Publications by authors named "V Johri"

Human immune systems are highly variable, with most variation attributable to non-genetic sources. The gut microbiome crucially shapes the immune system; however, its relationship with the baseline immune states of healthy humans remains incompletely understood. Therefore, we performed multi-omic profiling of 110 healthy participants through the ImmunoMicrobiome study.

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Article Synopsis
  • - This study focused on developing a new imaging-based method called single-cell spatial transcriptomics (iSCST) to analyze archived, formalin-fixed, paraffin-embedded (FFPE) tissue samples from inflammatory bowel disease (IBD) patients, which helps to preserve the spatial context of various cell types within the tissue.
  • - Researchers benchmarked three iSCST platforms by analyzing 57 FFPE mucosal biopsies from IBD patients and healthy controls, allowing for detailed cell analysis and gene expression profiling through a consistent data processing pipeline.
  • - A custom gene panel showed the best performance for detecting and quantifying different cell subsets, revealing significant findings related to inflammation and treatment responses in ulcerative colitis, which could enhance
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Antitumor immunity is driven by CD8 T cells, yet we lack signatures for the exceptional effectors in tumors, amongst the vast majority of CD8 T cells undergoing exhaustion. By leveraging the measurement of a canonical T cell activation protein (CD69) together with its RNA (), we found a larger classifier for TCR stimulation-driven effector states and . This revealed exceptional 'star' effectors-highly functional cells distinguished amidst progenitor and terminally exhausted cells.

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CD8 T cell responses are critical for anti-tumor immunity. While extensively profiled in the tumor microenvironment, recent studies in mice identified responses in lymph nodes (LNs) as essential; however, the role of LNs in human cancer patients remains unknown. We examined CD8 T cells in human head and neck squamous cell carcinomas, regional LNs, and blood using mass cytometry, single-cell genomics, and multiplexed ion beam imaging.

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