Single-Cell Topographical Profiling of the Immune Synapse Reveals a Biomechanical Signature of Cytotoxicity

Single-Cell Topographical Analysis Reveals Biomechanical Characteristics of Cytotoxic T Cells Introduction In recent years, research on how the immune system functions in different mechanochemical environments has shown that immune cells dynamically alter their shape and exert forces on their surroundings to sense physical parameters and activate i...

Targeting T cell plasticity in kidney and gut inflammation by pooled single-cell CRISPR screening

Targeting T cell plasticity in kidney and gut inflammation by pooled single-cell CRISPR screening

Targeting T Cell Plasticity to Treat Inflammation in the Kidney and Gut: A Study Using Pooled Single-cell CRISPR Screening Background of the Study This paper, co-authored by Leon U.B. Enk and others, was published in the June 14, 2024, issue of “Science Immunology” under the title “Targeting T cell plasticity in kidney and gut inflammation by poole...

Nucleobase Adducts Bind MR1 and Stimulate MR1-Restricted T Cells

Nucleotide Adduct Binding MR1 and Activation of MR1-Restricted T Cells Academic Background MR1T cells, a recently discovered class of T cells, can recognize antigens presented by MHC class I-related molecule MR1 without microbial infection. These cells exhibit both helper and cytotoxic properties in vitro, but the endogenous antigens they recognize...

Tracking In Situ Checkpoint Inhibitor-Bound Target T Cells in Patients with Checkpoint-Induced Colitis

Tracking In Situ Checkpoint Inhibitor-Bound Target T Cells in Patients with Checkpoint-Induced Colitis

Tracking In Situ Checkpoint Inhibitor-Bound Target T Cells Academic Background Checkpoint inhibitors (CPIs) have revolutionized cancer treatment by blocking immune regulatory signals mediated by checkpoint molecules, restoring T cell-mediated tumor clearance. However, these therapies also lead to a range of immune-related adverse events (IRAEs), wi...