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Synergistic Ferroptosis-Immunotherapy Nanoplatforms:Multidimensional Engineering for Tumor Microenvironment Remodeling and Therapeutic Optimization
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作者 Xiao Wei Yanqiu Jiang +6 位作者 Feiyang Chenwu Zhi Li Jie Wan Zhengxi Li Lele Zhang Jing Wang Mingzhu Song 《Nano-Micro Letters》 2026年第2期471-538,共68页
Emerging ferroptosis-immunotherapy strategies,integrating functionalized nanoplatforms with ferroptosis-inducing agents and immunomodulatory therapeutics,demonstrate significant potential in managing primary,recurrent... Emerging ferroptosis-immunotherapy strategies,integrating functionalized nanoplatforms with ferroptosis-inducing agents and immunomodulatory therapeutics,demonstrate significant potential in managing primary,recurrent,and metastatic malignancies.Mechanistically,ferroptosis induction not only directly eliminates tumor cells but also promotes immunogenic cell death(ICD),eliciting damage-associated molecular patterns(DAMPs)release to activate partial antitumor immunity.However,standalone ferroptosis therapy fails to initiate robust systemic antitumor immune responses due to inherent limitations:low tumor immunogenicity,immunosuppressive microenvironment constraints,and tumor microenvironment(TME)-associated physiological barriers(e.g.,hypoxia,dense extracellular matrix).To address these challenges,synergistic approaches have been developed to enhance immune cell infiltration and reestablish immunosurveillance,encompassing(1)direct amplification of antitumor immunity,(2)disruption of immunosuppressive tumor niches,and(3)biophysical hallmark remodeling in TME.Rational nanocarrier design has emerged as a critical enabler for overcoming biological delivery barriers and optimizing therapeutic efficacy.Unlike prior studies solely addressing ferroptosis or nanotechnology in tumor therapy,this work first systematically outlines the synergistic potential of nanoparticles in combined ferroptosis-immunotherapy strategies.It advances multidimensional nanoplatform design principles for material selection,structural configuration,physicochemical modulation,multifunctional integration,and artificial intelligence-enabled design,providing a scientific basis for efficacy optimization.Moreover,it examines translational challenges of ferroptosis-immunotherapy nanoplatforms across preclinical and clinical stages,proposing actionable solutions while envisioning future onco-immunotherapy directions.Collectively,it provides systematic insights into advanced nanomaterial design principles and therapeutic optimization strategies,offering a roadmap for accelerating clinical translation in onco-immunotherapy research. 展开更多
关键词 Ferroptosis-immunotherapy Nanoplatforms Tumor microenvironment Synergistic strategies Nanocarrier design
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Tumor microenvironment-driven microRNA dysregulation:Key interactions in colorectal cancer progression
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作者 Adriana G Quiroz-Reyes Paulina Delgado-Gonzalez +6 位作者 Jose Francisco Islas Veronica L Loaiza-Gutierrez Michelle G Santoyo-Suarez Juan A Garcia-Loredo Carlos A Gonzalez-Villarreal Fernanda Ramirez-Fernandez Elsa N Garza-Treviño 《World Journal of Gastrointestinal Oncology》 2026年第1期28-46,共19页
Colorectal cancer remains one of the leading causes of morbidity and mortality worldwide.Despite notable advances in early detection and therapeutic strategies,the molecular mechanisms underlying tumor survival,chemot... Colorectal cancer remains one of the leading causes of morbidity and mortality worldwide.Despite notable advances in early detection and therapeutic strategies,the molecular mechanisms underlying tumor survival,chemotherapy resistance,and metastasis are not yet fully understood.MicroRNAs(miRNAs)have emerged as pivotal regulators of cancer development,as they modulate gene expression and orchestrate key signaling pathways.However,the epigenetic mechanisms that control miRNA expression and their downstream gene targets remain largely unclear.In this review,we highlight the critical role of the colorectal cancer microenvironment in influencing miRNA expression and discuss how this regulation contributes to tumorigenesis.A better understanding of these processes may lead to the identification of novel therapeutic targets and strategies to prevent recurrence. 展开更多
关键词 Cancer progression MICRORNAS Colorectal cancer Tumor microenvironment Therapeutic response
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Rational Design of Photoanodes in Portable Devices to Enhance H_(2)O_(2) Production for Microenvironment Control
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作者 Haisu Wu Hanliang Fan +4 位作者 Hong Chen Dongxue Jiao Yuanxing Fang Xiaochun Zheng Maokai Xu 《Carbon Energy》 2026年第1期48-59,共12页
