Literature DB >> 2498448

Comparison of different regimens of human gonadotropins for superovulation of rhesus monkeys: ovulatory response and subsequent luteal function.

C A Vandevoort1, W L Baughman, R L Stouffer.   

Abstract

This study was designed to identify suitable treatment regimens of human gonadotropin for superovulation of rhesus monkeys. At menses, female monkeys were given one of three regimens: Plan A [days 1 to 6, 60 IU human follicle-stimulating hormone (hFSH); days 7 to 9, 60 IU hFSH/60 IU human luteinizing hormone (hLH)], Plan B [days 1 to 3, 75 IU FSH/20 IU LH; days 4 to 6, 60 IU FSH/20 IU LH; days 7 to 9, 45 IU FSH/45 IU LH], or Plan C [days 1 to 9, 60 IU FSH/60 IU LH]. On day 10, human chorionic gonadotropin (hCG; 1000 IU) was administered. Serum estrogen levels peaked on the day of hCG treatment (day 10) in Plans A and C but earlier (day 8) in Plan B. An oviduct lavage recovered 1 to 3 oocytes in Plan B but 3 to 13 oocytes in the other treatment groups. Peak progesterone levels in the luteal phase were greater (P less than 0.05) in animals receiving Plan A or C than Plan B. Regardless of treatment group, progesterone levels declined abruptly 7 days after ovulation induction; the length of the luteal phase in all groups was significantly less than that of normal menstrual cycles. We conclude that regimens of hFSH and hLH (i.e., Plans A and C), followed by hCG, reliably superovulate rhesus monkeys. However, the premature decline in luteal function around the typical time of implantation may compromise pregnancy initiation and maintenance.

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Year:  1989        PMID: 2498448     DOI: 10.1007/bf01130732

Source DB:  PubMed          Journal:  J In Vitro Fert Embryo Transf        ISSN: 0740-7769


  23 in total

Review 1.  Preovulatory determinants of human corpus luteum function.

Authors:  G T Ross
Journal:  Eur J Obstet Gynecol Reprod Biol       Date:  1976       Impact factor: 2.435

2.  Follicle-stimulating hormone blocks estrogen-positive feedback during the early follicular phase in monkeys.

Authors:  R S Schenken; G D Hodgen
Journal:  Fertil Steril       Date:  1986-04       Impact factor: 7.329

3.  Ovarian responses in macaques to pulsatile infusion of follicle-stimulating hormone (FSH) and luteinizing hormone: increased sensitivity of the maturing follicle to FSH.

Authors:  A J Zeleznik; C J Kubik
Journal:  Endocrinology       Date:  1986-11       Impact factor: 4.736

4.  Gonadotrophin-induced abnormalities in sheep oocytes after superovulation.

Authors:  R M Moor; J C Osborn; I M Crosby
Journal:  J Reprod Fertil       Date:  1985-05

5.  Ovarian stimulation regimens in an in vitro fertilization program: a comparative analysis.

Authors:  C M Bayly; J C McBain; G A Clarke; M J Gronow; W I Johnston; M J Martin; A L Speirs
Journal:  Ann N Y Acad Sci       Date:  1985       Impact factor: 5.691

Review 6.  The embryo-maternal dialogue during early pregnancy in primates.

Authors:  J P Hearn
Journal:  J Reprod Fertil       Date:  1986-03

7.  Luteal phase defects in the rhesus monkey: the significance of serum FSH:LH ratios.

Authors:  J W Wilks; G D Hodgen; G T Ross
Journal:  J Clin Endocrinol Metab       Date:  1976-12       Impact factor: 5.958

Review 8.  The ovarian triad of the primate menstrual cycle.

Authors:  A L Goodman; G D Hodgen
Journal:  Recent Prog Horm Res       Date:  1983

9.  Fertilization and cleavage of rhesus monkey oocytes in vitro.

Authors:  B D Bavister; D E Boatman; L Leibfried; M Loose; M W Vernon
Journal:  Biol Reprod       Date:  1983-05       Impact factor: 4.285

10.  The relationship between progestins and gonadotropins during the late luteal phase of the menstrual cycle in rhesus monkeys.

Authors:  J A Resko; R L Norman; G D Niswender; H G Spies
Journal:  Endocrinology       Date:  1974-01       Impact factor: 4.736

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  18 in total

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5.  Ovarian membrane-type matrix metalloproteinases: induction of MMP14 and MMP16 during the periovulatory period in the rat, macaque, and human.

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6.  Prostaglandin dehydrogenase (PGDH) in granulosa cells of primate periovulatory follicles is regulated by the ovulatory gonadotropin surge via multiple G proteins.

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7.  Angiogenesis in the primate ovulatory follicle is stimulated by luteinizing hormone via prostaglandin E2.

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8.  Prostaglandin E2 acts via multiple receptors to regulate plasminogen-dependent proteolysis in the primate periovulatory follicle.

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9.  Monkey hybrid stem cells develop cellular features of Huntington's disease.

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Authors:  Jenna K Nyholt de Prada; Dana L Hill; Charles L Chaffin; Catherine A VandeVoort
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