1Zeleznik AJ. The physiology of follicle selection. Reprod Biol Endocrinol, 2004, 12(2): 31-9.
2Sciacca L, Prisco M, Wu A, et al. Signaling differences from the A and B isoforms of the insulin receptor (IR) in 32D cells in the presence or absence of IR substrate-1. Endocrinology, 2003, 144(3): 2 650-8.
3Yen HW, Jakimiuk AJ, Munir I, et al. Selective alterations in insulin receptor substrates-1, -2 and -4 in theca but not granulosa cells from polycystic ovaries. Mol Hum Reprod, 2004, 10(7):473-9.
4Neganova I, Hind AQ, Heffron H, et al. Role of central nervous system and ovarian insulin receptor substrate 2 signaling in female reproductive function in the mouse. Biol Reprod, 2007, 76:1 045-53.
5Malcolm CR, Iain TC, Chantal DS, et al. Insulin and human chorionic gonadotropin cause a shift in the balance of sterol regulatory element-binding protein (SREBP) isoforms toward the SREBP-lc isoform in cultures of human granulosa cells. J Clin Endocrinol Metab, 2005, 90(6):3 738-46.
6Donna SY, Jacek Z, Liu HC, et al. The role of mitogen-acfivated protein kinase in insulin and insulin-like growth factor Ⅰ (IGF-Ⅰ) signaling cascades for progesterone and IGF-binding protein-1 production in human granulosa cells. J Clin Endocrinol Metab, 2003, 88(7):3 385-91.
7Argov N, Arav A, Sklan D. Number of oocytes obtained from cows by OPU in early, but not late lactation increased with plasma insulin and estradiol concentrations and expression of mRNA of the FSH receptor in granulosa cells. Theriogenology, 2004, 61(5):947-62.
8Tonya RD, Connie SC, Tamara SB, et al. Effect of follicle size on in vitro production of steroids and insulin-like growth factor (IGF)-Ⅰ, IGF-Ⅱ, and the IGF-binding proteins by equine ovarian granulosa cells. Biol Reprod, 2002, 66(2): 1 640-8.
9Natesampillai S, Johannes DV. Concerted transcriptional activation of the low density lipoprotein receptor gene by insulin and luteinizing hormone in cultured porcine granulosa-luteal cells: possible convergence of protein kinase A, phosphatidylinositol 3-kinase, and mitogen-activated protein kinase signaling pathways. Endocrinology, 2001, 142(7):2 921-8.
10Donna SY, Dimiter A, Marina S, et aL Interactions among peroxisome proliferator activated receptor-γ, insulin signaling pathways, and steroidogenic acute regulatory protein in human ovarian cells. J Clin Endocrinol Metab, 2007, 92(6): 2 232-9.
2DunaifA, Scott D, Fineyood D, et al. The insulin-sensitizing ayent troglitazone improves metabolic and reproductive abnormalities in the polystics ovary syndrome. J Clin Endocnrol Metab, 1996,81(a):3 299-306.
3Ia MA, Cgbe TO, Morgante G, et al, Metformin treatment reduce ovarian cytochrome p450c1 7alpha resporve to human gonadotropin in women with insulin resistant resistance-related polystic.ovary syndrome. Hum Reprod, 2000,15(1):21-3.
4VrBikova T, Hill M, Starka I, et al. The effects of long-term metformin treatment on adrenal and ovarian steroidogenesis in woman with polycystic ovary syndrome. Eur J Endocrinol,2001,144(6):619-28.
5Yarali H & Yildiz B. Metformin and FSH for induction of ovulation in women with polycystic ovary syndrome.Fertil Steril, 1999, 72(2):282-5.
6Pritts EA. Treatment of the infertile patient with polycystic ovary syndrome. Obstet Gynecoi Surv, 2002, 57(3):587-9.
7Nestler JE, LakuBowica DJ, Evans WS, et al. Effects of meformin on spontaneous and clomiphene-induced ovulation in the polycytic ovary syndrome. N Engl J Med, 1998,18(1):76-80.
8Kocak M, Caliskan E, Simsir C, et al. Metformin the rapy:improves ovucatory rates, cervical scones and pregnancy rates in clomiphene citrate-resistant woman with polycystic ovary syndrone. Fertil Steril,2002,77(1):101-6.
9Glueck CJ, Wang P, Kobayashi S, et al. Metformin the rapy throughout pregnanay vedulce the clevelopment o,f gestational clisbetes in women with polycystic ovary sydrome.Fertil Steril,2002,77(3):520-5.
10Elliott JL,Hosford SL,Demopoulos RI,et al.Endometrial adenocarcinoma and polycystic ovary syndrome: risk factors,management,and prognosis.South Med J,2001,94(5): 529-31.
10Bogliolo L, et al. Influence of co-culture with oviductal epithelial cells on in vitro maturation of canine oocytes. Reproduction Nature,2002,42:265-273.