College of Veterinary Medicine, Oklahoma State University, Stillwater, OK, USA.
Department of Microbiology and Immunology, Geisel School of Medicine at Dartmouth, Hanover, NH, USA.
Int J Hyperthermia. 2020 Dec;37(3):18-33. doi: 10.1080/02656736.2020.1802519.
Immunotherapy to treat cancer is now an established clinical approach. Immunotherapy can be applied systemically, as done with checkpoint blockade antibodies, but it can also be injected directly into identified tumors, in a strategy of vaccination (ISV). ISV is designed to stimulate a strong local antitumor immune response involving both innate and adaptive immune cells, and through this generate a systemic antitumor immune response against metastatic tumors. A variety of ISVs have been utilized to generate an immunostimulatory tumor microenvironment (TME). These include attenuated microorganisms, recombinant proteins, small molecules, physical disruptors of TME (alternating magnetic and focused ultrasound heating, photothermal therapy, and radiotherapy), and more recently nanoparticles (NPs). NPs are attractive and unique since they can load multiple drugs or other reagents to influence immune and cancer cell functions in the TME, affording a unique opportunity to stimulate antitumor immunity. Here, we describe the NP-ISV therapeutic mechanisms, review chemically synthesized NPs (i.e., liposomes, polymeric, chitosan-based, inorganic NPs, etc.), biologically derived NPs (virus and bacteria-based NPs), and energy-activated NP-ISVs in the context of their use as local ISV. Data suggests that NP-ISVs can enhance outcomes of immunotherapeutic regimens including those utilizing tumor hyperthermia and checkpoint blockade therapies.
免疫疗法治疗癌症目前已成为一种既定的临床方法。免疫疗法可以全身应用,如使用检查点阻断抗体,但也可以直接注射到已识别的肿瘤中,这是一种疫苗接种(ISV)策略。ISV 的设计目的是刺激强烈的局部抗肿瘤免疫反应,涉及先天和适应性免疫细胞,并通过这种反应产生针对转移性肿瘤的全身抗肿瘤免疫反应。已经有多种 ISV 被用于产生免疫刺激性肿瘤微环境(TME)。这些包括减毒微生物、重组蛋白、小分子、TME 的物理破坏者(交变磁场和聚焦超声加热、光热疗法和放射疗法),以及最近的纳米颗粒(NPs)。NPs 具有吸引力和独特性,因为它们可以负载多种药物或其他试剂来影响 TME 中的免疫和癌细胞功能,为刺激抗肿瘤免疫提供了独特的机会。在这里,我们描述了 NP-ISV 的治疗机制,综述了化学合成的 NPs(即脂质体、聚合物、壳聚糖基、无机 NPs 等)、生物衍生的 NPs(病毒和细菌基 NPs)以及能量激活的 NP-ISV,讨论了它们作为局部 ISV 的应用。数据表明,NP-ISV 可以增强免疫治疗方案的疗效,包括利用肿瘤热疗和检查点阻断治疗的方案。