The Specialized Ovulatory Dysfunction Infertility Research Center headed by the University of Michigan Reproductive Sciences Program will conduct, coordinate and integrate a comprehensive program of multidisciplinary research aimed at the problem of human ovulatory dysfunction. A unique aspect of the proposed Center is the combined strength of investigators from reproductive sciences, molecular biology, clinical sciences and behavioral research backgrounds at four major institutions. Building on our well-established contributions to understanding the neuroendocrine regulation of reproduction, we plan to conduct two clinical and five preclinical projects using novel research approaches to address the unifying hypothesis that ovulatory dysfunction and related menstrual cycle defects stem from altered neuroendocrine regulation of pulsatile gonadotropin secretion. In year 01, clinical projects using ethnically diverse populations from multiple sites will be launched which longitudinally assess pulsatile gonadotropin secretion in a) infertility patients with unexplained ovulatory dysfunction (Project I); and b) female college students with well-defined eating behaviors (Project II). Extra- hypothalamic influences such as emotional stress, body weight and age will be examined across projects for effects on neurosecretory patterns in normal volunteers and patient groups. Plasma will be saved from both clinical projects for development of new technologies for assay of critically important hormones such as inhibition by the New Assay Development Core in Years 03-05. To study neuroendocrine mechanisms underlying gonadotropin secretory patterns in patients with ovulatory dysfunction, three preclinical projects will utilize a sheep model to test hypotheses not directly approachable in human beings. These studies will determine if a separate FSH-RF exists (Project III), examine control mechanisms for regulating GnRH receptors (Project IV) and define the likely characteristics of secretory events responsible for normal and abnormal peripheral gonadotropin patterns (Project V). In year 02, two new investigator projects will examine neuroelectric patterns associated with defined GnRH release (Project VI) and estradiol modulation of growth hormone action in human granulosa cells (Project VII). In years 04 and 05, ovulation-induction protocols will be tested in the infertility patient groups that mimic physiologic mechanisms defined from both clinical and preclinical studies. Through consortium arrangements, the Center will take advantage of the outstanding resources and experienced investigators of the University of Michigan Medical School, Wayne State University Medical School, Michigan State University and North Carolina State University. The long term goal is to develop improved diagnostic and treatment strategies based on a testable, explanatory model of human ovulatory failure.

Agency
National Institute of Health (NIH)
Institute
Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD)
Type
Specialized Center--Cooperative Agreements (U54)
Project #
5U54HD029184-04
Application #
2201646
Study Section
Special Emphasis Panel (SRC (06))
Project Start
1991-09-30
Project End
1996-08-31
Budget Start
1994-09-01
Budget End
1995-08-31
Support Year
4
Fiscal Year
1994
Total Cost
Indirect Cost
Name
University of Michigan Ann Arbor
Department
Type
Other Domestic Higher Education
DUNS #
791277940
City
Ann Arbor
State
MI
Country
United States
Zip Code
48109
Reame, Nancy E; Lukacs, Jane L; Olton, Pamela et al. (2007) Differential effects of aging on activin A and its binding protein, follistatin, across the menopause transition. Fertil Steril 88:1003-5
Randolph, John F; Ginsburg, Kenneth A; Leach, Richard E et al. (2003) Elevated early follicular gonadotropin levels in women with unexplained infertility do not provide evidence for disordered gonadotropin-releasing hormone secretion as assessed by luteinizing hormone pulse characteristics. Fertil Steril 80:320-7
Padmanabhan, Vasantha; Brown, Morton B; Dahl, Geoffrey E et al. (2003) Neuroendocrine control of follicle-stimulating hormone (FSH) secretion: III. Is there a gonadotropin-releasing hormone-independent component of episodic FSH secretion in ovariectomized and luteal phase ewes? Endocrinology 144:1380-92
Port, C B; Bowen, J M; Keyes, P L et al. (2000) Effects of a 3beta-hydroxysteroid dehydrogenase inhibitor on monocyte-macrophage infiltration into rat corpus luteum and on apoptosis: relationship to the luteolytic action of prolactin. J Reprod Fertil 119:93-9
Jaffe, C A; Ocampo-Lim, B; Guo, W et al. (2000) Growth hormone secretory dynamics over the menstrual cycle. Endocr J 47:549-56
Gardner, D B; Sebastian, J; Miller, W L (2000) Estradiol induces and hyperglycosylates the receptor for ovine gonadotropin-releasing hormone. Endocrinology 141:91-9
Jaffe, C A; Ocampo-Lim, B; Guo, W et al. (1998) Regulatory mechanisms of growth hormone secretion are sexually dimorphic. J Clin Invest 102:153-64
McConnell, D S; Wang, Q; Sluss, P M et al. (1998) A two-site chemiluminescent assay for activin-free follistatin reveals that most follistatin circulating in men and normal cycling women is in an activin-bound state. J Clin Endocrinol Metab 83:851-8
Pincus, S M; Padmanabhan, V; Lemon, W et al. (1998) Follicle-stimulating hormone is secreted more irregularly than luteinizing hormone in both humans and sheep. J Clin Invest 101:1318-24
Van Cleeff, J; Karsch, F J; Padmanabhan, V (1998) Characterization of endocrine events during the periestrous period in sheep after estrous synchronization with controlled internal drug release (CIDR) device. Domest Anim Endocrinol 15:23-34

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