We have shown earlier that restraint-cold stress-induced gastric ulceration in rats is caused
by metal ion dependent generation of hydroxyl radical (OH∗) and oxidative inactivation of …

Oxidative inactivation of gastric peroxidase by site-specific generation of hydroxyl radical and its role in stress-induced gastric ulceration

D Das, D Bandyopadhyay… - Free radical biology & …, 1998 - pubmed.ncbi.nlm.nih.gov
We have shown earlier that restraint-cold stress-induced gastric ulceration in rats is caused
by metal ion-dependent generation of hydroxyl radical (OH.) and oxidative inactivation of the …

[引用][C] Oxidative inactivation of gastric peroxidase by site-specific generation of hydroxyl radical and its role in stress-induced gastric ulceration

D DAS - Free Radic. Biol. Med., 1998 - cir.nii.ac.jp
Oxidative inactivation of gastric peroxidase by site-specific generation of hydroxyl radical
and its role in stress-induced gastric ulceration | CiNii Research CiNii 国立情報学研究所 学術 …

Oxidative inactivation of gastric peroxidase by site-specific generation of hydroxyl radical and its role in stress-induced gastric ulceration

D Das, D Bandyopadhyay… - Free Radical Biology & …, 1998 - repository.ias.ac.in
We have shown earlier that restraint-cold stress-induced gastric ulceration in rats is caused
by metal ion dependent generation of hydroxyl radical (OH∗) and oxidative inactivation of …