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Biology subjects

Saris, J.

Publications and source records attributed to Saris, J..

2 recordsLinked to original sources

Single-cell characterization of tumor immune landscapes in colorectal cancer humanized mice

Colorectal cancer (CRC) displays inter-patient heterogeneity in molecular tumor features and immune cell composition, which influence therapy response. Humanized immune system (HIS) mouse models offer a promising in vivo model to study human tumor-immune interactions, yet their ability to recapitulate the CRC tumor immune microenvironment at single-cell resolution remains incompletely defined. Here, we performed single-cell RNA sequencing of systemic and tumor-infiltrating human immune cells in HIS mice bearing human CRC tumors and benchmarked these data against reference datasets of healthy human spleens and primary CRC tumors. Major immune lineages and transcriptional programs characteristic of the human systemic immune compartment were identified, and HIS mouse tumors developed complex, human-like immune infiltrates. Tumor-infiltrating immune cells comprised diverse T cell, myeloid, natural killer, and B cell populations, including exhausted T cell states marked by expression of PDCD1, TIGIT, HAVCR2, LAG3, and CTLA4. We further demonstrate CRC consensus molecular subtype-associated spatial differences in immune infiltration. Collectively, our findings support the use of HIS mice as a relevant model for studying CRC immune landscapes and preclinical evaluation of immunomodulatory therapies.

cancer biology↗

Nuclear Calprotectin mediates Epithelial Wound Healing Defects in Crohns Disease related Fistula

Wound healing is critical to homeostasis in particular in tissues exposed to environmental insults such as the skin and the intestine. At the intersection of these tissues a particular form of wounding occurs in the form of perianal fistula, i.e. abnormal tracts connecting the intestine with the skin. Importantly, a natural disparity is found in healing efficiency in perianal fistula depending on the underlying medical condition, which is currently not well understood. Using this disparity, we modelled appropriate and defective wound healing by comparing Crohns disease related fistula (poor healing) and non-IBD/idiopathic fistula (well healing). We show that during wound healing, cytokines TNF and IL6 in conjunction with TGF-{beta} induce differentiation of columnar intestinal mucosa into squamous epithelium with high expression of keratins 5 and 13 and WFDC2. Specifically in poorly healing wounds, cytokines including IL17, IL22 and IFN{gamma} induced expression of S100A8/9 in this intestinal derived tissue. Surprisingly, S100A8/9 was not released but rather functioned as a transcriptional (co)regulator, affecting downstream inflammatory mediators such as C3 and CXCL17. These data identify separate immune pathways contributing to healing in general and deficient healing, allowing for more targeted intervention approaches.

cell biology↗