Expression of insulin-receptor substrate-1 and -2 in ovaries from women with insulin resistance and from controls
Author:
Publisher
Elsevier BV
Subject
Obstetrics and Gynecology,Reproductive Medicine
Reference31 articles.
1. Activities of glucose metabolic enzymes in human preantral follicles;Roy;Biol Reprod,1999
2. The midcycle increase in ovarian glucose uptake is associated with enhanced expression of glucose transporter 3. Possible role for interleukin-1, a putative intermediary in the ovulatory process;Kol;J Clin Invest,1997
3. Excessive insulin receptor serine phosphorylation in cultured fibroblasts and in skeletal muscle. A potential mechanism for insulin resistance in the polycystic ovary syndrome;Dunaif;J Clin Invest,1995
4. Insulin stimulates testosterone biosynthesis by human thecal cells from women with polycystic ovary syndrome by activating its own receptor and using inositolglycan mediators as the signal transduction system;Nestler;J Clin Endocrinol Metab,1998
5. Insulin stimulation of lactate accumulation in isolated human granulosa-luteal cells;Lin;Hum Reprod,1997
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