Effects of Extract on Oxidative Stress Status in STZ-induced Diabetic Mice
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Effects of Extract on Oxidative Stress Status in STZ-induced Diabetic Mice
Chinese Journal of Experimental Traditional Medical FormulaeVol. 18, Issue 10, Pages: 202-206(2012)
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Published:2012
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ZHENG Rong-bo, HUANG Xiao-dan, HE Rong-rong, et al. Effects of Extract on Oxidative Stress Status in STZ-induced Diabetic Mice[J]. Chinese journal of experimental traditional medical formulae, 2012, 18(10): 202-206.
DOI:
ZHENG Rong-bo, HUANG Xiao-dan, HE Rong-rong, et al. Effects of Extract on Oxidative Stress Status in STZ-induced Diabetic Mice[J]. Chinese journal of experimental traditional medical formulae, 2012, 18(10): 202-206.DOI:
Effects of Extract on Oxidative Stress Status in STZ-induced Diabetic Mice
Objective: To study the protective effects of Cassia obtusifolia extract (COE) on oxidative stress of lens in streptozotocin (STZ)-induced diabetic mice. Method: STZ (130 mg·kg-1) was intravenously injected through the tail vein to induce diabetes in mice
which were randomly divided STZ model
metformin positive control (300 mg·kg-1)
and different dosages of COE (50
150
450 mg·kg-1)
with 10 mice in each group. Metformin and COE were given to mice once daily for 10 consecutive days by oral administration
while normal control and STZ model groups were given water only. Blood glucose level and parameters of oxidative stress were detected in mice lens. Result: STZ injection increased plasma glucose significantly and also induced oxidative stress in mice lens. Although COE was not effective on the elevated blood glucose level (P>0.01)
it could significantly lower the contents of NO and MDA in lens (P<0.01). At the same time
ORAC and GSH levels of lens were significantly increased (P<0.01). The activity of T-SOD and GSH-Px was also increased (P<0.01). Conclusion: COE could improve oxidative stress conditions in lens of STZ-induced diabetic mice. The mechanism should be related to the elimination of free radicals and inhibition of lipid peroxidation.
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Related Author
ZHENG Rong-bo1
HUANG Xiao-dan1
HE Rong-rong2
LI Wei-xi2
LI Xiao-di2
LI Yi-fang2
KURIHARA Hiroshi2
Xuan-xuan ZHU
Related Institution
Guangzhou Wanglaoji Pharmaceutical Company Limited
Institute of Traditional Chinese Medicine & Natural Products,Jinan University
College of Traditional Chinese Materia Medica,Yunnan University of Traditional Chinese Medicine
National Engineering Laboratory for Quality Control Technology of Chinese Herbal Medicines, Institute of Chinese Materia Medica,China Academy of Chinese Medical Sciences
School of Pharmacy, Hunan University of Chinese Medicine