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Aure, M. H.

Publications and source records attributed to Aure, M. H..

2 recordsLinked to original sources

Exhausted-like effector CD8 T cells mediate immune-stromal interactions at mucosal Chronic Graft-versus-Host Disease onset

Chronic graft-versus-host disease (cGVHD) frequently follows allogeneic hematopoietic stem cell transplantation and impacts the mucosa. This atlas study highlights the role of exhausted-like effector CD8+ T cells (TEXEF) in oral mucosal cGVHD pathogenesis. Biopsies from the oral mucosa were collected at oral cGVHD onset or at six months post-transplant and analyzed using single-cell RNA sequencing and other modalities. At cGVHD onset, in addition to changes in the myeloid compartment, two distinct populations of CD8+T cells with a TEXEF phenotype were prevalent: an inflammatory CD8T cell cluster (CD8T_4) expressing CCL4, CD69, and TNFSF9, and an exhausted CD8T cell cluster (CD8T_5) characterized by the expression of CXCL13, HIF1A, and HLA-DRA, both correlated with clinical disease severity. Pseudo-time analysis suggests a transition from the inflammatory pre-exhausted CD8T_4 cluster to the cytolytic, terminally exhausted CD8T_5 cluster. The CXCL9-CXCR3 interactions among CD8+ T cells, fibroblasts and myeloid cells are implicated in tissue damage. Onset of cGVHD despite frequent oral mucosal FOXP3 regulatory CD4T cells suggests potential impaired Treg function or CD8+T cell dysfunction. These findings highlight TEXEF cells as key contributors to oral cGVHD pathology and potential therapeutic targets for mitigating sustained tissue injury in cGVHD.

immunology↗

Ascl3+ ionocytes in murine salivary gland ducts are innervated sensory cells that display unique calcium signaling characteristics and contribute to the composition of saliva

Ionocytes are distinct epithelial sensory cells scattered throughout the ductal system of the salivary glands. These cells are distinguished by their unusual morphology, as well as by a specific transcriptomic signature that includes expression of the Foxi1 and Ascl3 transcription factors. Currently, little is known about the biology or function of ionocytes in the salivary glands. To facilitate characterization of these cells, we generated an inducible Cre mouse allele driven by the Ascl3 promoter. This strain was crossed with a reporter to fluorescently label Ascl3+ ionocytes, highlighting that they are the site of enriched CFTR expression in the salivary glands, and demonstrating the proximity of these cells to neurons. Conditional Cre-mediated cell ablation, using diphtheria toxin (DTA), removed Ascl3+ ionocytes from the salivary glands and resulted in an altered pH of total saliva, supporting a function for ionocytes in transepithelial ion flow. Finally, Cre-mediated expression of the calcium indicator GCaMP6f revealed that Ascl3+ ionocytes exhibit unique properties not observed in acinar or surrounding duct cells, including elevated basal [Ca2+]I, spontaneous blinking in the absence of stimulation, and a rapid loss of [Ca2+]I following nerve stimulation. These unique properties distinguish ionocytes as a specialized subset of salivary gland duct cells.

physiology↗