This review highlights #MYC as a central #oncogenic driver in #cancer, regulating proliferation, and #ImmuneEvasion, while exploring strategies to target MYC via MYC–MAX disruption, transcriptional control and synthetic lethal pathways.
#OpenAccess: doi.org/10.1016/j.ge...
This #STTT review outlines #ImmuneEvasion mechanisms in #Cancer, including checkpoint activation and #TumorMicroenvironment-mediated suppression, and discusses emerging therapeutic approaches for enhancing anti-tumor immunity.
#OpenAccess: doi.org/10.1038/s413...
Study finds #ImmuneCells in #glioblastoma use #fructose to evade #ImmuneResponse, pointing to a new #TreatmentTarget.
#BrainCancer #Microglia #ImmuneEvasion
SMLR1 engages TAM markers MRC1 (CD206) & SIGLEC1 (CD169), linking metastatic CRC cells to immunosuppressive macrophages in the liver niche.
A potential immune-evasion mechanism in CRLM.
CHP 2024;1(1):0003
#TumorPlasticity #ImmuneEvasion
This #STTT study reveals that #ExtracellularVesicle-derived #miRNA1825p induces an #Immunosuppressive macrophage phenotype in #PancreaticCancer, identifying a key mechanism of #ImmuneEvasion and a novel #TherapeuticTarget. #Medsky
#OpenAccess: doi.org/10.1038/s413...
Inhibition of RNA-binding proteins enhances immunotherapy in ovarian cancer
This #STTT study identified IGF2BP1 as a central mediator of #ImmuneEvasion in C5-subtype high-grade serous #OvarianCancer, demonstrating that IGF2BP1 inhibition synergizes with PD-1 blockade to overcome immune evasion. @unihalle.bsky.social
#OpenAccess: doi.org/10.1038/s413...
An overview of circRNAs in HBV-induced #HCC, delineating their roles as critical regulators of oncogenic signaling & #ImmuneEvasion while evaluating their potential as #Biomarkers and #TherapeuticTargets in #LiverCancer.
#OpenAccess: doi.org/10.1016/j.ge...
STAT5-activating oncogenes-induced oncostatin M (OSM) expression promotes #ImmuneEvasion and disease progression, establishing OSM signaling as a promising #TherapeuticTarget for myeloproliferative #Neoplasms.
#STTT #OpenAccess: doi.org/10.1038/s413...
By mapping the metabolic-#Epigenetic-immune axis, this review identifies how the interplay of nutrient competition and #ChromatinRemodeling drives cancer plasticity and #ImmuneEvasion, offering new multitargeted therapeutic strategies.
#STTT #OpenAccess: doi.org/10.1038/s413...
This #STTT review synthesizes the “metabolic-#Epigenetic-immune axis” to show how metabolic-driven #ChromatinRemodeling fuels #ImmuneEvasion, identifying nodal convergence points for next-gen multi-target precision oncology.
#OpenAccess: doi.org/10.1038/s413...
Inhibition of RNA-binding proteins enhances immunotherapy in ovarian cancer
Thrilled to highlight our cover & cover article in #STTT, revealing IGF2BP1 as a key #ImmuneEvasion driver in C5-HGSC and showing that RBP inhibition boosts antigen presentation and sensitizes tumors to PD-1 blockade. @unihalle.bsky.social
Read: doi.org/10.1038/s413...
#CancerScience #BioResearch
FAM114A1 promotes #TNBC #ImmuneEvasion by suppressing tumor antigen presentation via activation of the PI3K/AKT pathway and subsequent E2F4-driven MTDH transcription. #Medsky @princeton.edu @rutgerscancer.bsky.social
#STTT #OpenAccess: doi.org/10.1038/s413...
Oligomeric #cystatinC binds LILRB2/LILRB5 on myeloid cells, enhancing #TcellSuppression and #tumor progression via phosphatase and TGF-β signaling. CST3 loss impairs growth, underscoring amyloid–LILRB as a novel #ImmuneEvasion axis.
#OpenAccess in #STTT: doi.org/10.1038/s413...
Online today -> A viral glycoprotein targets IgG+ memory #Bcells to mediate humoral #ImmuneEvasion
by P. Cramer, M. Rizzi, H. Hengel and colleagues @uni-freiburg.de @univie.ac.at
🗞️ doi.org/10.1038/s443...
A new international study reveals how #melanoma #CancerCells evade the #ImmuneSystem by secreting #ExtracellularVesicles.