Hydrogen peroxide(H_(2)O_(2))is a versatile oxidant with significant applications,particularly in regulating the microenvironment for healthcare purposes.Herein,a rational design of the photoanode is implemented to en... Hydrogen peroxide(H_(2)O_(2))is a versatile oxidant with significant applications,particularly in regulating the microenvironment for healthcare purposes.Herein,a rational design of the photoanode is implemented to enhance H_(2)O_(2) production by oxidizing H_(2)O in a portable photoelectrocatalysis(PEC)device.The obtained solution from this system is demonstrated for effective bactericidal activity against Staphylococcus aureus and Escherichia coli,while maintaining low toxicity toward hippocampal neuronal cells.The photoanode is achieved by Mo-doped BiVO4 films,which are subsequently loaded with cobalt-porphyrin(Co-py)molecules as a co-catalyst.As a result,the optimal performance for H_(2)O_(2) production rate was achieved at 8.4μmol h^(−1) cm^(−2),which is 1.8 times that of the pristine BiVO4 photoanode.Density functional theory(DFT)simulations reveal that the improved performance results from a 1.1 eV reduction in the energy of the rate-determining step of·OH adsorption by the optimal photoanode.This study demonstrates a PEC approach for promoting H_(2)O_(2) production by converting H_(2)O for antibacterial purposes,offering potential applications in conventionally controlling microenvironments for healthcare applications. 展开更多
关键词 antibacterial BIVO4 co-catalysts H_(2)O_(2)production microenvironment PHOTOELECTROCATALYSIS
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Pulsed Dynamic Water Electrolysis:Mass Transfer Enhancement,Microenvironment Regulation,and Hydrogen Production Optimization
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作者 Xuewei Zhang Wei Zhou +7 位作者 Xiaoxiao Meng Yuming Huang Yang Yu Haiqian Zhao Lijie Wang Fei Sun Jihui Gao Guangbo Zhao 《Nano-Micro Letters》 2026年第3期807-859,共53页
Pulsed dynamic electrolysis(PDE),driven by renewable energy,has emerged as an innovative electrocatalytic conversion method,demonstrating significant potential in addressing global energy challenges and promoting sust... Pulsed dynamic electrolysis(PDE),driven by renewable energy,has emerged as an innovative electrocatalytic conversion method,demonstrating significant potential in addressing global energy challenges and promoting sustainable development.Despite significant progress in various electrochemical systems,the regulatory mechanisms of PDE in energy and mass transfer and the lifespan extension of electrolysis systems,particularly in water electrolysis(WE)for hydrogen production,remain insufficiently explored.Therefore,there is an urgent need for a deeper understanding of the unique contributions of PDE in mass transfer enhancement,microenvironment regulation,and hydrogen production optimization,aiming to achieve low-energy consumption,high catalytic activity,and long-term stability in the generation of target products.Here,this review critically examines the microenvironmental effects of PDE on energy and mass transfer,the electrode degradation mechanisms in the lifespan extension of electrolysis systems,and the key factors in enhancing WE for hydrogen production,providing a comprehensive summary of current research progress.The review focuses on the complex regulatory mechanisms of frequency,duty cycle,amplitude,and other factors in hydrogen evolution reaction(HER)performance within PDE strategies,revealing the interrelationships among them.Finally,the potential future directions and challenges for transitioning from laboratory studies to industrial applications are proposed. 展开更多
关键词 Pulsed dynamic electrolysis Water electrolysis Energy and mass transfer microenvironment System stability
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Gut microbiota and the colorectal cancer tumor microenvironment:From carcinogenic mechanisms to therapeutic opportunities
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作者 Zi-Ke Chen Jia-Wei Zhao +2 位作者 Yu-Gang Wang Chen Wang Min Shi 《World Journal of Gastrointestinal Oncology》 2026年第1期114-121,共8页
Colorectal cancer(CRC)is ranked as the third most common tumor globally,representing approximately 10%of all cancer cases,and is the second primary cause of cancer-associated mortality.Existing therapeutic approaches ... Colorectal cancer(CRC)is ranked as the third most common tumor globally,representing approximately 10%of all cancer cases,and is the second primary cause of cancer-associated mortality.Existing therapeutic approaches demonstrate limited efficacy against CRC,partially due to the immunosuppressive tumor microenvironment(TME).In recent years,substantial evidence indicates that dysbiosis of the gut microbiota and its metabolic products is closely associated with the initiation,progression,and prognostic outcomes of CRC.In this minireview,we systematically elaborate on how these microbes and their metabolites directly impair intestinal epithelial integrity,activate cancer-associated fibroblasts,remodel tumor vasculature,and critically,sculpt an immunosuppressive landscape by modulating T cells,dendritic cells,and tumor-associated macrophages.We highlight the translational potential of targeting the gut microbiota,including fecal microbiota transplantation,probiotics,and engineered microbial systems,to reprogram the TME and overcome resistance to immunotherapy and chemotherapy.A deeper understanding of the microbiota-TME axis is essential for developing novel diagnostic and therapeutic paradigms for CRC. 展开更多
