#tumorImmunology
Technische Universitat Munchen (@tum.de) is hiring:
PhD position in Tumor Immunology

#phd #medicine #tumorimmunology
October 2, 2026 at 3:52 PM
🔬 Meet Associate Prof. Allan Stensballe, Chair for S1: Immune System, Tumor Immunology and Autoimmune Disease at #ECB2027!
📅 10–12 May 2027 | Online
📣 Abstract deadline: 15 Jan 2027
📝 FREE registration: 5 May 2027
🔗 sciforum.net/event/ECB2027 #TumorImmunology
September 30, 2026 at 12:56 AM
TNFR1 expression on cancer cells mediates immune escape and an immunosuppressive microenvironment. New study from Elixabet Bolaños, Ignacio Melero @unav.edu and colleagues:
rupress.org/jem/article/...

#TumorImmunology
September 15, 2026 at 1:45 PM
Sharing a new data visualization exploring the phenotypic reprogramming of exhausted CD8+ T cells following PD-1 axis blockade.

#TcellExhaustion #CheckpointBlockade #TumorImmunology #CD8Tcells #AntiPD1 #Tpex #ImmuneCheckpoint #CancerImmunotherapy
September 12, 2026 at 5:18 PM
How can #Cancer #Vaccines generate stronger immunity?

Protein condensate nanoadjuvants enhance antigen cross-presentation and activate DCs via mtDNA leakage-driven cGAS–STING signalling, promoting CD8⁺ T-cell antitumour responses.

#STTT #OpenAccess: doi.org/10.1038/s413...
#TumorImmunology
September 9, 2026 at 1:02 PM
In @jem.org, Bolaños, Melero et al. @unav.edu show that tumor necrosis factor sensing by cancer cells through TNFR1 sets in motion forms of immunosuppressive protumor #inflammation that mediate escape from immune surveillance against tumors. rupress.org/jem/article/...

#TumorImmunology
September 8, 2026 at 4:45 PM
Bolaños, Melero et al. @unav.edu show that tumor necrosis factor sensing by cancer cells through TNFR1 sets in motion forms of immunosuppressive protumor #inflammation that mediate escape from immune surveillance against tumors. rupress.org/jem/article/...

#TumorImmunology
September 8, 2026 at 4:00 PM
Philipps-Universität Marburg is hiring:
Research Assistant (Postdoc)

#postdoc #medicine #tumorimmunology
September 2, 2026 at 8:23 PM
Tumor-reactive LAG3⁺CD8⁺ T cells diverge into terminally exhausted cells and long-lived memory T cells. New study from Vaishali Aggarwal, Yangxi Sun, Chang Liu, Dario Vignali @vignalilab.bsky.social @pitt-immunology.bsky.social and colleagues:
rupress.org/jem/article/...

#TumorImmunology
August 25, 2026 at 2:15 PM
CD1d remodels the tumor-infiltrating myeloid populations controlling anti-tumor immunity. New study from Lauren Evans, Maria Conde Poole, Patricia Barral @barrallab.bsky.social @kingscollegelondon.bsky.social @crick.ac.uk and colleagues:
rupress.org/jem/article/...

#BreastCancer #TumorImmunology
August 20, 2026 at 1:45 PM
Vaishali Aggarwal, Yangxi Sun, Chang Liu, Dario Vignali et al. @pitt-immunology.bsky.social identify two distinct exhausted LAG3⁺CD8⁺ T cell subpopulations in tumors using a lineage-tracing model. rupress.org/jem/article/...

#TumorImmunology
August 18, 2026 at 4:00 PM
In @jem.org, Vaishali Aggarwal, Yangxi Sun, Chang Liu, Dario Vignali et al. @pitt-immunology.bsky.social identify two distinct exhausted LAG3⁺CD8⁺ T cell subpopulations in tumors using a lineage-tracing model. rupress.org/jem/article/...

