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Kaboub, K.

Publications and source records attributed to Kaboub, K..

2 recordsLinked to original sources

Discordant effects of ex-vivo JAK inhibition on inflammatory responses in colonic compared to ileal mucosa

Background & aimsJanus kinase (JAK) inhibitors modulating JAK-STAT (signal transducers and activators of transcription) signaling pathway, are used for the treatment of patients with inflammatory bowel diseases (IBD). We aimed to identify the molecular effects of JAK inhibition in the human intestinal mucosa, considering the IBD location and phenotype. MethodsColonic and ileal explants from patients with ulcerative colitis (UC), Crohns disease (CD), or non-IBD controls (NC) were treated ex-vivo with the JAK inhibitor, tofacitinib. Phosphorylated STAT (p-STAT) levels were assessed by Western blot and Immunofluorescence. Inflammatory genes expression was assessed with Nanostring nCounter system. Human intestinal organoids were used to assess JAK inhibitors effects on p-STATs and iNOS expression. ResultsExplants were collected from 68 patients (NC=28; UC=20; CD=20). JAK inhibition reduced p-STAT1/3/5 expression in all explants. While p-STAT inhibition rates varied among patients (10%-88%), higher inhibition rates were observed in colonic compared to ileal explants. Significant alterations in 120 of 255 inflammatory genes were observed in colonic explants, while only 30 were observed in ileal NC explants. In colonic explants from UC, significant alterations were observed in 5 genes, including STAT1 and NOS2. Various JAK inhibitors reduced IFN-{gamma}-induced increase in p-STAT1 and iNOS expression in organoids. ConclusionsA site-specific anti-inflammatory effect of JAK inhibition by tofacitinib was noticed, whereby the colon was more robustly affected than the ileum. Ex-vivo response to tofacitinib is individual. JAK inhibition may attenuate inflammation by decreasing iNOS expression. Ex-vivo mucosal platforms may be a valuable resource for studying drug impact and evaluating personalized treatment effects.

immunology↗

Human intestinal epithelial cells can internalize luminal fungi via LC3-associated phagocytosis

Intestinal epithelial cells (IECs) are the first to encounter luminal microorganisms and actively participate in intestinal immunity. We reported that IECs express the {beta}-glucan receptor Dectin-1, and respond to commensal fungi and {beta}-glucans. In phagocytes, Dectin-1 mediates LC3 associated phagocytosis (LAP) utilizing autophagy components to process extracellular cargo. Dectin-1 can mediate phagocytosis of {beta}-glucan-containing particles by non-phagocytic cells. We aimed to determine whether human IECs phagocytose {beta}-glucan-containing fungal particles via LAP. Zymosan ({beta}-glucan particle) and Heat-killed and UV inactivated C. albicans were phagocytosed by monolayers of human colonic (n=18) and ileal (n=4) organoids and IEC lines. LAP was identified by LC3 and Rubicon recruitment to phagosomes and lysosomal processing of internalized particles was demonstrated by co-localization with lysosomal dyes and LAMP2. Phagocytosis was significantly diminished by blockade of Dectin-1, actin polymerization and NAPDH oxidases. Our results show that human IECs sense luminal fungal particles and internalize them via LAP. This novel mechanism of luminal sampling suggests that IECs may contribute to the maintenance of mucosal tolerance towards commensal fungi.

immunology↗