UCIBIO, Department of Life Sciences, Faculdade de Ciências e Tecnologia, Universidade NOVA de Lisboa, Caparica, Portugal.
Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2021 Sep;13(5):e1704. doi: 10.1002/wnan.1704. Epub 2021 Feb 9.
Cancer treatment has yet to find a "silver bullet" capable of selectively and effectively kill tumor cells without damaging healthy cells. Nanomedicine is a promising field that can combine several moieties in one system to produce a multifaceted nanoplatform. The tumor microenvironment (TME) is considered responsible for the ineffectiveness of cancer therapeutics and the difficulty in the translation from the bench to bed side of novel nanomedicines. A promising approach is the use of combinatorial therapies targeting the TME with the use of stimuli-responsive nanomaterials which would increase tumor targeting. Contemporary combined strategies for TME-targeting nanoformulations are based on the application of external stimuli therapies, such as photothermy, hyperthermia or ultrasounds, in combination with stimuli-responsive nanoparticles containing a core, usually composed by metal oxides or graphene, and a biocompatible stimuli-responsive coating layer that could also contain tumor targeting moieties and a chemotherapeutic agent to enhance the therapeutic efficacy. The obstacles that nanotherapeutics must overcome in the TME to accomplish an effective therapeutic cargo delivery and the proposed strategies for improved nanotherapeutics will be reviewed. This article is categorized under: Therapeutic Approaches and Drug Discovery > Nanomedicine for Oncologic Disease Nanotechnology Approaches to Biology > Nanoscale Systems in Biology Therapeutic Approaches and Drug Discovery > Emerging Technologies.
癌症治疗尚未找到一种能够选择性和有效地杀死肿瘤细胞而不损伤健康细胞的“银弹”。纳米医学是一个有前途的领域,可以将几种部分结合在一个系统中,产生一个多方面的纳米平台。肿瘤微环境(TME)被认为是癌症治疗无效的原因,也是新型纳米药物从实验室到临床应用的困难所在。一种有前途的方法是使用针对 TME 的组合疗法,结合使用对刺激有反应的纳米材料,这将增加肿瘤的靶向性。用于 TME 靶向纳米制剂的当代联合策略基于外部刺激疗法的应用,如光热疗法、热疗或超声,与包含核心的刺激响应性纳米粒子结合使用,核心通常由金属氧化物或石墨烯组成,以及生物相容性刺激响应涂层,其中还可以包含肿瘤靶向部分和化疗药物,以增强治疗效果。纳米治疗必须克服 TME 中的障碍,以实现有效的治疗货物输送,以及提出的改进纳米治疗的策略将在本文中进行综述。本文属于以下类别: 治疗方法和药物发现 > 肿瘤纳米医学 纳米技术在生物学中的应用 > 生物学中的纳米系统 治疗方法和药物发现 > 新兴技术。