Hypoxia: involved but not essential for endometrial breakdown in mouse menstural-like model
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Progesterone withdrawal in a mouse model induced hypoxia and HIF1 activation, with hypoxia enhancing MMP expression, but endometrial breakdown occurred independently of hypoxia.
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Abstract
Menstruation is a specific physiological phenomenon that occurs in women. However, molecular mechanisms underlying this phenomenon are still unclear. According to the classical theory, tissue hypoxia resulting from vasoconstriction of the spiral arteries after progesterone (P4) withdrawal initiates the breakdown of the endometrium at the earliest stage of menstruation. However, this theory has been challenged by previous studies that have questioned the function and even the existence of hypoxia during menstruation. In this study, we not only provide convincing evidence that hypoxia exists during endometrial breakdown, but also further explore the role of hypoxia and hypoxia-inducible factor 1 (HIF1) in this process. Based on mouse menstrual-like model and experiments with human decidual stromal cells, we observed that P4 withdrawal induced both hypoxia and HIF1 activation; however, endometrial breakdown was triggered only by P4 withdrawal. Hypoxia significantly enhanced the mRNA expression of specific matrix metalloproteinases (MMPs) under the conditions of P4 withdrawal. In conclusion, hypoxia is involved but not an essential component of endometrial breakdown during menstruation.
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References (32)
- Acute restraint stress triggers progesterone withdrawal and endometrial breakdown and shedding through corticosterone stimulation in mouse menstrual-like model via openalex
- Expression of hypoxia-inducible factors in human endometrium and suppression of matrix metalloproteinases under hypoxic conditions do not support a major role for hypoxia in regulating tissue breakdown at menstruation via openalex
- Hypoxia and hypoxia inducible factor-1α are required for normal endometrial repair during menstruation via openalex
- Hypoxia is not required for human endometrial breakdown or repair in a xenograft model of menstruation via openalex
- Menstrual physiology: implications for endometrial pathology and beyond via openalex
- W2041139772 via openalex
- W2043912572 via openalex
- W2070882725 via openalex
- W2076812625 via openalex
- W2079145580 via openalex
- W2081520741 via openalex
- W2082934999 via openalex
- W2098154073 via openalex
- W2102073771 via openalex
- W2119660806 via openalex
- W2120071142 via openalex
- W1558429340 via openalex
- W2125363486 via openalex
- W2125772235 via openalex
- W2138802001 via openalex
- W2138840580 via openalex
- W2140992941 via openalex
- W2157492091 via openalex
- W2166877247 via openalex
- W2277433209 via openalex
- W2316744039 via openalex
- W2418754503 via openalex
- W2120090919 via openalex
- W1638318498 via openalex
- W1997223786 via openalex
- W2013257770 via openalex
- W2015857845 via openalex
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