关键词 Gut microbiota Tumor immune microenvironment Colorectal cancer Tumor stromal cells Immune cells
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STC2+Malignant Cell State Associated with EMT,Tumor Microenvironment Remodeling,and Poor Prognosis Revealed by Single-Cell and Spatial Transcriptomics in Colorectal Cancer
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作者 Kai Gui Tianyi Yang +4 位作者 Chengying Xiong Yue Wang Zhiqiang He Wuxian Li Min Tang 《Oncology Research》 2026年第1期521-546,共26页
Objectives:The mechanism by which specific tumor subsets in colorectal cancer(CRC)use alternative metabolic pathways,particularly those modulated by hypoxia and fructose,to alter the tumor microenvironment(TME)remains... Objectives:The mechanism by which specific tumor subsets in colorectal cancer(CRC)use alternative metabolic pathways,particularly those modulated by hypoxia and fructose,to alter the tumor microenvironment(TME)remains unclear.This study aimed to identify these malignant subpopulations and characterize their intercellular signaling networks and spatial organization through an integrative multi-omics approach.Methods:Leveraging bulk datasets,single-cell RNA sequencing,and integrative spatial transcriptomics,we developed a prognostic model based on hypoxia-and fructose metabolism-related genes(HFGs)to delineate tumor cell subpopulations and their intercellular signaling networks.Results:We identified a specific subset of stanniocalcin-2 positive(STC2+)malignant cells spatially enriched within tumor regions and strongly associated with poor prognosis.This subset served as a key signaling hub in the TME,exhibiting increased epithelial–mesenchymal transition activity.STC2+cells engage in two spatially organized ligand–receptor interactions:the growth differentiation factor 15(GDF15)—transforming growth factor beta receptor 2(TGFBR2)pathway targeting endothelial cells and the migration inhibitory factor(MIF)—(cluster of differentiation 74[CD74]+C-X-C motif chemokine receptor 4[CXCR4])pathway targeting macrophages.Conclusion:This study identified a malignant cell state in CRC that is metabolically defined and spatially limited,including liver metastases,and is characterized by elevated STC2 expression and active immune-stromal interactions.Given the interplay between metabolic reprogramming and TME remodeling,STC2+malignant cells are a functionally significant subpopulation and a potential therapeutic target. 展开更多
关键词 Colorectal cancer(CRC) machine learning fructose metabolism tumor microenvironment(TME) prognosis
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Curvature-dominated microenvironment modulation enables efficient electrocatalytic oxygen reduction
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作者 Chuan Jing Ziyang Guo +4 位作者 Yujia Yao Runjing Xu Dengfeng Li Kailin Li Yuxin Zhang 《Nano Research》 2026年第1期367-376,共10页
The oxygen reduction reaction(ORR)critical for electrochemical energy conversion systems suffers from sluggish kinetics and high overpotentials that hinder the efficiency of these technologies.Herein,a curvature-domin... The oxygen reduction reaction(ORR)critical for electrochemical energy conversion systems suffers from sluggish kinetics and high overpotentials that hinder the efficiency of these technologies.Herein,a curvature-dominated microenvironment modulation strategy is demonstrated to enhance ORR performance via engineering a helical hollow carbon nanotube with embedded sub-nanometer tungsten nitride(W_(2)N)clusters.This architecture yields optimized electrostatic field distributions and reduced d-band center of W_(2)N,thereby promoting the enrichment of OH-,the adsorption of oxygen,and the desorption of oxygen intermediates(OH).The catalyst shows remarkable ORR activity with a high onset potential of 1.00 V and a half-wave potential of 0.89 V,outperforming both Pt/C and other W_(2)N-based catalysts.Theoretical calculations verify that the curved support enhances the electron delocalization within the W_(2)N clusters,regulating the interaction between the catalyst and reactants.Our findings establish a general design principle of curvature-induced microenvironment modulation and offer a new pathway toward designing efficient electrocatalysts for sustainable energy storage applications. 展开更多
关键词 CURVATURE W_(2)N cluster microenvironment regulation helical hollow carbon nanotube oxygen reduction reaction
