J Biomed Nanotechnol. 2019 Sep 1;15(9):1839-1866. doi: 10.1166/jbn.2019.2827.
Immunotherapy is one of the most potent options for cancer treatment, with numerous breakthroughs in this field, bringing us closer to the realization of cancer eradication. However, the intrinsic limits of immunotherapy, such as its low responsive rate, narrow therapeutic window and systemic toxicity, have hindered its clinical application and thus prompted the development of nanotechnology-assisted modality for more effective and safer cancer immunotherapy. By locally increasing the drug concentration and limiting drug exposure to normal tissues, nanocarriers significantly potentiate the effects of immunotherapy while reducing side effects. Additionally, nanoparticle-based drug delivery systems allow different therapeutic strategies as a complement to conventional immunotherapeutic modalities, providing numerous novel and effective approaches for combinational cancer therapy. In this review, we first briefly introduce the five main classes of immunotherapy, and then we extensively covered some advanced biomaterials and novel strategies of nanotechnology intervention and detailed how these approaches function to enhance immunotherapeutic and combinational combination therapeutic efficacy.
免疫疗法是癌症治疗中最有效的方法之一,该领域的众多突破使我们更接近于实现癌症的消除。然而,免疫疗法的内在局限性,如低响应率、治疗窗口窄和全身毒性,阻碍了其临床应用,因此促使人们开发纳米技术辅助的模式以实现更有效和更安全的癌症免疫治疗。通过局部增加药物浓度并限制药物暴露于正常组织,纳米载体显著增强了免疫疗法的效果,同时降低了副作用。此外,基于纳米颗粒的药物递送系统允许不同的治疗策略作为对传统免疫治疗方式的补充,为联合癌症治疗提供了许多新颖有效的方法。在这篇综述中,我们首先简要介绍了免疫疗法的五个主要类别,然后广泛涵盖了一些先进的生物材料和纳米技术干预的新策略,并详细介绍了这些方法如何增强免疫治疗和联合治疗的疗效。