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1.
Front Immunol ; 15: 1401751, 2024.
Article in English | MEDLINE | ID: mdl-39119341

ABSTRACT

Introduction: Enteric glial cells are important players in the control of motility, intestinal barrier integrity and inflammation. During inflammation, they switch into a reactive phenotype enabling them to release inflammatory mediators, thereby shaping the inflammatory environment. While a plethora of well-established in vivo models exist, cell culture models necessary to decipher the mechanistic pathways of enteric glial reactivity are less well standardized. In particular, the composition of extracellular matrices (ECM) can massively affect the experimental outcome. Considering the growing number of studies involving primary enteric glial cells, a better understanding of their homeostatic and inflammatory in vitro culture conditions is needed. Methods: We examined the impact of different ECMs on enteric glial culture purity, network morphology and immune responsiveness. Therefore, we used immunofluorescence and brightfield microscopy, as well as 3' bulk mRNA sequencing. Additionally, we compared cultured cells with in vivo enteric glial transcriptomes isolated from Sox10iCreERT2Rpl22HA/+ mice. Results: We identified Matrigel and laminin as superior over other coatings, including poly-L-ornithine, different lysines, collagens, and fibronectin, gaining the highest enteric glial purity and most extended glial networks expressing connexin-43 hemichannels allowing intercellular communication. Transcriptional analysis revealed strong similarities between enteric glia on Matrigel and laminin with enrichment of gene sets supporting neuronal differentiation, while cells on poly-L-ornithine showed enrichment related to cell proliferation. Comparing cultured and in vivo enteric glial transcriptomes revealed a 50% overlap independent of the used coating substrates. Inflammatory activation of enteric glia by IL-1ß treatment showed distinct coating-dependent gene expression signatures, with an enrichment of genes related to myeloid and epithelial cell differentiation on Matrigel and laminin coatings, while poly-L-ornithine induced more gene sets related to lymphocyte differentiation. Discussion: Together, changes in morphology, differentiation and immune activation of primary enteric glial cells proved a strong effect of the ECM. We identified Matrigel and laminin as pre-eminent substrates for murine enteric glial cultures. These new insights will help to standardize and improve enteric glial culture quality and reproducibility between in vitro studies in the future, allowing a better comparison of their functional role in enteric neuroinflammation.


Subject(s)
Extracellular Matrix , Homeostasis , Laminin , Neuroglia , Animals , Extracellular Matrix/metabolism , Neuroglia/metabolism , Neuroglia/immunology , Mice , Laminin/metabolism , Enteric Nervous System/metabolism , Enteric Nervous System/immunology , Cells, Cultured , Drug Combinations , Collagen/metabolism , Mice, Inbred C57BL , Proteoglycans/metabolism
2.
Nat Commun ; 15(1): 6079, 2024 Jul 19.
Article in English | MEDLINE | ID: mdl-39030280

ABSTRACT

Enteric glia have been recently recognized as key components of the colonic tumor microenvironment indicating their potential role in colorectal cancer pathogenesis. Although enteric glia modulate immune responses in other intestinal diseases, their interaction with the colorectal cancer immune cell compartment remains unclear. Through a combination of single-cell and bulk RNA-sequencing, both in murine models and patients, here we find that enteric glia acquire an immunomodulatory phenotype by bi-directional communication with tumor-infiltrating monocytes. The latter direct a reactive enteric glial cell phenotypic and functional switch via glial IL-1R signaling. In turn, tumor glia promote monocyte differentiation towards pro-tumorigenic SPP1+ tumor-associated macrophages by IL-6 release. Enteric glia cell abundancy correlates with worse disease outcomes in preclinical models and colorectal cancer patients. Thereby, our study reveals a neuroimmune interaction between enteric glia and tumor-associated macrophages in the colorectal tumor microenvironment, providing insights into colorectal cancer pathogenesis.


Subject(s)
Colorectal Neoplasms , Neuroglia , Signal Transduction , Tumor Microenvironment , Animals , Colorectal Neoplasms/pathology , Colorectal Neoplasms/immunology , Colorectal Neoplasms/metabolism , Colorectal Neoplasms/genetics , Humans , Tumor Microenvironment/immunology , Neuroglia/metabolism , Mice , Macrophages/metabolism , Macrophages/immunology , Receptors, Interleukin-1/metabolism , Receptors, Interleukin-1/genetics , Tumor-Associated Macrophages/immunology , Tumor-Associated Macrophages/metabolism , Interleukin-6/metabolism , Monocytes/metabolism , Monocytes/immunology , Mice, Inbred C57BL , Cell Communication , Cell Differentiation , Cell Line, Tumor , Female
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