Project description:To illustrate the effects of SDC1 depletion on the tumor immune microenvironment, we performed single-cell RNA sequencing (scRNA-seq) analysis to interrogate phenotypic and functional alterations of immune cells in sdc1-knockdown vs. control tumors.
Project description:Subcutaneous B16-F0 mouse tumors were treated with anti-Ang2 injections and radiation. 5 days after radiation, tumors were collected and dissociated to obtain single cells and analyzed using the Chromium Single-cell 3'RNA-sequencing system
Project description:Intervention type:DRUG. Intervention1:Huaier, Dose form:GRANULES, Route of administration:ORAL, intended dose regimen:20 to 60/day by either bulk or split for 3 months to extended term if necessary. Control intervention1:None.
Primary outcome(s): For mRNA libraries, focus on mRNA studies. Data analysis includes sequencing data processing and basic sequencing data quality control, prediction of new transcripts, differential expression analysis of genes. Gene Ontology (GO) and the KEGG pathway database are used for annotation and enrichment analysis of up-regulated genes and down-regulated genes.
For small RNA libraries, data analysis includes sequencing data process and sequencing data process QC, small RNA distribution across the genome, rRNA, tRNA, alignment with snRNA and snoRNA, construction of known miRNA expression pattern, prediction New miRNA and Study of their secondary structure Based on the expression pattern of miRNA, we perform not only GO / KEGG annotation and enrichment, but also different expression analysis.. Timepoint:RNA sequencing of 240 blood samples of 80 cases and its analysis, scheduled from June 30, 2022..
Project description:Single-cell RNA sequencing (scRNA-seq) is a powerful tool for defining cellular diversity in tumors, but its application towards dissecting mechanisms underlying immune-modulating therapies is scarce. We performed scRNA-seq analyses on immune cells in mouse tumors and identified specific macrophage and conventional dendritic cell (cDC) subsets that are comparable to previously described human myeloid populations. Defining comparable myeloid populations in mouse tumors enabled characterization of their response to myeloid-targeted immunotherapy. Treatment with anti-CSF1R selectively depleted macrophages with an inflammatory signature but spared a macrophage population that in mouse and human expresses pro-angiogenic/tumorigenic genes. Treatment with a CD40 agonist antibody preferentially activated of a cDC1-Ccl22 population and gradually increased Bhlhe40+ Th1-like cells and CD8+ memory T cells. Our comprehensive analysis of key myeloid subsets in human and mouse identifies critical cellular interactions regulating tumor immunity and defines mechanisms underlying myeloid-targeted immunotherapies currently undergoing clinical testing. Raw FASTQ sequences have been uploaded to European Nucleotide Archive (Study #: PRJEB34105 (ERP116961))
Project description:<p>Kupffer cells from both Sed and PEx mice were harvested for Metabolomics. 3 weeks after tumor injection, both mice bearing MC38 tumors were sacrificed. The livers were harvested and processed into single-cell suspensions, and KCs were isolated. </p>
Project description:Given that TREX1-deficient tumor cells showed a growth delay in immunocompetent but not immunodeficient hosts, we characterize the consequences of CT26 tumor-intrinsic TREX1 loss on the host immune system by performing single-cell RNA sequencing on intra-tumoral immune cells sorted from control and TREX1 KO CT26 tumors.
Project description:Single cell RNA sequencing paired with single cell V(D)J sequenction of immune cells infiltrating orthotopic KPC2a tumors, spleen cells, and CD8 T cells enriched from spleen cells on day 14 posttumor. Cohorts received no treatment, agonistic anti-CD40, anti-PD-L1 or the combination of agonistic anti-CD40 + anti-PDL1. Treatments were initated on day 7 posttumor.
Project description:Responses to anti-PD-1 immunotherapy occur but are infrequent in bladder cancer. The specific T cells that mediate tumor rejection are unknown. T cells from human bladder tumors and non-malignant tissue were assessed with single-cell RNA and paired T cell receptor (TCR) sequencing of 30,604 T cells from 7 patients. We find that the states and repertoire of CD8+ T cells are not altered in tumors compared with non-malignant tissues. In contrast, single-cell analysis of CD4+ T cells demonstrates several tumor-specific states, including multiple distinct states of regulatory T cells. Surprisingly, we also find multiple cytotoxic CD4+ T cell states that are clonally expanded. These CD4+ T cells can kill autologous tumor in an MHC class II-dependent fashion and are suppressed by regulatory T cells. Further, a gene signature of cytotoxic CD4+ T cells in tumors predicts a clinical response in 244 metastatic bladder cancer patients treated with anti-PD-L1.