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Crosstalk between colorectal tumor metabolism and immune cells in the tumor microenvironment
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作者 Pengcheng Li Yue Zhang +1 位作者 Changsheng Huang Guihua Wang 《Oncology and Translational Medicine》 2025年第6期260-270,共11页
Colorectal cancer(CRC)considerably affects global health,and its progression is intricately tied to interactions within the tumormicroenvironment.This review focuses on the intricate crosstalk between metabolic reprog... Colorectal cancer(CRC)considerably affects global health,and its progression is intricately tied to interactions within the tumormicroenvironment.This review focuses on the intricate crosstalk between metabolic reprogramming in CRC cells and the tumor immune microenvironment(TIME),thereby emphasizing the dual functionality of metabolic pathways in tumor growth and immune regulation.Furthermore,the review delves into key metabolic changes,including alterations in glucose,lipid,iron,and ammonia metabolism,and their profound effects on the immune landscape of CRC.Enhanced glycolysis and lipid metabolism facilitate tumor survival and proliferation,while establishing an immunosuppressive TIME that hinders effective immune responses.Moreover,the roles of iron and ammonia metabolism in immune evasion and tumor progression were explored,and these metabolic pathways presented as promising targets to improve CRC therapy.By conducting a comprehensive analysis of recent studies,this review provides insights into potential therapeutic targets within these metabolic interactions,with the aim of enhancing the efficacy of existing treatments and devising novel strategies for combating CRC. 展开更多
关键词 Colorectal cancer Tumor microenvironment Tumor immune microenvironment Aerobic glycolysis Lipid oxidation Iron metabolism Ammonia metabolism
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From bone marrow to the tumor microenvironment:how neutrophil maturation shapes cancer immunity
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作者 Tao Shi Yiran Cai +1 位作者 Hanbing Wang Jia Wei 《Cancer Biology & Medicine》 2025年第12期1431-1438,共8页
Tumor-associated neutrophils(TANs)exhibit highly func-tional heterogeneity across cancers.Although TANs pro-mote inflammatory responses and contribute to tumor clearance,they frequently undergo context-dependent repro... Tumor-associated neutrophils(TANs)exhibit highly func-tional heterogeneity across cancers.Although TANs pro-mote inflammatory responses and contribute to tumor clearance,they frequently undergo context-dependent reprogramming within the tumor microenvironment(TME)into highly immunosuppressive phenotypes that facilitate cancer dissemination and immunotherapy resist-ance1,2.We contend that an underappreciated,upstream determinant of this divergence is the maturation stage of TANs3,4.The developmental stage of TANs determines the migration patterns and constrains the functional capacity,and the developmental stage also constrains the extent of TME-driven re-education,together shaping pro-or anti-tu-mor outcomes3-5.In this Perspective,we place maturation at the core of TAN biology and discuss current definitions for TAN developmental stages and the measurable mark-ers that researchers and clinicians can use(Figure 1).In addition,spatial and temporal transitions in TAN matu-ration stages and the factors that govern these transitions are elucidated.We explain how maturation status shapes TAN function and articulate the key differences between mouse and human TAN maturation systems to highlight the value of human immune system(HIS)mouse models.Based on this framework,functional biomarkers and signa-tures of TAN maturation are introduced and we show how to embed them into patient stratification and longitudinal monitoring.Finally,we outline immunotherapy strategies targeting TAN maturation,selecting interventions guided by maturation markers to reinforce treatment benefits for cancer patients. 展开更多
关键词 maturation stage tumor associated neutrophils inflammatory responses neutrophil maturation tumor microenvironment tme highly immunosuppressive phenotypes bone marrow tumor microenvironment
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Catalyst Surface Microenvironment Regulation for High-Efficiency Electrocatalytic CO_(2)-to-C_(2+)Conversion
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作者 Xiaoyu Bei Qi Yang Jieshan Qiu 《Carbon and Hydrogen》 2025年第2期99-101,共3页
