2018
DOI: 10.1111/aji.13032
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Decidual stromal cell‐derived PGE2 regulates macrophage responses to microbial threat

Abstract: These data suggest key roles for decidual stromal cells in modulating tissue responses to microbial threat through release of PGE .

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Cited by 30 publications
(37 citation statements)
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“…In in vitro studies, decidual stromal cells exerted a powerful inhibitory effect on NK cell proliferation and DC differentiation (259). Decidual stromal cells can also interact with macrophages in regulating the immune response against pathogens through the release of PGE2 and IL-8 (260,261). Moreover, decidual stromal cells also regulate the interplay between pro-inflammatory cytokines and the reproductive endocrine system that may modulate inflammation-mediated preterm birth (262).…”
Section: Decidua Stroma Cellsmentioning
confidence: 99%
“…In in vitro studies, decidual stromal cells exerted a powerful inhibitory effect on NK cell proliferation and DC differentiation (259). Decidual stromal cells can also interact with macrophages in regulating the immune response against pathogens through the release of PGE2 and IL-8 (260,261). Moreover, decidual stromal cells also regulate the interplay between pro-inflammatory cytokines and the reproductive endocrine system that may modulate inflammation-mediated preterm birth (262).…”
Section: Decidua Stroma Cellsmentioning
confidence: 99%
“…The complexity of these microfluidic environments can vary 69 : from simple microfluidic chambers with one cell type, 75 to multicellular setups that recapitulate parenchymalvascular interactions, 76,77 to entire organ systems. 72,78 Reproductive MPS are of particular interest because of their potential to recapitulate the complex hormonal feedback and feedforward signals between reproductive tissues and organs.…”
Section: Dynamic Microfluidics: Interactions Between Reproductive Tismentioning
confidence: 99%
“…72,78 Reproductive MPS are of particular interest because of their potential to recapitulate the complex hormonal feedback and feedforward signals between reproductive tissues and organs. 70,71 As a result, MPS of different reproductive organs, including the endometrium, [75][76][77] placenta, [79][80][81] oviduct, 82,83 amnion and fetal membrane, [84][85][86] as well as a multiorgan microfluidic framework of the female reproductive tract, 78 have been built.…”
Section: Dynamic Microfluidics: Interactions Between Reproductive Tismentioning
confidence: 99%
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