YUE Xin-yi, CHAI Cheng-zhi, KOU Jun-ping, et al. Effect of Gegen Decoction on Primary Dysmenorrhea with Cold-damp Coagulation Induced by Oxytocin and Cold Simulating in Mice[J]. Chinese journal of experimental traditional medical formulae, 2012, 18(18): 174-177.
YUE Xin-yi, CHAI Cheng-zhi, KOU Jun-ping, et al. Effect of Gegen Decoction on Primary Dysmenorrhea with Cold-damp Coagulation Induced by Oxytocin and Cold Simulating in Mice[J]. Chinese journal of experimental traditional medical formulae, 2012, 18(18): 174-177. DOI: 10.13422/j.cnki.syfjx.2012.18.061.
Effect of Gegen Decoction on Primary Dysmenorrhea with Cold-damp Coagulation Induced by Oxytocin and Cold Simulating in Mice
Objective:To investigate the influence of Gegen decoction(GGD) and the potential mechanism on primary dysmenorrhea with cold-damp coagulation induced byoxytocin and cold simulating.Method:Seventy female ICR mice were randomly divided into seven groups:normal group
model group
buprofen group
Guizhi Fuling capsule group
low-dose GGD group
middle-dose GGD group and high-dose GGD group.Subcutaneous injection of estrogen and cold stimulation were used for 3 consecutive days
and peritoneal injection of oxytocin on the 4th day to construct primary dysmenorrhea model with cold-damp coagulation
the writhing response and the levels of nitric oxide(NO) and calcium ion(Ca2+) in mice uterine tissue were investigated.Meanwhile
ibuprofen group received ibuprofen(0.12 g · kg-1)
GFC group received Guizhi Fuling Capsule(1.12 g · kg-1)
GGD group received GGD(low-dose
3.5 g · kg-1;middle-dose
7.0 g · kg-1;high-dose
14.0 g · kg-1).Result:GGD could inhibit the writhing response effectively(the inhibition rate was 81.03%
84.14%
90.15% at low
middle and high-dose
respectively) and increase NO levels and reduce Ca2+ concentration in uterine tissue of mice(P<0.001).The efficacy of GGD was equal to the positive drug ibuprofen and Guizhi Fuling capsule.Conclusion:GGD could effectively alleviate the spasm of uterine smooth induced by oxytocin and cold.The mechanism might be relative to regulation of uterine NO and Ca2+ levels.
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Related Author
YUE Xin-yi
CHAI Cheng-zhi
KOU Jun-ping
YU Bo-yang
WANG Ting
MA Yuncheng
SHI Yuanyuan
LIU Zhen
Related Institution
School of Life Sciences,Beijing University of Chinese Medicine
School of Chinese Materia Medica, Beijing University of Chinese Medicine
Beijing Research Institute of Traditional Medicine, Beijing University of Chinese Medicine
School of Traditional Chinese Medicine,Hunan University of Chinese Medicine
Key Laboratory of Modern Chinese Medicine Preparation of Ministry of Education, Jiangxi University of Chinese Medicine