Electrocatalytic CO_(2)reduction(CO_(2)RR)is spurring intensive research interest,where many attentions have been paid to catalyst design and mechanism study.Electrode near-surface microenvironment matters fundamental... Electrocatalytic CO_(2)reduction(CO_(2)RR)is spurring intensive research interest,where many attentions have been paid to catalyst design and mechanism study.Electrode near-surface microenvironment matters fundamentally for reactant mass transfer,water molecule interference,catalyst exposure,and others,yet it has been rarely investigated.In the latest issue of Angew.Chem.Int.Ed.,Han,Kang and coauthors reported a method to regulate the microenvironment on the catalyst surface by adding polyethylene glycol,which remarkably improves the yield of multicarbon products.This strategy of controlling multiple proton-electron coupling processes through molecular chemistry-driven microenvironmental regulation is thought to inspire new idea for addressing the low efficiency challenge of CO_(2)RR. 展开更多
关键词 catalyst surface microenvironment multicarbon products polyethylene glycol regulate microenvironment proton electron coupling polyethylene glycolwhic electrocatalytic CO reduction reactant mass
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Decoding the tumor microenvironment:insights into immunotherapy and beyond
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作者 Wenhao Xu Jiahe Lu +1 位作者 Hailiang Zhang Dingwei Ye 《Journal of the National Cancer Center》 2025年第4期426-428,共3页
The landscape of tumor microenvironment(TME)research has un-dergone rapid transformation over the past decade.1,2 As we deepen our understanding of the TME’s role in cancer progression,immune response modulation,and ... The landscape of tumor microenvironment(TME)research has un-dergone rapid transformation over the past decade.1,2 As we deepen our understanding of the TME’s role in cancer progression,immune response modulation,and therapeutic efficacy,this special issue,“Tumor Microen-vironment and Immunotherapy:From Bench to Bedside,”brings forth the latest breakthroughs in these domains.It highlights the interplay be-tween the TME,immune system dynamics,and cancer therapies,with a particular emphasis on precision medicine and the development of targeted treatments. 展开更多
关键词 cancer progression tmeimmune system dynamicsand tumor microenvironment tme research response modulationand targeted treatments IMMUNOTHERAPY precision medicine tumor microenvironment
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Turing topologies regulate interfacial microenvironments for industrial-level CO_(2)-to-formate electrosynthesis
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作者 Suxin Bai Min Kuang Jianping Yang 《Rare Metals》 2025年第8期5898-5901,共4页
Achieving industrial-level electrochemical CO_(2)reduction to formate remains a significant challenge due to limitations in catalyst selectivity and interfacial proton management at high current densities.In a recent ... Achieving industrial-level electrochemical CO_(2)reduction to formate remains a significant challenge due to limitations in catalyst selectivity and interfacial proton management at high current densities.In a recent study,Prof.Guo and colleagues report the development of Turingstructured electrocatalysts,which incorporate reaction-diffusion-inspired topologies to engineer mesoscale surface patterns.This design enables precise modulation of the interfacial microenvironment,enhancing CO_(2)activation and suppressing competing hydrogen evolution.The resulting catalysts achieve efficient and stable CO_(2)-to-formate conversion under industrially relevant conditions,offering a promising strategy for scalable carbon-neutral chemical production. 展开更多
关键词 co formate electrosynthesis interfacial microenvironments precise modulation interfacial microenvironmentenhancing turing topologies reaction diffusion inspired topologies turingstructured electrocatalystswhich catalyst selectivity interfacial proton management
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Correlation between gut microbiota and tumor immune microenvironment:A bibliometric and visualized study 被引量:1
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作者 Zheng-Jun Hu Hui-Rong Zhu +3 位作者 Yong-Jie Jin Pan Liu Xiao-Wei Yu Yu-Ren Zhang 《World Journal of Clinical Oncology》 2025年第2期110-129,共20页
BACKGROUND In recent years,numerous reports have been published regarding the relationship between the gut microbiota and the tumor immune microenvironment(TIME).However,to date,no systematic study has been conducted ... BACKGROUND In recent years,numerous reports have been published regarding the relationship between the gut microbiota and the tumor immune microenvironment(TIME).However,to date,no systematic study has been conducted on the relationship between gut microbiota and the TIME using bibliometric methods.AIM To describe the current global research status on the correlation between gut microbiota and the TIME,and to identify the most influential countries,research institutions,researchers,and research hotspots related to this topic.METHODS We searched for all literature related to gut microbiota and TIME published from January 1,2014,to May 28,2024,in the Web of Science Core Collection database.We then conducted a bibliometric analysis and created visual maps of the published literature on countries,institutions,authors,keywords,references,etc.,using CiteSpace(6.2R6),VOSviewer(1.6.20),and