ZHAO Dan-dan, LI Xiao-ke, YU Na, et al. Effect of Jiangtang Xiaoke Granule on Glucose and Lipid Metabolism in Type 2 Diabetic Rats[J]. Chinese journal of experimental traditional medical formulae, 2013, 19(24): 172-176.
DOI:
ZHAO Dan-dan, LI Xiao-ke, YU Na, et al. Effect of Jiangtang Xiaoke Granule on Glucose and Lipid Metabolism in Type 2 Diabetic Rats[J]. Chinese journal of experimental traditional medical formulae, 2013, 19(24): 172-176. DOI: 10.11653/syfj2013240172.
Effect of Jiangtang Xiaoke Granule on Glucose and Lipid Metabolism in Type 2 Diabetic Rats
Objective: To investigate the effect of the Jiangtang Xiaoke granule (JTXKG) on the blood glucose and blood lipids in type 2 diabetic rats. Method: Diabetic rats were constructed by high-fat-diet for 4 weeks and combined with intraperitoneal injection of streptozocin 30 mg·kg-1
and the model rats were randomly divided into diabetes model group (T2DM)
positive control group (metformin 0.2 g·kg-1) JTXKG groups with high
medium
and low dose (raw herbs 17.6
8.8
4.4 g·kg-1)
and the normal control group (NC) was also designed. After 4-week treatment
the general condition of rats was observed
and fasting blood glucose (FBG)
blood lipid (BL)
fasting serum insulin (INS)
glycosylated hemoglobin (HbA1c) were tested
glucose tolerance and insulin tolerance were measured. Result: Compared with model group
body weight
FBG and insulin sensitive index levels of JTXKG groups were improved (P<0.05)
HbA1c showed certain changes
but the difference was not statistically significant. However
the serum insulin levels and blood lipid levels did not significantly change. After treatment
the glucose tolerance presents time-related improvement in diabetic rats
the results of insulin tolerance test showed that JTXKG could enhance insulin sensitivity of diabetic rats. Conclusion: JTXKG
the treating principle of which is regulating function of liver spleen and kidney together
can improve glucose and lipid metabolism and pancreatic islet function in type 2 diabetic rats
and relieve insulin resistance that may be the possible mechanism of JTXKG preventing and controlling type 2 diabetes.
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