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Titlebook: Cell Death in Reproductive Physiology; Jonathan L. Tilly,Jerome F. Strauss,Martin Tennisw Book 1997 Springer-Verlag New York, Inc. 1997 Em

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Ghulam Jeelani,Tomoyoshi Nozakitightly monitored and regulated balance between the processes of mitosis and apoptosis. Prior to this, studies of cell growth regulation in the ovarian follicle, as in other systems, emphasized the regulation of mitosis. Now, however, with the realization that apotosis is the fundamental cellular me
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Oxidative Stress Regulation in ,nism (1, 2). Apoptotic granulosa cells are observed within atretic follicles that do not ovulate, while the surface epithelial cells undergo apoptosis as part of the process that allows the oocyte to be released from the ovulatory follicle. The hormonal factors that inhibit granulosa cell apoptosis
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Bomba Dam,Arijit Misra,Sohini Banerjeen that can be made from all the tissue and cell culture studies with regard to the differentiated state, it is this: since most, if not all, functions are changed in culture, quantitatively and/or qualitatively, there is little or no ‘constitutive’ regulation in higher organisms; i.e., the different
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Overview of Low-Carbon Developmentand involution of the corpus luteum occurs by processes that are regulated by endocrine, paracrine, and intracrine agents of the pituitary, the uterus (in nonprimates), the ovary, and the immune system. The physiological role of the corpus luteum is the secretion of products necessary for the establ
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Oligosaccharides of Chitin and Chitosan pathways. Among the several existing pathways, the one mediated by the second messenger, cyclic adenosine monophosphate (cAMP), has been clearly linked to cellular growth and differentiation (1–6). Cyclic AMP has a crucial role in the regulation of cell proliferation in the mammalian endocrine syst
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Chetansinh R. Vaghela,Nita H. Shahvent in the ovary however, is the loss of follicles through atresia. Luteal regression depends on the reproductive state of the female and must occur before the next wave of follicular development can proceed. Follicular atresia and luteal regression account for the removal of most steroidogenic cel
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