bibliometrics(based on R 4.3.2).RESULTS In total,491 documents were included,with a rapid increase in the number of publications starting in 2019.The country with the highest number of publications was China,followed by the United States.Germany has the highest number of citations in literature.From a centrality perspective,the United States has the highest influence in this field.The institutions with the highest number of publications were Shanghai Jiao Tong University and Zhejiang University.However,the institution with the most citations was the United States National Cancer Institute.Among authors,Professor Giorgio Trinchieri from the National Institutes of Health has the most local impact in this field.The most cited author was Fan XZ.The results of journal publications showed that the top three journals with the highest number of published papers were Frontiers in Immunology,Cancers,and Frontiers in Oncology.The three most frequently used keywords were gut microbiota,tumor microenvironment,and immunotherapy.CONCLUSION This study systematically elaborates on the research progress related to gut microbiota and TIME over the past decade.Research results indicate that the number of publications has rapidly increased since 2019,with research hotspots including“gut microbiota”,“tumor microenvironment”and“immunotherapy”.Exploring the effects of specific gut microbiota or derived metabolites on the behavior of immune cells in the TIME,regulating the secretion of immune molecules,and influencing immunotherapy are research hotspots and future research directions. 展开更多
关键词 Gut microbiota Tumor immune microenvironment BIBLIOMETRIC CITESPACE VOSviewer R-bibliometrics
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p53:A player in the tumor microenvironment 被引量:3
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作者 SHUANG ZHAO HONGYONG WEN +3 位作者 BAIQI WANG QINGLIN XIONG LANXIN LI AILAN CHENG 《Oncology Research》 2025年第4期795-810,共16页
Approximately half of all cancers have p53 inactivating mutations,in addition to which most malignancies inactivate the p53 pathway by increasing p53 inhibitors,decreasing p53 activators,or inactivating p53 downstream... Approximately half of all cancers have p53 inactivating mutations,in addition to which most malignancies inactivate the p53 pathway by increasing p53 inhibitors,decreasing p53 activators,or inactivating p53 downstream targets.A growing number of researches have demonstrated that p53 can influence tumor progression through the tumor microenvironment(TME).TME is involved in the process of tumor development and metastasis and affects the clinical prognosis of patients.p53 participates in host immunity and engages in the immune landscape of the TME,but the specific mechanisms remain to be investigated.This review briefly explores the interactions between different states of p53 and TME components and their mechanisms,as well as their effects on tumor progression.To understand the progress of drug development and clinical studies related to p53 and tumor microenvironment. 展开更多
关键词 Tumor microenvironment(TME) P53 Wild type p53 Mutant p53 Cancer therapy
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Dynamics of inflammatory signals within the tumor microenvironment 被引量:1
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作者 Hala Issa Lokjan Singh +2 位作者 Kok-Song Lai Tina Parusheva-Borsitzky Shamshul Ansari 《World Journal of Experimental Medicine》 2025年第2期24-39,共16页
Tumor stroma,or tumor microenvironment(TME),has been in the spotlight during recent years for its role in tumor development,growth,and metastasis.It consists of a myriad of elements,including tumor-associated macropha... Tumor stroma,or tumor microenvironment(TME),has been in the spotlight during recent years for its role in tumor development,growth,and metastasis.It consists of a myriad of elements,including tumor-associated macrophages,cancer-associated fibroblasts,a deregulated extracellular matrix,endothelial cells,and vascular vessels.The release of proinflammatory molecules,due to the inflamed microenvironment,such as cytokines and chemokines is found to play a pivotal role in progression of cancer and response to therapy.This review discusses the major key players and important chemical inflammatory signals released in the TME.Furthermore,the latest breakthroughs in cytokine-mediated crosstalk between immune cells and cancer cells have been highlighted.In addition,recent updates on alterations in cytokine signaling between chronic inflammation and malignant TME have also been reviewed. 展开更多
关键词 Inflammatory signals Tumor microenvironment CYTOKINES INTERLEUKINS Transforming growth factor
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Synthesis and evaluation of smart drugs with integrated functions for identifying and treating oxidative microenvironments associated with cellular ferroptosis 被引量:1
