Publications by authors named "Charlotte De Rosny"

Article Synopsis
  • NLRP3-associated autoinflammatory disease is a collection of genetic disorders caused by mutations that lead to increased activity of the NLRP3 protein, which complicates diagnosis despite effective treatments available.
  • The study explores 34 different NLRP3 mutations, illustrating their functional differences based on how they respond to various signals that activate them, and highlights their link to symptom severity and misdiagnosis.
  • Findings reveal critical areas in the NLRP3 protein that affect its activity and response to treatments, offering new perspectives on the disorder's variability and potential directions for improving diagnosis and therapy.
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NLRP3 controls the secretion of inflammatory cytokines IL-1β/18 and pyroptosis by assembling the inflammasome. Upon coordinated priming and activation stimuli, NLRP3 recruits NEK7 within hetero-oligomers that nucleate ASC and caspase-1 filaments, but the apical molecular mechanisms underlying inflammasome assembly remain elusive. Here we show that NEK7 recruitment to NLRP3 is controlled by the phosphorylation status of NLRP3 S803 located within the interaction surface, in which NLRP3 S803 is phosphorylated upon priming and later dephosphorylated upon activation.

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Limitation of 5-fluorouracil (5-FU) anticancer efficacy is due to IL-1β secretion by myeloid-derived suppressor cells (MDSC), according to a previous pre-clinical report. Release of mature IL-1β is a consequence of 5-FU-mediated NLRP3 activation and subsequent caspase-1 activity in MDSC. IL-1β sustains tumor growth recovery in 5-FU-treated mice.

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Dietary polyphenols, derived from natural products, have received a great interest for their chemopreventive properties against cancer. In this study, we investigated the effects of phenolic extract of the oleaster leaves (PEOL) on tumor growth in mouse model and on cell death in colon cancer cell lines. We assessed the effect of oleaster leaf infusion on HCT116 (human colon cancer cell line) xenograft growth in athymic nude mice.

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