Proceedings of the National Academy of Sciences · 1997 · 97 citations · 35 references
ImmunologyGynecologyParacrine StimulationFemale Reproductive FunctionDual BlockMenstrual CycleOvarian AgingOvarian CancerReproductive EndocrinologyInflammationFemale InfertilityImplantation (Embryology)Mmp-1 ExpressionMatrix BiologyPublic HealthMyometrial ContractilitySteroid MetabolismUterine FibroidsOvarian SteroidsEndocrinologyCell BiologyOvarian HormoneInterstitial CollagenaseUterine ReceptivityMenopauseOvarian PhysiologyMedicineWomen's HealthExtracellular Matrix
In the cycling human endometrium, the expression of interstitial collagenase (MMP-1) and of several related matrix metalloproteinases (MMPs) follows the late-secretory fall in sex steroid plasma concentrations and is thought to be a critical step leading to menstruation. The rapid and extensive lysis of interstitial matrix that precedes menstrual shedding requires a strict control of these proteinases. However, the mechanism by which ovarian steroids regulate endometrial MMPs remains unclear. We report here that, in the absence of ovarian steroids, MMP-1 expression in endometrial fibroblasts is markedly stimulated by medium conditioned by endometrial epithelial cells. This stimulation can be prevented by antibodies directed against interleukin 1α (IL-1α) but not against several other cytokines. Ovarian steroids inhibit the release of IL-1α and repress MMP-1 production by IL-1α-stimulated fibroblasts. In short-term cultures of endometrial explants obtained throughout the menstrual cycle, the release of both IL-1α and MMP-1 is essentially limited to the perimenstrual phase. We conclude that epithelium-derived IL-1α is the key paracrine inducer of MMP-1 in endometrial fibroblasts. However, MMP-1 production in the human endometrium is ultimately blocked by ovarian steroids, which act both upstream and downstream of IL-1α, thereby exerting an effective control via a “double-block” mechanism.
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Biologic basis for interleukin-1 in disease
CA Dinarello · Blood · 1996 · 4.3K citations · Full text
Extension of the Life-Span of Human Endothelial Cells by an Interleukin-1αAntisense Oligomer
Jeanette A.M. Maier, Pamela J. Voulalas, David Roeder et al. · Science · 1990 · 398 citations
William H. Rodgers, Lynn M. Matrisian, Linda C. Giudice et al. · Journal of Clinical Investigation · 1994 · 385 citations · Full text
Endometriosis, Matrix Metalloproteinase Expression, Gynecology +19