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Acta Laboratorium Animalis Scientia Sinica ; (6): 13-16,彩4, 2010.
Article in Chinese | WPRIM | ID: wpr-597498

ABSTRACT

Objective To establish rat models of polycystic ovary syndrome(PCOS) induced by different methods,to assess the serum levels of several related hormones,to examine the morphological changes in the ovaries,and to discuss their significance.Methods Letrozol,sodium prasterone sulfate,or sodium prasterone sulfate combined with human chorionic gonadotropin were used to establish rat models of PCOS.Radioimmunoassay was used to measure the serum levels of hteinizing hormone(LH),follicle-stimulating hormone(FSH),estrogen(E_2),progesterone(P),testosterone(T),prolactin(PRL),and insulin(INS).HE staining was used to examine the morphological changes of the ovaries.Results Comparing with the normal group A,the serum FSH was increased and the serum progesterone was reduced in the group B,with a statistically significant difference(P<0.05).The serum testosterone was significantly higher in the group B than in the group A(P<0.01).The levels of serum sex hormones and insulin were not significantly different in the group D and C(P>0.05).In comparison with the group C,the levels of serum testosterone and LH/FSH ratio was significantly increased in the group E.(P<0.05).Comparing with the group D,the serum levels of progesterone and testosterone were significantly increased in the group E(P<0.05).The ovaries in the rats of groups A and C showed almost a normal histyology,with mature follicles and dominant follicles.Polycystic changes were observed only in the ovaries of groups B,D and E.Conclusion At the aspect of affecting the level of sex hormones in serum and changing the ovarian morphology.adopting letrozol tablets or sodium prasterone sulfate combined with HCG to induce rat PCO model is more close to clinic manifestations and meets the criteria of PCO animals.In the rat PCOS models induced with letrozol or with sodium prasterone sulfate combined with HCG,either the serum levels of sex hormones and ovarian histology are quite similar to those of human clinical appearance,and may well meet the modeling requirements for future experimental studies of polycystic ovary syndrome.

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