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Minghao Li

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Review Open access Jul 2026

Deciphering immunosuppressive niches by spatial single-cell proteomics: spatial interaction networks and translational opportunities

Although immunocheckpoint blocking therapy has been successful in a variety of cancers, its long-term response is still rare. The difference between initial clinical benefits and persistent disease control reflects the complexity of intratumor immunomodulation. People’s attention is increasingly shifting from a single group of cells to the spatial environment in which these cells live. Tumor cells, immune cells and interstitial components cannot function independently; on the contrary, they form a local tissue structure, and their composition and structure affect immune activity. Technologies such as Co-Detection by Indexing (CODEX), Imaging Mass Cytometry (IMC), and multiple ion beam imaging (MIBI) can now directly detect these spatial relationships while measuring dozens of proteins at a single cell resolution. Therefore, the spatially defined immunosuppressive niche has become an important framework for explaining how local cell interactions lead to immune dysfunction and therapeutic resistance. These studies reveal that immune cells, stromal cells, and malignant cells form a highly ordered spatial network, synergistically regulated through direct contact, cytokine signaling, and metabolic interactions. This coordinated cellular network forms a local immunosuppressive microenvironment, thereby maintaining immune escape, tumor progression, and treatment resistance. Recent research has also uncovered previously unknown immunosuppressive cell states and their spatial interaction patterns, characteristics closely related to disease prognosis, recurrence risk, and immunotherapy response. Therefore, tumor immunology research is shifting from the characterization of single cell populations to the exploration of spatially organized functional ecosystems. This article reviews the latest advances in the field of space-based single-cell proteomics and summarizes current research findings on the cellular composition, spatial structure, and regulatory mechanisms of the immunosuppressive microenvironment. Furthermore, we explore the emerging clinical value of space biomarkers and interaction networks in patient stratification, therapeutic target identification, and precision immunotherapy.

Hao Chai, Lang Wu, Xiaopeng Chen et al. · 0 citations
Review Open access Aug 2026

Research and advances in TK1-mediated metabolic reprogramming in modulating the tumor immune microenvironment in hepatocellular carcinoma

Hepatocellular carcinoma (HCC) is still one of the leading causes of cancer-related deaths in the world. It is characterized by significant metabolic disorders and immunosuppressive tumor microenvironment(TME). As a key enzyme in the thymidine remedy pathway, TK1 is traditionally regarded as a biomarker related to proliferation. However, recent evidence shows that the biological function of TK1 has gone beyond the category of nucleotide metabolism and may be involved in a variety of processes related to tumor progression. In this review, we summarize the current understanding of the biological function of TK1 and discuss its evolving role in HCC. Let's first examine the classical and non-classical functions of TK1, including its participation in nucleotide homeosism, metabolic adaptation and tumor-related signal networks. Then, we reviewed the recent evidence that TK1 promotes metabolic reprogramming by regulating glycolysis, nucleotide metabolism and a wider range of metabolic signaling pathways. In addition, we discussed how TK1-related metabolic changes can affect the tumor immune microenvironment(TIME) by promoting nutritional competition, lactic acid accumulation, and establishing an immunosuppressive microenvironment involving CD8 + T cells, tumor-related macrophages, regulatory T cells, medullary inhibitory cells and dendritic cells. Importantly, more and more data support the view that TK1 acts as a key node in connecting metabolic reprogramming and immune remodeling in HCC. Collectively, this review proposes a conceptual framework in which TK1 is viewed not merely as a proliferation marker but as a potential regulator of the metabolic–immune ecosystem in HCC. A deeper understanding of TK1-mediated metabolic and immunological interactions may facilitate the development of novel biomarkers and precision therapeutic strategies for patients with HCC.

Hao Chai, Lang Wu, Minghao Li · 0 citations