Lee Donghyun, Shin Jeongsu, Son Hangyu, Cheon Seo Young, Lee Yeeun, Park Joonhyuck, Koo Heebeom
Department of Medical Life Sciences and Department of Biomedicine & Health Sciences, College of Medicine, The Catholic University of Korea 222 Banpo-daero, Seocho-gu Seoul 06591 Republic of Korea
Catholic Photomedicine Research Institute, College of Medicine, The Catholic University of Korea 222 Banpo-daero, Seocho-gu Seoul 06591 Republic of Korea.
Nanoscale Adv. 2023 Feb 23;5(6):1600-1610. doi: 10.1039/d3na00043e. eCollection 2023 Mar 14.
In many cases, a single mode of cancer therapy shows limited efficacy in treating complex and heterogeneous tumors. To improve cancer treatment, combining chemo-, photodynamic-, photothermal-, radio-, and immunotherapy is clinically recognized. When different therapeutic treatments are combined, they often show synergetic effects that further improve therapeutic outcomes. In this review, we introduce nanoparticle (NP)-based combination cancer therapies that use organic and inorganic NPs. Liposomes, polymers, and exosomes can be prepared with amphiphilic properties, high physical stability, and low immune response to treat cancers in a multimodal way. Inorganic NPs, including upconversion, plasmonic, and mesoporous silica NPs, have emerged as a new technology for photodynamic-, photothermal-, and immunotherapy. These NPs can simultaneously carry multiple drug molecules and deliver them efficiently to tumor tissue, as demonstrated in many studies. In addition to reviewing recent advances in organic and inorganic NPs used in combination therapy for cancers, we also discuss their rational design and the outlook for future nanomedicine development.
在许多情况下,单一的癌症治疗模式在治疗复杂的异质性肿瘤时疗效有限。为了改善癌症治疗,临床上认可将化学疗法、光动力疗法、光热疗法、放射疗法和免疫疗法联合使用。当不同的治疗方法联合使用时,它们通常会显示出协同效应,从而进一步改善治疗效果。在这篇综述中,我们介绍了基于纳米颗粒(NP)的联合癌症疗法,这些疗法使用有机和无机NP。脂质体、聚合物和外泌体可以制备成亲水亲油两亲性、具有高物理稳定性且免疫反应低的物质,以多模式方式治疗癌症。无机NP,包括上转换NP、等离子体NP和介孔二氧化硅NP,已成为光动力疗法、光热疗法和免疫疗法的一项新技术。如许多研究所表明的,这些NP可以同时携带多个药物分子并将它们有效地递送至肿瘤组织。除了综述用于癌症联合治疗的有机和无机NP的最新进展外,我们还讨论了它们的合理设计以及未来纳米医学发展的前景。