Area of research
Immunology · Molecular Biology
Research interest
Research interests include Immunotherapy and Immune Responses, vaccines and immunoinformatics approaches, Immune cells in cancer, and Monoclonal and Polyclonal Antibodies Research.
A neoantigen vaccine generates antitumour immunity in renal cell carcinoma
Human lung cancer harbors spatially organized stem-immunity hubs associated with response to immunotherapy
Systematic identification of minor histocompatibility antigens predicts outcomes of allogeneic hematopoietic cell transplantation
High-throughput RNA isoform sequencing using programmed cDNA concatenation
The HLA-II immunopeptidome of SARS-CoV-2
Reversal of viral and epigenetic HLA class I repression in Merkel cell carcinoma
Spatially organized multicellular immune hubs in human colorectal cancer
Personal neoantigen vaccines induce persistent memory T cell responses and epitope spreading in patients with melanoma
Differential pre-malignant programs and microenvironment chart distinct paths to malignancy in human colorectal polyps
Unannotated proteins expand the MHC-I-restricted immunopeptidome in cancer
Profiling SARS-CoV-2 HLA-I peptidome reveals T cell epitopes from out-of-frame ORFs
Optimized Liquid and Gas Phase Fractionation Increases HLA-Peptidome Coverage for Primary Cell and Tissue Samples
ERAP2 Increases the Abundance of a Peptide Submotif Highly Selective for the Birdshot Uveitis-Associated HLA-A29
Cumulus provides cloud-based data analysis for large-scale single-cell and single-nucleus RNA-seq
Disabled Homolog 2 Controls Prometastatic Activity of Tumor-Associated Macrophages
A large peptidome dataset improves HLA class I epitope prediction across most of the human population
Single-cell RNA-seq reveals new types of human blood dendritic cells, monocytes, and progenitors
Mass Spectrometry Profiling of HLA-Associated Peptidomes in Mono-allelic Cells Enables More Accurate Epitope Prediction
Aryl Hydrocarbon Receptor Controls Monocyte Differentiation into Dendritic Cells versus Macrophages
Single-cell RNA-seq reveals new types of human blood dendritic cells, monocytes, and progenitors
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