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Disordered IL-33/ST2 Activation in Decidualizing Stromal Cells Prolongs Uterine Receptivity in Women with Recurrent Pregnancy Loss (CROSBI ID 197993)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Salker, Madhuri S. ; Nautiyal, Jaya ; Steel, Jennifer H. ; Webster, Zoe ; Šućurović, Sandra ; Nicou, Marilena ; Singh, Yogesh ; Lucas, Emma S. ; Murakami, Keisuke ; Chan, Yi-Wah et al. Disordered IL-33/ST2 Activation in Decidualizing Stromal Cells Prolongs Uterine Receptivity in Women with Recurrent Pregnancy Loss // PLoS One, 7 (2012), 12; e52252-1-e52252-. doi: 10.1371/journal.pone.0052252

Podaci o odgovornosti

Salker, Madhuri S. ; Nautiyal, Jaya ; Steel, Jennifer H. ; Webster, Zoe ; Šućurović, Sandra ; Nicou, Marilena ; Singh, Yogesh ; Lucas, Emma S. ; Murakami, Keisuke ; Chan, Yi-Wah ; James, Sean ; Abdallah, Yazan ; Christian, Mark ; Croy, B. Anne ; Mulac-Jeričević, Biserka ; Quenby, Siobhan ; Brosens, Jan J.

engleski

Disordered IL-33/ST2 Activation in Decidualizing Stromal Cells Prolongs Uterine Receptivity in Women with Recurrent Pregnancy Loss

Decidualization renders the endometrium transiently receptive to an implanting blastocyst although the underlying mechanisms remain incompletely understood. Here we show that human endometrial stromal cells (HESCs) rapidly release IL-33, a key regulator of innate immune responses, upon decidualization. In parallel, differentiating HESCs upregulate the IL-33 transmembrane receptor ST2L and other pro-inflammatory mediators before mounting a profound anti-inflammatory response that includes downregulation of ST2L and increased expression of the soluble decoy receptor sST2. We demonstrate that HESCs secrete factors permissive of embryo implantation in mice only during the pro-inflammatory phase of the decidual process. IL-33 knockdown in undifferentiated HESCs was sufficient to abrogate this pro-inflammatory decidual response. Further, sequential activation of the IL-33/ST2L/sST2 axis was disordered in decidualizing HESCs from women with recurrent pregnancy loss. Signals from these cultures prolonged the implantation window but also caused subsequent pregnancy failure in mice. Thus, Il-33/ST2 activation in HESCS drives an autoinflammatory response that controls the temporal expression of receptivity genes. Failure to constrain this response predisposes to miscarriage by allowing out-of-phase implantation in an unsupportive uterine environment.

human pregnancy ; decidualization ; IL-33/ST2maternal-fetal interface ; soluble ST2 ; endometrial receptivity ; embryo implantation ; indian hedgehog ; murine uterus ; cross-talk ; progesterone ; receptor ; interleukin-33

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Podaci o izdanju

7 (12)

2012.

e52252-1-e52252-

objavljeno

1932-6203

10.1371/journal.pone.0052252

Povezanost rada

Temeljne medicinske znanosti

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