sameAs
Human Peripheral CD4(+) Vδ1(+) γδT Cells Can Develop into αβT CellsTumor-associated MICA is shed by ADAM proteasesProduction and characterization of amplified tumor-derived cRNA libraries to be used as vaccines against metastatic melanomas.Quantitative analysis of mouse urine volatiles: in search of MHC-dependent differencesSelective intracellular retention of virally induced NKG2D ligands by the human cytomegalovirus UL16 glycoproteinTriggering receptor expressed on myeloid cells-1 in neutrophil inflammatory responses: differential regulation of activation and survivalMore than just tumor destruction: immunomodulation by thermal ablation of cancer.Matrilysin (MMP-7) is a novel broadly expressed tumor antigen recognized by antigen-specific T cellsAn open-source computational and data resource to analyze digital maps of immunopeptidomesSingle-chain Fv-based affinity purification of the cellular stress protein gp96 for vaccine development.Evidence for shared recognition of a peptide ligand by a diverse panel of non-obese diabetic mice-derived, islet-specific, diabetogenic T cell clones.Data analysis as a source of variability of the HLA-peptide multimer assay: from manual gating to automated recognition of cell clusters.HLA-DR15-derived self-peptides are involved in increased autologous T cell proliferation in multiple sclerosis.Moderate degradation does not preclude microarray analysis of small amounts of RNA.Glycan side chains on naturally presented MHC class II ligands.Results of the first phase I/II clinical vaccination trial with direct injection of mRNA.Mining the mutanome: developing highly personalized Immunotherapies based on mutational analysis of tumorsOf volatiles and peptides: in search for MHC-dependent olfactory signals in social communication.Immune evasion by Yersinia enterocolitica: differential targeting of dendritic cell subpopulations in vivo.Quantification of HLA class I molecules on renal cell carcinoma using Edman degradationAutophagy promotes MHC class II presentation of peptides from intracellular source proteins.The endoplasmic reticulum-resident heat shock protein Gp96 activates dendritic cells via the Toll-like receptor 2/4 pathway.Identification of naturally processed hepatitis C virus-derived major histocompatibility complex class I ligands.Identification of Chlamydia pneumoniae-derived mouse CD8 epitopes.64Cu antibody-targeting of the T-cell receptor and subsequent internalization enables in vivo tracking of lymphocytes by PET.Identification of vaccinia virus epitope-specific HLA-A*0201-restricted T cells and comparative analysis of smallpox vaccines.Cancer immunoediting by GITR (glucocorticoid-induced TNF-related protein) ligand in humans: NK cell/tumor cell interactions.Proteasomes shape the repertoire of T cells participating in antigen-specific immune responses.Levo- but not dextro-1-methyl tryptophan abrogates the IDO activity of human dendritic cells.Short-term in-vitro expansion improves monitoring and allows affordable generation of virus-specific T-cells against several viruses for a broad clinical applicationCheckpoint blockade cancer immunotherapy targets tumour-specific mutant antigens.Characterization of the ribonuclease activity on the skin surface.Dipeptides catalyze rapid peptide exchange on MHC class I moleculesHLA ligandome analysis identifies the underlying specificities of spontaneous antileukemia immune responses in chronic lymphocytic leukemia (CLL).Intradermal vaccinations with RNA coding for TAA generate CD8+ and CD4+ immune responses and induce clinical benefit in vaccinated patients.Towards patient-specific tumor antigen selection for vaccination.Alternative variants of human HYDIN are novel cancer-associated antigens recognized by adaptive immunity.Elevated serum levels of heat shock protein 70 can be detected after radiofrequency ablationThe Tübingen approach: identification, selection, and validation of tumor-associated HLA peptides for cancer therapy.Application of the pMHC Array to Characterise Tumour Antigen Specific T Cell Populations in Leukaemia Patients at Disease Diagnosis.
P50
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P50
subject
description
Duits bioloog
@nl
German immunologist and cancer researcher
@en
ahli biologi asal Jerman
@id
deutscher Immunologe
@de
professor académico alemão
@pt
tysk professor
@da
tysk professor
@sv
name
Hans-Georg Rammensee
@ace
Hans-Georg Rammensee
@ast
Hans-Georg Rammensee
@ca
Hans-Georg Rammensee
@da
Hans-Georg Rammensee
@de
Hans-Georg Rammensee
@en
Hans-Georg Rammensee
@es
Hans-Georg Rammensee
@fr
Hans-Georg Rammensee
@id
Hans-Georg Rammensee
@it
type
label
Hans-Georg Rammensee
@ace
Hans-Georg Rammensee
@ast
Hans-Georg Rammensee
@ca
Hans-Georg Rammensee
@da
Hans-Georg Rammensee
@de
Hans-Georg Rammensee
@en
Hans-Georg Rammensee
@es
Hans-Georg Rammensee
@fr
Hans-Georg Rammensee
@id
Hans-Georg Rammensee
@it
altLabel
H G Rammensee
@en
H Rammensee
@en
H-G Rammensee
@en
H. G. Rammensee
@en
H. Rammensee
@en
H.-G. Rammensee
@en
HG Rammensee
@en
Rammensee H
@en
Rammensee H-G
@en
Rammensee H. G.
@en
prefLabel
Hans-Georg Rammensee
@ace
Hans-Georg Rammensee
@ast
Hans-Georg Rammensee
@ca
Hans-Georg Rammensee
@da
Hans-Georg Rammensee
@de
Hans-Georg Rammensee
@en
Hans-Georg Rammensee
@es
Hans-Georg Rammensee
@fr
Hans-Georg Rammensee
@id
Hans-Georg Rammensee
@it
P106
P166
P1006
P214
P227
P244
P268
P1006
P1412
P1559
Hans-Georg Rammensee
@de
P166
P19
P21
P213
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