Key Laboratory of Bioorganic Phosphorus Chemistry and Chemical Biology (Ministry of Education), Department of Chemistry, Tsinghua University, 100084, Beijing, China.
Materials and Interfaces Center, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, 518055, Shenzhen, China.
Biomaterials. 2021 Jun;273:120788. doi: 10.1016/j.biomaterials.2021.120788. Epub 2021 Apr 8.
Intrinsic immune behaviors of nanomaterials and immune systems promote research on their adjuvanticity and the design of next generation nanovaccine-based immunotherapies. Herein, we report a promising multifunctional nanoadjuvant by exploring the immune-potentiating effects of black phosphorus nanosheets (BPs) in vitro and in vivo. The facile coating of BPs with phenylalanine-lysine-phenylalanine (FKF) tripeptide-modified antigen epitopes (FKF-OVAp@BP) enables the generation of a minimalized nanovaccine by integrating high loading capacity, efficient drug delivery, comprehensive dendritic cell (DC) activation, and biocompatibility for cancer immunotherapy. Systemic immunization elicits potent antitumor cellular immunity and significantly augments checkpoint blockade (CPB) against melanoma in a mouse model. Furthermore, near-infrared (NIR) photothermal effects of BPs create an immune-favorable microenvironment for improved local immunization. This study offers new insight into the integration of immunoactivity and photothermal effects for enhanced cancer immunotherapy by using a nanoadjuvant and thus potentially advances the design and application of multifunctional adjuvant materials for cancer nanotreatment.
纳米材料的固有免疫行为和免疫系统促进了对其佐剂特性的研究,以及基于下一代纳米疫苗的免疫治疗的设计。在此,我们通过探索黑磷纳米片(BPs)在体外和体内的免疫增强作用,报告了一种有前途的多功能纳米佐剂。通过将苯丙氨酸-赖氨酸-苯丙氨酸(FKF)三肽修饰的抗原表位(FKF-OVAp@BP)简便地涂覆在 BPs 上,实现了最小化纳米疫苗的制备,该疫苗具有高载药能力、高效药物传递、全面的树突状细胞(DC)激活以及用于癌症免疫治疗的生物相容性。系统免疫引发了强烈的抗肿瘤细胞免疫,并在小鼠模型中显著增强了对黑色素瘤的检查点阻断(CPB)。此外,BPs 的近红外(NIR)光热效应为改善局部免疫创造了有利的免疫微环境。该研究通过使用纳米佐剂为增强癌症免疫治疗提供了对免疫活性和光热效应的整合的新见解,从而可能推进多功能佐剂材料用于癌症纳米治疗的设计和应用。