重编程
癌症免疫疗法
免疫疗法
纳米医学
癌症研究
医学
癌症
肿瘤科
内科学
生物
纳米技术
细胞
生物化学
材料科学
纳米颗粒
作者
Chen‐Wei Jiang,Minglu Tang,Yun Su,Junjie Xie,Qi Shang,Mingmei Guo,Xiaoran An,Longfei Lin,Ruibin Wang,Qian Huang,Guangji Zhang,Hui Li,Feihu Wang
标识
DOI:10.1016/j.apsb.2025.04.002
摘要
Tumors exhibit abnormal glucose metabolism, consuming excessive glucose and excreting lactate, which constructs a tumor microenvironment that facilitates cancer progression and disrupts immunotherapeutic efficacy. Currently, tumor glucose metabolic dysregulation to reshape the immunosuppressive microenvironment and enhance immunotherapy efficacy is emerging as an innovative therapeutic strategy. However, glucose metabolism modulators lack specificity and still face significant challenges in overcoming tumor delivery barriers, microenvironmental complexity, and metabolic heterogeneity, resulting in poor clinical benefit. Nanomedicines, with their ability to selectively target tumors or immune cells, respond to the tumor microenvironment, co-deliver multiple drugs, and facilitate combinatorial therapies, hold significant promise for enhancing immunotherapy through tumor glucose metabolic reprogramming. This review explores the complex interactions between tumor glucose metabolism-specifically metabolite transport, glycolysis processes, and lactate-and the immune microenvironment. We summarize how nanomedicine-mediated reprogramming of tumor glucose metabolism can enhance immunotherapy efficacy and outline the prospects and challenges in this field.
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