#TumorImmunology
August 18, 2026 at 4:00 PM
'(...) tumors from patients who initially respond but later acquire resistance exhibit heightened cancer cell-dependent IFN signaling at baseline, accompanied by MYC downregulation, dedifferentiation, & impaired major histocompatibility complex (MHC) class II induction'
#Immunology #TumorImmunology
Chronic interferon signaling at baseline is associated with acquired resistance to immunotherapy in metastatic melanoma
Egan et al. analyze pre-treatment melanoma samples from first-line immune checkpoint blockade patients. Using a tumor purity-informed model to deconvolve cancer cell signals from bulk RNA-seq, they sh...
www.cell.com
August 17, 2026 at 12:04 AM
🎉 Our new paper is out in Cell Death & Disease!
We show that CD44 in pancreatic CAFs links ECM remodeling to immunosuppression.
Loss of CD44 reduces fibrosis and Tregs, limits CAF-driven immunosuppression and improves T-cell killing.
www.nature.com/articles/s41...
#PDAC #CD44 #CAFs #TumorImmunology
Loss of CD44 re-educates pancreatic cancer-associated fibroblasts modulating their fibrotic and immunosuppressive functions - Cell Death & Disease
Cell Death & Disease - Loss of CD44 re-educates pancreatic cancer-associated fibroblasts modulating their fibrotic and immunosuppressive functions
www.nature.com
August 16, 2026 at 9:18 AM
New Visualization: PD-1 Surface Expression Across CD8+ TIL Differentiation States

I am sharing a violin-style visualization intended to communicate a well-established mechanistic trend in tumor immunology.

#TumorImmunology #TCellExhaustion #DataVisualization #PD1 #FlowCytometry
August 15, 2026 at 5:02 PM
Sharing a visualization from a conceptual synthesis of the CD8+ T cell terminal exhaustion (Tex) program in tumor-infiltrating lymphocytes.

Figure: "Transcriptional and Epigenetic Architecture of CD8+ T Cell Exhaustion"

#TcellExhaustion #TumorImmunology #CD8Tcells #Epigenetics
August 1, 2026 at 5:00 PM
Why blocking lymphangiogenesis isn't always the right strategy for cancer therapy?
🎙️Listen to this episode of EXO Chats: www.sciexplor.com/exo/podcast/2
📖Read the article: www.sciexplor.com/exo/articles...
#CancerImmunotherapy #LymphaticBiology #TumorImmunology #CancerResearch #Immunotherapy
July 31, 2026 at 1:50 AM
Engineered NK cells combining PD-L1 and HLA-E targeting with endogenous IL15 production overcome multiple #Immunosuppressive pathways, strengthening persistence and antitumor activity across diverse tumor models.

