Role of NADPH Oxidase in Total Salvianolic Acid Injection Attenuating Ischemia-Reperfusion Impaired Cerebral Microcirculation and Neurons: Implication of AMPK/Akt/PKC

Author:

Tang Hao1,Pan Chun-Shui234,Mao Xiao-Wei534,Liu Yu-Ying234,Yan Li234,Zhou Chang-Man6,Fan Jing-Yu234,Zhang Shuang-Yan1,Han Jing-Yan2534

Affiliation:

1. The Fourth Affiliated Hospital of Harbin Medical University; Harbin Heilongjiang China

2. Tasly Microcirculation Research Center; Peking University Health Science Center; Beijing China

3. Key Laboratory of Microcirculation; State Administration of Traditional Chinese Medicine of the People's Republic of China; Beijing China

4. Key Laboratory of Stasis and Phlegm; State Administration of Traditional Chinese Medicine of the People's Republic of China; Beijing China

5. Department of Integration of Chinese and Western Medicine; School of Basic Medical Sciences; Peking University; Beijing China

6. Department of Anatomy; School of Basic Medical Sciences; Peking University; Beijing China

Publisher

Wiley

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Molecular Biology,Physiology

Reference34 articles.

1. The nox toolbox: validating the role of NADPH oxidases in physiology and disease;Altenhofer;Cell Mol Life Sci,2012

2. Acute ischemic stroke management: medical management;Barrett;Semin Neurol,2010

3. Review of stroke thrombolytics;Bivard;J Stroke,2013

4. Rosiglitazone reduces glucose-induced oxidative stress mediated by NAD(P)H oxidase via AMPK-dependent mechanism;Ceolotto;Arterioscler Thromb Vasc Biol,2007

5. Salvianolic acid b protects brain against injuries caused by ischemia-reperfusion in rats;Chen;Acta Pharmacol Sin,2000

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