#ImmuneEvasion
Scientists identify #IGF2BP1 as a driver of #ImmuneEvasion in C5 #OvarianCancer, suppressing IFN‑γ–IRF1–MHC‑I signaling and T‑cell infiltration; its inhibition restores #antitumor immunity and boosts #PD1blockade. @unihalle.bsky.social
#OpenAccess in #STTT: doi.org/10.1038/s413...
Scientists identify #Dysadherin as an upstream activator of the FAK/YAP/TEAD2 axis in #HCC, showing it drives #CancerStemness and #ImmuneEvasion, while genetic or peptide inhibition restores #antitumor immunity and improves therapy response.
#OpenAccess #STTT: doi.org/10.1038/s413...
#ACAT1 acquires a nuclear role in #ColorectalCancer, where S60 phosphorylation enables p50 acetylation, relieves #NFκB repression, enhances #NKcell recruitment, while nutrient stress blocks this axis and drives #ImmuneEvasion and poor prognosis.
#STTT: doi.org/10.1038/s413...
A bio-barrier-adaptable #Biomimetic #Nanoplatform, MSF@CCM, exhibits enhanced #TumorAccumulation & #ImmuneEvasion along with amplified ultrasound-mediated intratumoral penetration, highlighting it as a promising modality for #CancerTherapy.
#OpenAccess: doi.org/10.1038/s413...
A large #GeneticScreen identified the TAK1 gene as a protective switch in #CancerCells that helps them survive #ImmuneAttack, potentially reducing the effectiveness of #immunotherapy treatments.
#AntiCancerImmunity #ImmuneEvasion
🔦 Have you seen our latest Commentary?
TREX1, a predator for treating MSI-H tumors?
🔓 buff.ly/MAOG3pB
#cGASSTING #ImmuneEvasion #CancerResearch
A comprehensive look at the molecular tricks tumors use to evade immunity—and the cutting-edge therapies designed to counter them.
#ImmuneEvasion #CancerImmunity #TumorMicroenvironment #Immunotherapy
www.nature.com/articles/s41...
📢 We review the mechanisms of immune evasion in breast cancer, focusing on how cellular plasticity and the tumor immune microenvironment cooperate to suppress detection. 🧬
@chp-pivot.bsky.social
www.pivotscipub.com/chp/3/1/0001...
#breastcancer #ImmuneEvasion #TumorMicroenvironment #CellPlasticity
FAM114A1 drives #ImmuneEvasion & ICB resistance in #TNBC by activating PI3K/AKT and boosting E2F4/MTDH signaling, thus impairing antigen presentation. #medsky @princeton.edu @rutgerscancer.bsky.social @fudan-university.bsky.social
#STTT #OpenAccess: doi.org/10.1038/s413...
Scientists decipher #PDAC immune evolution at single-cell resolution, revealing direct tumor-induced #dendriticcells #apoptosis via the ANXA1-FPR1/3 axis and illuminating #ImmuneEvasion mechanisms and therapeutic targets. #medsky
#OpenAccess in #STTT: doi.org/10.1038/s413...
Learn key bacterial virulence factors and their role in infection and immune evasion. #BacterialVirulence #VirulenceFactors #Microbiology #Pathogenesis #Toxins #Capsules #Adhesins #Enzymes #SecretionSystems #USMLE #MedicalEducation #ClinicalMicrobiology #ImmuneEvasion #BacterialPathogens
Study reveals how #PancreaticCancer #tumors evade #immunity using a sugar disguise, and how a new #AntibodyTherapy restores immunity in mice.
#ImmuneEvasion #TherapyResistance
This review highlights the multifaceted mechanisms of #tumor #ImmuneEvasion, including checkpoint regulation, #TumorMicroenvironment dynamics & #MetabolicReprogramming, while discussing emerging #immunotherapies to curb resistance.
#STTT #OpenAccess: doi.org/10.1038/s413...
This study uses an ABE-based #sgRNA library to map over 1,000 functional #mutations that regulate PD-L1 and HLA-I expression, identifying SETD2_Y1666, which influences #ImmuneEvasion & anti-PD-1/PD-L1 therapy responses. @pku1898.bsky.social
#STTT #OpenAccess: doi.org/10.1038/s413...
New research shows #LungCancer weakens the #ImmuneSystem by reprogramming #BoneMarrow #ImmuneCells before they reach tumors, suggesting a potential target to improve #immunotherapy.
#ImmuneEvasion