Project description:Resistance to immune checkpoint inhibitors (ICI) in cancer patients is not fully understood and predictive biomarkers are lacking. MELANFα (NCT03348891) is an open-label, prospective, multicenter cohort of 60 patients with advanced melanoma receiving ICI (bitherapy: ipilimumab + nivolumab; monotherapy: pembrolizumab or nivolumab). In this study we collected blood from patients taken at baseline (week0) and 6 weeks after treatment initiation (week6), isolated peripheral blood monuclear cells and assessed the impact of treatment systemic immune responses to identify potential markers of response/resistance.
Project description:Successful pancreatic ductal adenocarcinoma (PDAC) immunotherapy necessitates optimization and maintenance of activated effector T cells (Teffs). We prospectively collected and applied multi-omics analysis to paired, pre- and post-treatment PDAC specimens collected in a platform neoadjuvant study of GVAX vaccine +/- nivolumab (anti-PD-1) to uncover sensitivity and resistance mechanisms. We show that GVAX-induced tertiary lymphoid aggregates become immune-regulatory sites in response to GVAX+nivolumab. Higher densities of tumor-associated neutrophils (TANs) following GVAX+nivolumab portend poorer overall survival (OS). Increased T cells expressing CD137 associated with cytotoxic Teff signatures and correlated with increased OS. Bulk and single-cell RNA-sequencing found that nivolumab alters CD4+ T cell chemotaxis signaling in association with CD11b+ neutrophil degranulation, and CD8+ T cell expression of CD137 required for optimal T cell activation. These findings provide new insights into PD-1-regulated immune pathways in PDAC that should inform more effective therapeutic combinations that include TAN regulators and T cell activators.
Project description:Single Gland Whole-exome sequencing: building on our prior description of multi-region WES of colorectal tumors and targeted single gland sequencing (E-MTAB-2247), we performed WES of multiple single glands from different sides (right: A and left: B) of two tumors in this study (tumor O and U) on the illumina platform using the Agilent SureSelect 2.0 or illumina Nextera Rapid Capture Exome kit (SureSelect or NRCE, as indicated in the naming of fastq files). Colorectal Cancer Xenograft Whole-exome sequencing: The HCT116 and LoVo Mismatch-Repair-deficient colorectal adenocarcinoma cell lines were obtained from the ATCC and cultured under standard conditions. For both cell lines, a single âfoundingâ cell was cloned and expanded in vitro to ~6M cells. Two aliquots of ~1M cells were subcutaneously injected into opposite flanks (right and left) of a nude mouse and tumors allowed to reach a size of ~1B cells (1cm3) before the animal was sacrificed. Tumor tissue was collected separately from the right and left lesions and DNA was extracted for WES using the illumina TruSeq Exome kit or Nextera Rapid Capture Exome expanded Kits (Truseq or NRCEe), as was DNA from the first passage population (a polyclonal tissue culture for HCT116 and a polyclonal xenograft sample for LoVo), which were employed as a control to study mutation accumulation in culture and post xenotransplantation.
Project description:RNA extracted from the post 72 hour cultured tumor samples from 31 patients with head and neck squamous cell carcinoma treated Nivolumab and Nivolumab+Ipilimumab was analyzed on the nCounter system using the Pan cancer IO360 panel.
Project description:Glioblastoma (GBM) is a highly heterogeneous malignant brain tumour. We took multi-region spatially separated samples from tumours and isolated invasive GBM cells using FACS based on 5ALA of near normal brain parenchyma. RNAseq was then performed to compare expression profiles for tumour cells from different microenvironment.