(Cancer Cell[TA])
4,117 results
  • A stress-adaptive lipid kinase axis defines metabolic vulnerabilities in neuroendocrine prostate cancer. [Journal Article]
    Cancer Cell. 2026 Aug 03. [Online ahead of print]Zheng Y, Cheng C, … Qiao YCC
  • Neuroendocrine prostate cancer (NEPC) persists in a profoundly hypoxic microenvironment, yet the mechanisms enabling tumor adaptation to this metabolically challenging niche remain undefined. Here, we identify the lipid kinase PIKfyve as overexpressed in NEPC, functioning as a central node in a stress-adaptive lipid kinase axis that supports adaptation to persistent endoplasmic reticulum (ER) str…
  • Mapping micrometastatic seeds of relapse. [Journal Article]
    Cancer Cell. 2026 Jul 31. [Online ahead of print]Yeo HTG, Tan IBCC
  • In this issue of Cancer Cell, Liu et al. apply spatial multi-omics to map colorectal cancer micrometastases across primary tumors and matched liver and lung metastases, revealing liver micrometastases as an early evolved, stem-like, immune-suppressed residual disease state linked to a six-gene recurrence signature.
  • Subclinical cholestasis is a hallmark of gut dysbiosis causing resistance to cancer immunotherapy. [Journal Article]
    Cancer Cell. 2026 Jul 29. [Online ahead of print]Mallard de La Varende AL, Tian AL, … Zitvogel LCC
  • Gut dysbiosis compromises cancer immunosurveillance by downregulating ileal mucosal addressin cell adhesion molecule 1 (MAdCAM-1), but the metabolic landscape associated with gut dysbiosis remains elusive. Here, we show that antibiotics (ABX) or ABX-associated Enterocloster species lead to the loss of secondary bile acids (BAs) including deoxycholic acid (DCA) and the accumulation of tauro-conjug…
  • Depletion of an immature cord blood NK subset reverses trogocytosis-driven CAR NK dysfunction. [Journal Article]
    Cancer Cell. 2026 Jul 29. [Online ahead of print]Li Y, Fan H, … Rezvani KCC
  • Allogeneic CAR-engineered NK cells enable scalable off-the-shelf therapy, yet donor heterogeneity remains a major barrier to consistent potency. Building on our clinical experience with cord blood-derived CAR NK cells, we identified an immature CD16[-]CD161[-] double-negative (DN) NK subset associated with poor outcomes. Following CAR engineering, DN-derived NK cells remained hypofunctional yet e…
  • Dysbiosis-associated bile acids slam the brakes on immune checkpoint therapy. [Journal Article]
    Cancer Cell. 2026 Jul 23. [Online ahead of print]Wong CC, Yu JCC
  • Antibiotics compromise the efficacy of immune checkpoint inhibition (ICI) therapy in cancer, but the underlying mechanism remains unclear. In this issue of Cancer Cell, Mallard de La Varende et al. identify dysbiosis-associated tauro-conjugated bile acids as drivers of ICI non-response and γ-glutamyl transferase (γGT) as a predictive biomarker.
  • Tumor-infiltrating plasma cell targets as a source for immunotherapies. [Journal Article]
    Cancer Cell. 2026 Jul 27. [Online ahead of print]Lattanzi G, Hollern DCC
  • Tumor-infiltrating plasma cells are key responders to immunotherapy. In this issue of Cancer Cell, Meyerhoff et al. show that plasma cells from lung lesions of anti-PD-1-treated patients target citrullinated proteins. Engineering CAR T cells with these plasma cells scFv reveals anti-tumor specificity without adverse effects, identifying therapeutic opportunities.
  • Tumor-infiltrating plasma cell profiling after PD-1 blockade reveals tumor-specific antibodies. [Journal Article]
    Cancer Cell. 2026 Jul 27. [Online ahead of print]Meyerhoff RR, Chen A, … Antonia SJCC
  • The role of tumor-infiltrating B cells (TIL-Bs) in shaping anti-tumor responses in the context of immune checkpoint blockade remains incompletely understood. Here, we interrogate the humoral response in resected lung tumors from patients with non-small cell lung cancer (NSCLC) treated with neoadjuvant PD-1 blockade. We find that tumors orchestrate tertiary lymphoid structures with CD138[+] plasma…
  • A self-amplifying nerve-fibroblast circuit drives colorectal cancer progression. [Journal Article]
    Cancer Cell. 2026 Jul 24. [Online ahead of print]Kobayashi H, Iida T, … Wang TCCC
  • Nerves and cancer-associated fibroblasts (CAFs) have each been shown to regulate cancer progression directly. However, whether these cells interact to control tumor progression remains largely unknown. We show that in colorectal cancer (CRC), cholinergic stimulation induces CHRM3/Gq-dependent NTN1 secretion from CAFs, which in turn enhances intratumor cholinergic innervation. Within this feedforw…
  • PD-1 blockade unleashes local hepatitis B virus-related B cell response inhibiting hepatocellular carcinoma. [Journal Article]
    Cancer Cell. 2026 Jul 16. [Online ahead of print]Chen S, Wang Y, … Kuang MCC
  • The prevailing notion is that effector T cell activation mediates anti-PD-1 efficacy in cancer. Here, we conducted a mechanistic study parallel to our phase 2 trial of perioperative anti-PD-1 therapy in patients with resectable recurrent hepatocellular carcinoma (HCC) (NCT04615143) to study its mechanism of action. Late-recurrence patients present two distinct subtypes characterized by T cell or …
  • Starved of oxygen and fueled by macrophages: Path to progression in RCC. [Comment]
    Cancer Cell. 2026 Jul 13; 44(7):1330-1332.Perelli L, Genovese G, Tannir NMCC
  • In this issue of Cancer Cell, Vuong et al. perform a cross-species functional and molecular analysis of the mechanisms of response and adaptation to VEGFR kinase inhibitors and immunotherapy, identifying SPP1+ tumor-associated macrophages as key players of response to therapy. They further demonstrate that chronic treatment promotes metastatic spread.
  • Menin in normal and malignant megakaryopoiesis. [Journal Article]
    Cancer Cell. 2026 Jul 09. [Online ahead of print]Wheat JC, Cai SFCC
  • Severe thrombocytopenia is a known complication of menin inhibitor therapy; however, the mechanism underlying this effect is unknown. In this issue of Cancer Cell, Wen et al. demonstrate that menin is a key component of normal megakaryopoiesis and establish menin as a therapeutic vulnerability in myeloproliferative neoplasms.