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      Spatial Metabolomics and the Vulnerable Atherosclerotic Plaque

      1 , 2 , 1 , 3 , 2
      Arteriosclerosis, Thrombosis, and Vascular Biology
      Ovid Technologies (Wolters Kluwer Health)

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          Is Open Access

          Deep Profiling of Mouse Splenic Architecture with CODEX Multiplexed Imaging

          Summary A highly multiplexed cytometric imaging approach, termed co-detection by indexing (CODEX), is used here to create multiplexed datasets of normal and lupus (MRL/lpr) murine spleens. CODEX iteratively visualizes antibody binding events using DNA barcodes, fluorescent dNTP analogs, and an in situ polymerization-based indexing procedure. An algorithmic pipeline for single-cell antigen quantification in tightly packed tissues was developed and used to overlay well-known morphological features with de novo characterization of lymphoid tissue architecture at a single-cell and cellular neighborhood levels. We observed an unexpected, profound impact of the cellular neighborhood on the expression of protein receptors on immune cells. By comparing normal murine spleen to spleens from animals with systemic autoimmune disease (MRL/lpr), extensive and previously uncharacterized splenic cell-interaction dynamics in the healthy versus diseased state was observed. The fidelity of multiplexed spatial cytometry demonstrated here allows for quantitative systemic characterization of tissue architecture in normal and clinically aberrant samples.
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            Multiplex digital spatial profiling of proteins and RNA in fixed tissue

            Digital Spatial Profiling (DSP) is a method for highly multiplex spatial profiling of proteins or RNAs suitable for use on formalin-fixed, paraffin-embedded (FFPE) samples. The approach relies on (1) multiplexed readout of proteins or RNAs using oligonucleotide tags; (2) oligonucleotide tags attached to affinity reagents (antibodies or RNA probes) through a photocleavable (PC) linker; and (3) photocleaving light projected onto the tissue sample to release PC oligonucleotides in any spatial pattern across a region of interest (ROI) covering 1 to ~5,000 cells. DSP is capable of single-cell sensitivity within an ROI using the antibody readout, with RNA detection feasible down to ~600 individual mRNA transcripts. We show spatial profiling of up to 44 proteins and 96 genes (928 RNA probes) in lymphoid, colorectal tumor and autoimmune tissues by using the nCounter system and 1,412 genes (4,998 RNA probes) by using next-generation sequencing (NGS). DSP may be used to profile not only proteins and RNAs in biobanked samples but also immune markers in patient samples, with potential prognostic and predictive potential for clinical decision-making.
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              Optimal Medical Therapy with or without PCI for Stable Coronary Disease

              New England Journal of Medicine, 356(15), 1503-1516
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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                Arteriosclerosis, Thrombosis, and Vascular Biology
                ATVB
                Ovid Technologies (Wolters Kluwer Health)
                1079-5642
                1524-4636
                September 2023
                September 2023
                : 43
                : 9
                : 1636-1638
                Affiliations
                [1 ]Division of Vascular Surgery, Department of Surgery (L.L., N.J.L.), Stanford University School of Medicine, CA.
                [2 ]Stanford Cardiovascular Institute, CA (L.L., N.J.L.).
                [3 ]Division of Cardiovascular Medicine, Department of Medicine (N.J.L.), Stanford University School of Medicine, CA.
                Article
                10.1161/ATVBAHA.123.319739
                10529634
                37534466
                1ae2107b-3932-4566-8739-1ea4455c54de
                © 2023
                History

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