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作者 Yibo Zhang Rui Cai +7 位作者 Yu Ding Jiangye Zhang Changxu Ning Jiangcheng Zeng Zhongxiang Zhou Shisheng Wang Yueqing Li Xiuhan Guo 《Smart Molecules》 2025年第2期58-64,共7页
Ferroptosis is a novel form of cell death driven by oxidative damage,and is implicated in various pathological conditions,including neurodegenerative diseases,retinal damage,and ischemia-reperfusion injury of organs.I... Ferroptosis is a novel form of cell death driven by oxidative damage,and is implicated in various pathological conditions,including neurodegenerative diseases,retinal damage,and ischemia-reperfusion injury of organs.Inhibiting ferroptosis has shown great promise as a therapeutic strategy for these diseases,underscoring the urgent need to develop effective ferroptosis inhibitors.Although Ferrostatin-1(Fer-1)is a potent ferroptosis inhibitor,its susceptibility to oxidation and metabolic inactivation limits its clinical utility.In this study,the accumulation of peroxides and the resulting oxidative damage in the cellular microenvironment during ferroptosis were utilized to design Ferrostatin-1 prodrugs with reactive oxygen species-responsive features.This approach led to the development of a series of ferroptosis inhibitors that were capable of recognizing oxidative damage in diseased areas,allowing for targeted release and improved stability.The novel compounds demonstrated significant inhibitory effects and selectivity against RSL-3-induced ferroptosis in HK-2 cells,with compound a1 exhibiting an EC50 of 15.4�0.7μM,outperforming Fer-1.These compounds effectively identify the oxidative microenvironment associated with ferroptosis,enabling the targeted release of Fer-1,which prevents lipid peroxide accumulation and inhibits ferroptosis.This strategy holds promise for treating diseases related to ferroptosis,offering a targeted and intelligent therapeutic approach. 展开更多
关键词 ferroptosis inhibitor oxidative microenvironment recognizing space-time controlled release
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Reevaluating Calculus bovis:Modulating the liver cancer immune microenvironment via the Wnt/β-catenin pathway 被引量:1
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作者 Shi-Yue Wang Kai-Juan Wang 《World Journal of Gastroenterology》 2025年第6期107-114,共8页
In this article,we comment on the work published by Huang et al,which explores the mechanisms by which Calculus bovis(CB)modulates the liver cancer immune microenvironment via the Wnt/β-catenin signalling pathway.The... In this article,we comment on the work published by Huang et al,which explores the mechanisms by which Calculus bovis(CB)modulates the liver cancer immune microenvironment via the Wnt/β-catenin signalling pathway.The study demon-strates that active components in CB effectively inhibit the activation of the Wnt/β-catenin pathway,significantly reducing the polarization of M2 tumor-associated macrophages.Both in vivo and in vitro experiments have validated the anti-tumour effects of CB,revealing its complex mechanisms of action through the modulation of immune cell functions within the tumour microenvironment.This article highlights CB’s therapeutic potential in liver cancer treatment and calls for further investigations into its mechanisms and clinical applications to develop safer,more effective options for patients.The study also revealed that key com-ponents of CB,such as bilirubin and bile acids,inhibit tumour cell proliferation and promote apoptosis through multiple pathways.Future research should explore the mechanisms of action of CB and its potential integration with existing treatments to improve the therapeutic outcomes of liver cancer patients.With multidisciplinary collaboration and advanced research,CB could become a key component of comprehensive liver cancer treatment,offering new hope for patients. 展开更多
关键词 Liver cancer Calculus bovis Wnt/β-catenin signalling pathway Tumour-associated macrophages Tumour immune microenvironment Anti-tumour therapy Traditional Chinese medicine
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Tumor-educated cells in tumor microenvironment:Key drivers of immunotherapy resistance 被引量:1
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作者 Ji'an Zou Shuxing Wang +6 位作者 Yingzhe Zhang Wentao Tian Ge Mai Yiting Xu Wenjie Xiao Edward E.Graves Fang Wu 《Chinese Journal of Cancer Research》 2025年第3期446-465,共20页
