Evidence for the internal feedback phenomenon in human subjects: effects of ACTH on plasma CRF.
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Biomedical subjects
Publications and source records attributed to A Corbin.
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A prototype LH-RH antagonist dampened the proestrous gonadotropin surge and blocked ovulation but had no effect on pregnant animals. In contrast, LH-RH and two highly potent LH-RH agonists terminated pregnancy when administrated prior to or following implantation. This contragestational effect, as well as other antireproductive properties of the agonists, coupled with the reversibility of their effects, strongly suggest that peptides may provide a new basis for contraception.
Levonorgestrel (LNg) is known for its marked progestational/contraceptive activity. As shown in animal experiments, however, high doses of LNg are required to elicit an androgenic response; in contrast, considerably lower doses of LNg are required for antiovulatory (contraceptive) action. Thus, a large dose separation exists between androgenic and contraceptive activity. When LNg is combined with an estrogen, as in the contraceptive formulations, the androgenic response is attenuated or negated. The results of recent clinical trials have demonstrated that the androgenic activity of LNg is not expressed at contraceptive doses, particularly when LNg is combined with ethinyl estradiol (EE), as in the low-dose monophasic/triphasic formulations (monophasic [Nordette]: 150 mcg LNg/30 mcg EE; triphasic [Triphasil/Trinordiol]: six days, 50 mcg LNg/30 mcg EE; five days, 75 mcg LNg/40 mcg EE; ten days, 125 mcg LNg/30 mcg EE). Clinical evidence from several trials confirms that sex hormone-binding globulin levels are increased, plasma androgen levels are decreased, and acne is markedly improved with the use of Triphasil and Nordette, suggesting a non-androgenic profile.
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LHRH and its analogues produce profound antireproductive effects in both sexes of a variety of animal species. Although the LHRH agonists induce gonadotropin release, gonadal steroid secretion, ovulation, and spermatogenesis as an expression of their traditional profertility pharmacologic profile, they paradoxically and characteristically cause predominant antifertility effects which have been extensively evaluated for potential contraceptive purposes. These agonists produce their antireproductive effects in both males and females by common mechanisms, ultimately resulting in disruption of pituitary-gonadal function, depression of steroidogenesis, and inhibition of target organs dependent on such gonadal support. Similar antireproductive effects have been observed with the LHRH antagonists which competitively inhibit LHRH-induced gonadotropin secretion resulting in reduced blood gonadal steroid levels. Use of the inhibitory properties has been extended to cancer therapy based on the ability of the LHRH analogues (particularly the agonists) to inhibit the growth of steroid-dependent (responsive) tumors (e.g., mammary, prostate) similar to that produced by gonadectomy and antisteroid treatments. The use of these peptides for selected hormone-sensitive tumors presents a novel pharmacotherapeutic application for this class of drug.