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Tull, S.

Publications and source records attributed to Tull, S..

3 recordsLinked to original sources

Single-cell analysis of an adult IBD INCEPTION cohort reveals Galectin-linked disease mechanisms

Background and AimsThe molecular pathogenesis of Inflammatory Bowel Disease (IBD) remains unclear. We aimed to establish a high-resolution immune landscape of treatment-naive IBD to identify central drivers of disease onset and early pathogenic signalling. MethodsWe generated a single-cell atlas using intestinal biopsies from a large adult inception cohort of 137 individuals, including treatment-naive Crohns disease (CD), ulcerative colitis (UC), and symptomatic non-IBD controls. We integrated scRNA-seq (1 million cells) with co-varying neighbourhood analysis (CNA) and unbiased tensor decomposition of cell-cell communication (CCC) networks. Findings were validated in vitro macrophage stimulation model and using serum from patients. ResultsThe inception cohort exhibited significantly more homogenous compartmental diversity compared to benchmark reference studies (p < 0.001). Inflammation in both CD and UC was characterized by a marked expansion of inflammatory monocytes. Unbiased CCC analysis identified a dominant disease-specific signalling module centred on the Galectin family (LGALS1 and LGALS9). Galectin-9 expression was specifically enriched in inflammatory monocytes, which exhibited distinct transcriptional programs linked to antigen presentation and microbial sensing. In vitro, Galectin-9 acted as a potent stimulus, driving macrophages toward a pro-inflammatory phenotype. Clinically, serum Galectin-9 levels were significantly elevated in IBD patients and correlated with systemic inflammatory markers and treatment response. ConclusionsOur data identify a galectin-monocyte signalling axis as a unifying inflammatory hallmark of early IBD. Galectin-9 serves as both a functional driver of mucosal inflammation and a dynamic biomarker, offering new opportunities for therapeutic targeting and disease monitoring from diagnosis.

immunology↗

Who am I? Optimal Tissue for Germline Genetic Testing Post-Stem Cell Transplantation

With advancements in genetic diagnostics and genotype-based therapeutics, the demand for germline genetic testing in post-hematopoietic stem cell transplantation patients is increasing. Due to genetic chimerism, blood samples can no longer be used for germline testing after transplantation. This study aims to identify the most suitable tissue for germline analysis following stem cell transplantation by investigating alternative tissue sources. Buccal swab, eyebrow hair, and nail samples were analyzed for donor-derived DNA using next-generation sequencing and short tandem repeat analysis, with linear regression used for evaluation. Factors such as HLA match, transplantation type, sex, and time after transplantation were also evaluated for their effect on donor-derived DNA share. Buccal swab and nail samples exhibited 25% and 22% higher proportions of donor-derived DNA compared to eyebrow hair follicles, respectively. The median donor DNA share in eyebrow hair follicles was 1% for NGS and 3% for STR. Factors such as matched related donors, higher HLA match, different donor-recipient sex, and longer time post-transplantation correlated with lower donor DNA shares. Eyebrow hair follicles are a promising tissue for accurate germline genetic testing in post-SCT patients. Patient characteristics like donor relatedness, HLA match, sex match, and time after transplantation should be considered.

genetics↗

PEPITEM Tripeptides and Peptidomimetics: Next-Generation Modulators of Inflammation in Immune-Mediated Conditions

PEPITEM is an immune-modulatory peptide that effectively regulates inflammation and mitigates immune-mediated inflammatory diseases (IMIDs). Here we identify two independently active tripeptide pharmacophores within PEPITEM and engineered peptidomimetics with enhanced pharmacodynamic properties. These peptidomimetics regulate T-cell trafficking in vitro and reduce T-cell, neutrophil and macrophage numbers in the inflamed peritoneal cavity in vivo. In a plaque psoriasis model, topical administration reduced disease severity, inflammation and immune cell infiltration, while regulating cytokine release in macrophages and fibroblasts, as well as keratinocyte proliferation. Th1 and Th17 cell abundance, along with their cytokines, was reduced in secondary lymphoid organs. This expanded functional repertoire of PEPITEM and its derivatives provides innovative tools for countering immune and stromal cell-induced pathology in IMIDs, paving the way for a novel class of anti-inflammatory agents.

immunology↗