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Open Access Review Issue
Tumor microenvironment-driven natural killer cell diversity: mechanisms and therapeutic opportunities
Cancer Biology & Medicine 2026, 23(8): 1087-1107
Published: 25 April 2026
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Natural killer (NK) cells are key effector cells involved in tumor immune surveillance, yet their function within the tumor microenvironment (TME) exhibits considerable complexity and plasticity that cannot be adequately explained by the classical CD56/CD16 dichotomy. This functional diversity arises from the phenotypic adaptability and dynamic differentiation of distinct NK cell subsets shaped by the TME. In this review, we systematically examine the defining characteristics and functional roles of recently identified NK cell subsets in the TME; elucidate the molecular mechanisms governing their regulation; and highlight the functional transitions and cooperative interactions among these subsets. Moreover, building on current evidence, we summarize emerging immunotherapeutic approaches targeting specific NK cell subsets. Together, these perspectives offer new insights and strategic directions for deciphering the multifaceted roles of NK cells in antitumor immunity and advancing the development of subset-targeted therapies.

Open Access Review Issue
Gut microecology empowers cancer immunotherapy: commensal microbiota-mediated mechanisms and translational prospects of PD-1/PD-L1 therapy
Cancer Biology & Medicine 2026, 23(1): 60-77
Published: 29 January 2026
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Anti-programmed cell death protein 1 (PD-1) or its ligand (PD-L1) are immune checkpoint inhibitors (ICIs) that have revolutionized cancer therapy. However, the efficacy of anti-PD-1 and anti-PD-L1 is limited by resistance and inter-individual variability. In recent years increasing evidence has highlighted the pivotal role of the gut microbiota in modulating the response to PD-1/PD-L1 immunotherapy. Extensive preclinical studies have demonstrated that commensal microbes can increase the efficacy of PD-1/PD-L1 blockade through multiple mechanisms, including the production of metabolites, such as short-chain fatty acids (SCFAs), tryptophan derivatives, and extracellular polysaccharides that remodel the tumor microenvironment, as well as the activation of immune pathways involving dendritic cells, CD8+ T cells, and M1 macrophages to increase antitumor immunity. Moreover, clinical studies have shown that fecal microbiota transplantation (FMT) and targeted probiotic interventions show promise for improving the response to PD-1/PD-L1 therapy, while reducing the risk of immune-related adverse events (irAEs). This review systematically explores the multifaceted regulatory roles of the commensal microbiota in PD-1/PD-L1 therapy and examines the preclinical prospects of microbiota-based personalized immunotherapeutic strategies. The integration of multiomics technologies, synthetic biology, and precise microbiota interventions may further optimize PD-1/PD-L1 immunotherapy and offer novel insights into antitumor immune modulation.

Open Access Review Issue
Progress in clinical diagnosis and treatment of colorectal cancer with rare genetic variants
Cancer Biology & Medicine 2024, 21(6): 473-483
Published: 26 June 2024
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Targeted therapy is crucial for advanced colorectal cancer (CRC) positive for genetic drivers. With advances in deep sequencing technology and new targeted drugs, existing standard molecular pathological detection systems and therapeutic strategies can no longer meet the requirements for careful management of patients with advanced CRC. Thus, rare genetic variations require diagnosis and targeted therapy in clinical practice. Rare gene mutations, amplifications, and rearrangements are usually associated with poor prognosis and poor response to conventional therapy. This review summarizes the clinical diagnosis and treatment of rare genetic variations, in genes including erb-b2 receptor tyrosine kinase 2 (ERBB2), B-Raf proto-oncogene, serine/threonine kinase (BRAF), ALK receptor tyrosine kinase/ROS proto-oncogene 1, receptor tyrosine kinase (ALK/ROS1), neurotrophic receptor tyrosine kinases (NTRKs), ret proto-oncogene (RET), fibroblast growth factor receptor 2 (FGFR2), and epidermal growth factor receptor (EGFR), to enhance understanding and identify more accurate personalized treatments for patients with rare genetic variations.

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