Proceedings of the National Academy of Sciences · 1996 · 158 citations · 27 references
FertilityEndometriosisPathologyGynecologyFemale Reproductive SystemMenstrual CycleOvarian CancerMenstrual BreakdownMatrix MetalloproteinasesPublic HealthMenstrual HealthSteroid MetabolismReproductive HormoneInfertilityEndocrinologyOvarian HormoneAccompanying BleedingHuman EndometriumUterine ReceptivityPhysiologyOvarian PhysiologyMedicineWomen's Health
The mechanisms underlying the menstrual lysis leading to shedding of the human endometrium and its accompanying bleeding are still largely unknown. In particular, whether breakdown of the endometrial fibrillar extra-cellular matrix that precedes bleeding depends on aspartic-, cysteine-, serine-, or metalloproteinases remains unclear. In the present study, menstrual regression of the human endometrium was mimicked in organ culture. Whereas sex steroids could preserve tissue integrity only in nonperimenstrual explants, matrix breakdown upon sex steroid deprivation was completely and reversibly inhibited at all stages of the menstrual cycle by specific inhibitors of matrix metalloproteinases, but not by inhibitors of the other classes of proteinases. Matrix metalloproteinases are thus identified as the key class of proteinases involved in the initiation of menstruation.
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A matrix metalloproteinase expressed on the surface of invasive tumour cells
Hiroshi Sato, Takahisa Takino, Yasunori Okada et al. · Nature · 1994 · 2.6K citations
Medicine, Metalloprotein, Pathology +11
Mechanism Of Cell Surface Activation Of 72-kDa Type IV Collagenase
Alex Y. Strongin, Ivan E. Collier, G. A. Bannikov et al. · Journal of Biological Chemistry · 1995 · 1.6K citations · Full text
Processing of tumour necrosis factor-α precursor by metalloproteinases
A. J. H. Gearing, Paul Beckett, Marika Christodoulou et al. · Nature · 1994 · 1.2K citations