Molecular Reproduction and Development · 2000 · 43 citations · 48 references
OocyteAtresia ProgressionApoptosisImmunologyCell DeathPathologyMultiparametric StudyCytoskeletonDermatologyEmbryologyOxidative StressAcid PhosphataseAutophagyEwe Antral FolliclesAtresia StagesCell DivisionHistopathologyDevelopmental BiologyMedicineFollicular Fluid
The differential quantitative participation of apoptosis and necrosis in ewe antral follicles of two different sizes, separated in four stages of atresia using macroscopic, histologic, and esteroid quantification methods was assessed. Annexin V binding and propidium iodide (PI) uptake was used to detect healthy live cells (Annexin V negative/PI negative), early apoptotic cells (Annexin V+/PI-), and necrotic or late apoptotic cells (PI+). Additionally we used internucleosomal DNA fragmentation as a quantitative estimate of apoptosis. Presence and distribution of lysosomal enzymes in follicular fluid and granulosa cells was used as a measure of necrotic cell death. DNA flow cytometry and gel electrophoresis were positively correlated with the progression of atresia, small atretic follicles tend to have higher percentages of internucleosomal cleaved DNA than follicles >6 mm. Annexin/PI binding also indicates that apoptosis and necrosis increase with atresia progression, generally apoptosis outweighs necrosis in small follicles. Acid phosphatase and glucosaminidase in follicular fluid of 3-6 mm follicles showed no significant modifications between healthy and initially atretic follicles, and only a small, but significant increase in activity in advancedly atretic follicles. On the contrary, lysosomal enzyme activity in follicles >6 mm showed positive correlation between atresia stages and the activities of acid phosphatase and glucosaminidase in follicular fluid. A similar size-differential behavior was found in free or membrane-bound lysosomal enzyme activity of granulosa cells. Necrosis, but principally apoptosis, were present during all stages of follicular maturation indicating that growth and maturation of ovarian follicles involves a continuous renewal of granulosa cells, regulated by apoptosis. Mechanisms regulating this equilibrium may participate in the final destiny, whether ovulation or atresia of ovarian follicles.
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I. Vermes, C. Haanen, H M Steffens-Nakken et al. · Journal of Immunological Methods · 1995 · 5.3K citations · Full text
Induction of Apoptotic Program in Cell-Free Extracts: Requirement for dATP and Cytochrome c
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Apoptosis, oncosis, and necrosis. An overview of cell death.
Guido Majno, I Joris · PubMed · 1995 · 3.3K citations · Full text