In the past decade,immunotherapies targeting cytotoxic T-lymphocyte antigen-4(CTLA-4),programmed cell death 1(PD-1),and PD-1 ligand(PD-L1)have been approved for solid tumors.However,some patients demonstrate suboptima... In the past decade,immunotherapies targeting cytotoxic T-lymphocyte antigen-4(CTLA-4),programmed cell death 1(PD-1),and PD-1 ligand(PD-L1)have been approved for solid tumors.However,some patients demonstrate suboptimal clinical outcomes due to resistance.The tumor microenvironment(TME)significantly affects the efficiency of immunotherapy by mediating interactions between tumor and non-tumor cells,including dendritic cells,T cells,B cells,macrophages,neutrophils,NK cells,and myeloid-derived suppressor cells(MDSCs).These non-tumor cells often exhibit two phenotypes with altered functions,and tumor cells drives their transition towards tumor promotion through tumor-education.Tumor-educated cells(TECs)are cells influenced by tumor cells,which acquire immune-suppressive phenotypes and promote tumor progression through resistance to anticancer therapies.These cells undergo modifications in response to signals from the tumor,which can influence their roles in tumor progression.Their dynamic interactions with tumor cells contribute to the reshaping of the TME,facilitating cancer growth and immune modulation.This review summarizes research on TECs in TME,explores mechanisms related to tumor education,and discusses their role in tumor progression and immunotherapy resistance.Additionally,potential therapeutic approaches targeting these cells are also reviewed,which may complement current treatment strategies. 展开更多
关键词 Tumor-educated cells tumor microenvironment cancer immunotherapy immune checkpoint blockade resistance
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Advances in Tumor Microenvironment and Immunotherapeutic Strategies for Hepatocellular Carcinoma 被引量:1
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作者 Jiahao Xue Jingchang Zhang +2 位作者 Gang Chen Liucui Chen Xinjun Lu 《Oncology Research》 2025年第9期2309-2329,共21页
Hepatocellular carcinoma(HCC)is a highly aggressive malignancy,largely driven by an immunosuppres-sive tumor microenvironment(TME)that facilitates tumor growth,immune escape,and resistance to therapy.Although immunoth... Hepatocellular carcinoma(HCC)is a highly aggressive malignancy,largely driven by an immunosuppres-sive tumor microenvironment(TME)that facilitates tumor growth,immune escape,and resistance to therapy.Although immunotherapy—particularly immune checkpoint inhibitors(ICIs)—has transformed the therapeutic landscape by restoring T cell-mediated anti-tumor responses,their clinical benefit as monotherapy remains suboptimal.This limitation is primarily attributed to immunosuppressive components within the TME,including tumor-associated macrophages,regulatory T cells(Tregs),and myeloid-derived suppressor cells(MDSCs).To address these challenges,combination strategies have been explored,such as dual checkpoint blockade targeting programmed cell death protein 1(PD-1),programmed death-ligand 1(PD-L1),and cytotoxic T-lymphocyte-associated antigen 4(CTLA-4),as well as synergistic use of ICIs with anti-angiogenic agents or TME-targeted interventions.These approaches have shown encouraging potential in enhancing immune efficacy.This review outlines the complex crosstalk between the TME and immunotherapeutic responses in HCC,emphasizing how combination regimens may overcome immune resistance.Furthermore,we discuss the remaining hurdles,including therapeutic resistance and immune-related adverse events,and propose future directions involving TME-associated biomarkers and individualized treatment strategies to improve patient outcomes. 展开更多
关键词 Hepatocellular carcinoma(HCC) tumor microenvironment(TME) IMMUNOTHERAPY immune checkpoint inhibitors(ICIs) combination therapy
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Microenvironment-responsive nanomedicines:a promising direction for tissue regeneration
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作者 Yuan Xiong Bo-Bin Mi +2 位作者 Mohammad-Ali Shahbazi Tian Xia Jun Xiao 《Military Medical Research》 2025年第7期1126-1143,共18页
Severe tissue defects present formidable challenges to human health,persisting as major contributors to mortality rates.The complex pathological microenvironment,particularly the disrupted immune landscape within thes... Severe tissue defects present formidable challenges to human health,persisting as major contributors to mortality rates.The complex pathological microenvironment,particularly the disrupted immune landscape within these defects,poses substantial hurdles to existing tissue regeneration strategies.However,the emergence of nanobiotechnology has opened a new direction in immunomodulatory nanomedicine,providing encouraging prospects for tissue regeneration and restoration.This review aims to gather recent advances in immunomodulatory nanomedicine to foster tissue regeneration.We begin by elucidating the distinctive features of the local immune microenvironment within defective tissues and its crucial role in tissue regeneration.Subsequently,we explore the design and functional properties of immunomodulatory nanosystems.Finally,we address the challenges and prospects of clinical translation in nanomedicine development,aiming to propose a potent approach to enhance tissue regeneration through synergistic immune modulation and nanomedicine integration. 展开更多
关键词 NANOMEDICINE microenvironment IMMUNOMODULATION Tissue regeneration BONE Repair
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