Hematologie

Refractaire coeliakie: immunologische dysregulatie en progressie naar T-cel-lymfoom

Deze narratieve review belicht de pathogenese van refractaire coeliakie (RCD) en de overgang naar enteropathie-geassocieerd T-cel-lymfoom (EATL). RCD wordt onderscheiden in type I met een gunstiger beloop en type II, dat wordt gekenmerkt door klonale expansie van abnormale intra-epitheliale lymfocyten en een hoog risico op maligne transformatie.

Mechanistisch worden IL-15-gedreven overlevingspaden, JAK/STAT-signalering en epigenetische veranderingen geïdentificeerd als drijvende krachten achter mucosale schade en lymfomagenese. Inzicht in deze immunologische en moleculaire verschillen is essentieel voor de vroege herkenning, risicostratificatie en verdere diagnostiek van patiënten met refractaire klachten ondanks een glutenvrij dieet.

Abstract (original)

Refractory celiac disease (RCeD) is a rare but severe complication of celiac disease characterized by persistent or recurrent malabsorptive symptoms and villous atrophy despite a strict gluten-free diet, after exclusion of ongoing gluten exposure, alternative enteropathies, and overt lymphoma. RCeD comprises two biologically distinct entities. RCeD-I is associated with phenotypically normal, polyclonal intraepithelial lymphocytes and generally reflects persistent gluten-independent mucosal inflammation with a relatively favorable prognosis. RCeD-II is defined by expansion of aberrant clonal intraepithelial lymphocytes lacking normal surface T-cell markers and is increasingly regarded as a low-grade intraepithelial lymphoma or in situ lymphomatous disorder, with substantial risk of progression to enteropathy-associated T-cell lymphoma (EATL). Mechanistic studies identify epithelial stress, IL-15-driven IEL survival, stromal and innate immune amplification, and cytotoxic epithelial injury as central drivers of refractory mucosal damage. In RCeD-II, aberrant IELs acquire a hybrid T/NK-like phenotype, persist through anti-apoptotic IL-15/JAK-STAT signaling, and induce enterocyte killing, while molecular alterations involving JAK1, STAT3, JAK/STAT regulators, NF-κB signaling, epigenetic regulators, and chromosomal abnormalities support stepwise lymphomagenesis. Recent single-cell multiomic studies further reveal genetically altered intestinal lymphocyte clones and intratumoral heterogeneity across the RCeD-II-EATL continuum. From a nutritional immunology perspective, RCeD illustrates a setting in which removal of the initiating dietary antigen is insufficient to restore mucosal immune homeostasis. This review summarizes the pathogenic processes that distinguish RCeD-I from RCeD-II and link failed mucosal recovery after gluten withdrawal to persistent immune-mediated epithelial injury, aberrant IEL expansion, clonal evolution, and lymphoma progression.

Dit artikel is een samenvatting van een publicatie in Nutrients. Voor het volledige artikel, alle details en referenties verwijzen wij u naar de oorspronkelijke bron.

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DOI: 10.3390/nu18152479