#STTT #OpenAccess: doi.org/10.1038/s413...
#TumorImmunology #Oncology #CancerResearch
July 15, 2026 at 4:01 PM
#T-cells are a major factor in #tumor control, however their diversity makes them a challenging object for quantitative analysis. This new preprint shows a #quantitative toolbox of free open-source tools in action. #AdaptiveImmunity #TumorImmunology.
doi.org/10.64898/202...
Spatial Compartmentalization of TCR Repertoires Between Primary Melanomas and Sentinel Lymph Nodes Reveals Distinct Clonal Architectures and Shared Antigen Recognition
Primary tumors and their sentinel lymph nodes are functionally linked sites of anti-tumor immunity, yet how T cell receptor (TCR) repertoires are organized across these compartments remains incompletely understood. We thus performed TCR β sequencing on paired primary melanoma tumors and sentinel lymph nodes from 24 treatment-naive patients to quantify TCR repertoire diversity and clonal architecture as markers of antigen-driven selection. Primary tumors exhibited markedly reduced TCR diversity and pronounced clonal dominance compared with matched lymph nodes, consistent with selective expansion of tumor-reactive T cells. Tumor-associated clonotypes displayed significantly longer CDR3 sequences driven by increased non-templated nucleotide insertions, a feature associated with neoantigen recognition, and showed biased TRBV and TRBJ gene usage indicative of CD8+ T cell enrichment. Annotation against known melanoma differentiation and cancer testis antigens identified only a small fraction of clonotypes with characterized specificities, and fewer than 10% of these were shared between tumors and lymph nodes, suggesting that most expanded tumor clonotypes recognize patient-specific antigens. To identify shared immune features beyond individual clonotypes, we applied ClustIRR to build a joint graph linking clonotypes across repertoires by CDR3 sequence similarity and detected Communities on the Joint graph (CJs) to uncover recurrent TCR sequence motifs. Differential occupancy analysis identified distinct CJs segregating tumors and lymph nodes, including a limited number of recurrent CJs targeting MART-1 epitopes, while the majority were patient-specific. Together, these data define spatially structured TCR repertoire architectures in human melanoma and establish a scalable framework for interrogating tumor-immune interactions. eLife Digest Melanoma is a skin cancer harboring many UV-associated mutations, making it recognizable to the immune system. T cells attack cancer using specialized molecular structures called T cell receptors (TCRs). They are frequently referred to as specific keys that only fit into the respective locks, i.e. HLA molecules presenting the target antigen. Surgeons often remove both the tumor and the tumor draining lymph node (aka sentinel lymph node). The tumor is where T cells directly fight cancer, while the sentinel lymph node is where new anti-tumor T cells are first activated. How these two sites coordinate immune surveillance is not completely understood. Here, Kitanovski and colleagues sequenced TCRs from paired tumors and sentinel lymph nodes obtained from melanoma patients. These analyses demonstrated that primary tumors have dramatically reduced TCR diversity, dominated by a few massively expanded T cell clones, whereas sentinel lymph nodes contain broad, balanced repertoires. This reveals intense local selection within the tumor–a small set of tumor-specific T cells expand repeatedly while the lymph node preserves diverse immune reserves. Examining TCR structure revealed a second key difference. Tumor-infiltrating T cells possess on average slightly longer CDR3 loops–the region contacting antigens–especially among dominant clones. These longer loops arise from random nucleotide insertions. Prior work shows that self-antigen-specific T cells have shorter CDR3s due to thymic constraints, whereas T cells recognizing tumor-specific mutation-derived neoantigens escape these restrictions and have longer CDR3s. Thus, tumor TCRs appear tailored for recognizing patient-specific neoantigens. The authors could only use TCRs matching known databases for shared melanoma antigens like MART-1 to identify TCR-specific epitopes; most tumor-expanded TCRs could not be annotated because patient-specific neoantigens are not in public databases. This limitation itself is informative– most expanded tumor TCRs likely target private neoantigens. Grouping TCRs by sequence similarity into “communities” revealed striking patterns: sentinel lymph nodes showed conserved community composition across patients, consistent with responses to common viruses, while tumor repertoires were highly individualized, reflecting each tumor’s unique mutations. These findings establish how anti-melanoma immunity is spatially organized: sentinel lymph nodes contain diverse T cell landscapes, while in primary tumors melanoma-infiltrating T cells appear to have undergone intense selection for neoantigen recognition. This provides a foundation for using TCR features as biomarkers and designing personalized T cell therapies. ### Competing Interest Statement The authors have declared no competing interest. Deutsche Forschungsgemeinschaft, Grants HO 1582/12-1, GRK2762 – project number 450917483 Else-Kröner-Fresenius Stiftung (EFKS) BMFTR DKTK, ED03
doi.org
July 11, 2026 at 6:38 AM
Could your existing measles immunity boost cancer therapy?
Researchers from @upv.es used mRNA-lipid #nanoparticles to express measles hemagglutinin, significantly enhancing antitumor T cell responses.

#STTT #OpenAccess: doi.org/10.1038/s413...

#TumorImmunology #Oncology
July 8, 2026 at 7:00 AM
The transcription factor IRF8 drives tumor-specific exhaustion in CD8⁺ T Cells. New study from Marco Ongaro, Grégory Verdeil and colleagues @fbm-unil.bsky.social @ludwigcancer.bsky.social: rupress.org/jem/article/...

#TumorImmunology #Immunotherapy
June 29, 2026 at 1:45 PM
Marco Ongaro, Grégory Verdeil et al. @unil.bsky.social identify IRF8 as a tumor-specific regulator driving CD8⁺ T cell exhaustion: induced by TCR but suppressed by chronic IFN-I, IRF8 promotes TOX and represses effector functions rupress.org/jem/article/...

#Cancer #Immunotherapy #TumorImmunology
June 22, 2026 at 4:01 PM
Leveraging cDC1 biology and function for enhanced #immunotherapy. New review from Ross W. Ward, Uddipan Kar, Sreekumar Balan, and Nina Bhardwaj @bhardwajlab.bsky.social (Icahn School of Medicine at Mount Sinai):
rupress.org/jem/article/...

#CancerFocus #TumorImmunology #InnateImmunity #inflammation
June 17, 2026 at 1:45 PM
ICYMI: Our new collection on clinical immunology features recent and exciting advances in translational #immunology, including #InbornErrorsOfImmunity, #autoimmunity, #TumorImmunology, #immunotherapy, and #InfectiousDisease.
👉 rupress.org/jem/collecti...
June 16, 2026 at 8:30 PM