State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, People's Republic of China.
University of Chinese Academy of Sciences, Beijing, People's Republic of China.
Int J Nanomedicine. 2024 Oct 26;19:10899-10915. doi: 10.2147/IJN.S480799. eCollection 2024.
Recent advances in tumor immunotherapy have highlighted the pivotal role of carbon nanomaterials, such as carbon dots, graphene quantum dots, and carbon nanotubes. This review examines the unique benefits of these materials in cancer treatment, focusing on their mechanisms of action within immunotherapy. These include applications in immunoregulation, recognition, and enhancement. We explore how these nanomaterials when combined with specific biomolecules, can form immunosensors. These sensors are engineered for highly sensitive and specific detection of tumor markers, offering crucial support for early diagnosis and timely therapeutic interventions. This review also addresses significant challenges facing carbon nanomaterials in clinical settings, such as issues related to long-term biocompatibility and the hurdles of clinical translation. These challenges require extensive ongoing research and discussion. This review is of both theoretical and practical importance, aiming to promote using carbon nanomaterials in tumor immunotherapy, potentially transforming clinical outcomes and enhancing patient care.
近年来,肿瘤免疫疗法的进展凸显了碳纳米材料(如碳点、石墨烯量子点和碳纳米管)的关键作用。本综述探讨了这些材料在癌症治疗中的独特优势,重点关注它们在免疫疗法中的作用机制。这些机制包括在免疫调节、识别和增强方面的应用。我们探讨了这些纳米材料与特定生物分子结合时如何形成免疫传感器。这些传感器经过工程设计,可实现对肿瘤标志物的高灵敏度和特异性检测,为早期诊断和及时的治疗干预提供关键支持。本综述还讨论了碳纳米材料在临床环境中面临的重大挑战,如与长期生物相容性相关的问题以及临床转化的障碍。这些挑战需要广泛的持续研究和讨论。本综述具有理论和实际重要性,旨在促进碳纳米材料在肿瘤免疫疗法中的应用,有可能改变临床结果并改善患者护理。