CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Advanced Polymeric Nanoparticles for Cancer Immunotherapy: Materials Engineering, Immunotherapeutic Mechanism and Clinical Translation.
Advanced Polymeric Nanoparticles for Cancer Immunotherapy: Materials Engineering, Immunotherapeutic Mechanism and Clinical Translation.
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癌症免疫疗法利用免疫系统组分来治疗恶性肿瘤,已成为当代治疗策略的基石。然而,关于癌症免疫疗法疗效和安全性的关键问题仍然严峻。纳米技术,尤其是聚合物纳米颗粒(PNPs),在操控性方面提供了无与伦比的灵活性——从化学组成和物理性质到纳米组装体的精确控制。PNPs 提供了一个最佳平台,可在广泛的免疫治疗模式中增强效力并最小化全身毒性。在这篇综合综述中,阐述了聚合物化学的基础知识,以及从物理化学角度用于癌症免疫治疗的 PNPs 的最新设计,涵盖治疗性癌症疫苗、原位疫苗接种、过继性 T 细胞疗法、肿瘤浸润免疫细胞靶向疗法、治疗性抗体和细胞因子疗法。每种免疫疗法都需要在聚合物纳米平台上采用独特定制的设计策略。特别关注 PNPs 的广泛应用,以及对其作用机制的探究以提高疗效。讨论了 PNPs 的安全性特征和临床研究进展。
此外,还探讨了聚合物纳米免疫治疗药物即将把癌症治疗范式转变为临床的未来发展和新兴趋势。
Cancer immunotherapy, which leverages immune system components to treat malignancies, has emerged as a cornerstone of contemporary therapeutic strategies. Yet, critical concerns about the efficacy and safety of cancer immunotherapies remain formidable. Nanotechnology, especially polymeric nanoparticles (PNPs), offers unparalleled flexibility in manipulation-from the chemical composition and physical properties to the precision control of nanoassemblies. PNPs provide an optimal platform to amplify the potency and minimize systematic toxicity in a broad spectrum of immunotherapeutic modalities.
In this comprehensive review, the basics of polymer chemistry, and state-of-the-art designs of PNPs from a physicochemical standpoint for cancer immunotherapy, encompassing therapeutic cancer vaccines, in situ vaccination, adoptive T-cell therapies, tumor-infiltrating immune cell-targeted therapies, therapeutic antibodies, and cytokine therapies are delineated.
Each immunotherapy necessitates distinctively tailored design strategies in polymeric nanoplatforms. The extensive applications of PNPs, and investigation of their mechanisms of action for enhanced efficacy are particularly focused on. The safety profiles of PNPs and clinical research progress are discussed.
Additionally, forthcoming developments and emergent trends of polymeric nano-immunotherapeutics poised to transform cancer treatment paradigms into clinics are explored.
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