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Titlebook: Ovarian Cell Interactions; Genes to Physiology Aaron J. W. Hsueh,David W. Schomberg Conference proceedings 1993 Springer-Verlag New York, I

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Molecular Regulation of Genes Involved in Ovulation and Luteinizationn process culminates in the extrusion of the oocyte-cumulus complex and is dependent on a specific sequence of biochemical events. These biochemical changes include the rapid but transient increase in a novel, distinct isoform of . (PGS-2) (1–8), . (tPA) (9, 10), and . (PR) (11–13). In contrast, lut
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Dynamics of Human Follicle Developmentabove 10 mm in size were regarded as follicles. During the days before the . (LH) peak, follicle size and serum estradiol levels were strongly correlated. It was also noticed that growth of the follicle was linear, progressing 1.5–3 mm each day (2). Subsequently, numerous studies have focused on fol
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Structural and Functional Studies of Insulin-Like Growth Factor Binding Proteins in the Ovaryment, ending in ovulation and corpus luteum formation, while the remainder succumb to degenerative atresia (1). Although it is well known that the primary regulators of the estrous cycle are the pituitary gonadotropins, FSH and LH, the detailed mechanisms regulating folliculogenesis are not well und
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A Role for Neurotrophic Factors in Ovarian Developmentto those that control the developmental fate of nonneural cells. One of the most striking examples of this regulatory linkage is provided by . (SCF), the gene product of the mouse . (.) locus that is required for the differentiation and proliferation of three entirely different cell lineages: neural
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Proteoglycan and Hyaluronic Acid Synthesis by Granulosa Cells: Regulation by an Oocyte Factor and Govely charged sulfate ester and/or a carboxylate group. With the exception of . (HA), the glycosaminoglycans are covalently linked to a protein to form . (PGs). These macromolecules are synthesized by a large number of different cell types and have important roles in many functional activities of cells (1).
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Toward an Understanding of the Eukaryotic Cell Cycle: A Biochemical Approache been highly conserved throughout evolution. General principles and themes have emerged from several seemingly disparate disciplines using a variety of model systems (frogs, marine invertebrates, yeast, and mammalian tissue culture cells) and approaches (genetic, biochemical, cell biological, and physiological).
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978-1-4613-8338-3Springer-Verlag New York, Inc. 1993
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