International Journal of Molecular Sciences · 2022 · 19 citations · 45 references
Decidualization is essential to rodent and primate pregnancy. Senescence is increased during decidualization. Failure of senescence clearance during decidualization will cause pregnancy abnormality. Caveolin-1 is located in plasmalemmal caveolae and involved in senescence. However, whether caveolin-1 is involved in decidualization remains undefined. In this study, we examined the expression, regulation and function of Caveolin-1 during mouse early pregnancy and under mouse and human in vitro decidualization. From days 1 to 8 of pregnancy, Caveolin-1 signals are mainly located in endothelium and myometrium. Estrogen stimulates Caveolin-1 expression in endothelium. Deficiency of estrogen receptor α significantly promotes Caveolin-1 level in uterine stromal cells. Progesterone upregulates Caveolin-1 expression in luminal epithelium. During mouse in vitro decidualization, Caveolin-1 is significantly increased. However, Caveolin-1 is obviously decreased during human in vitro decidualization. Caveolin-1 overexpression and siRNA suppress and upregulate <i>IGFBP1</i> expression under in vitro decidualization, respectively. Blastocysts-derived tumor necrosis factor α (TNFα) and human Chorionic Gonadotropin (hCG) regulate Caveolin-1 in mouse and human decidual cells, respectively. Caveolin-1 levels are also regulated by high glucose and insulin. In conclusion, a low level of Caveolin-1 should be beneficial for human decidualization.
45
Dennis B. Lubahn, Jeffrey S. Moyer, T S Golding et al. · Proceedings of the National Academy of Sciences · 1993 · 1.8K citations · Full text
Multiple Female Reproductive Failures in Cyclooxygenase 2–Deficient Mice
Hyunjung Jade Lim, Bibhash C. Paria, Sanjoy Das et al. · Cell · 1997 · 1.4K citations
Mechanisms and functions of cellular senescence
Journal of Clinical Investigation · 2018 · 1.1K citations · Full text