Pontico Mariano, Conte Miriam, Petronella Francesca, Frantellizzi Viviana, De Feo Maria Silvia, Di Luzio Dario, Pani Roberto, De Vincentis Giuseppe, De Sio Luciano
Department of Radiological Sciences, Oncology and Anatomo-Pathology, Sapienza, University of Rome, 00185 Rome, Italy.
Institute of Crystallography CNR-IC, National Research Council of Italy, Monterotondo, 00015 Rome, Italy.
Pharmaceutics. 2023 Jan 18;15(2):319. doi: 10.3390/pharmaceutics15020319.
The meeting and merging between innovative nanotechnological systems, such as nanoparticles, and the persistent need to outperform diagnostic-therapeutic approaches to fighting cancer are revolutionizing the medical research scenario, leading us into the world of nanomedicine. Photothermal therapy (PTT) is a non-invasive thermo-ablative treatment in which cellular hyperthermia is generated through the interaction of near-infrared light with light-to-heat converter entities, such as gold nanoparticles (GNPs). GNPs have great potential to improve recovery time, cure complexity, and time spent on the treatment of specific types of cancer. The development of gold nanostructures for photothermal efficacy and target selectivity ensures effective and deep tissue-penetrating PTT with fewer worries about adverse effects from nonspecific distributions. Regardless of the thriving research recorded in the last decade regarding the multiple biomedical applications of nanoparticles and, in particular, their conjugation with drugs, few works have been completed regarding the possibility of combining GNPs with the cancer-targeted pharmaceutical fluorodeoxyglucose (FDG). This review aims to provide an actual scenario on the application of functionalized GNP-mediated PTT for cancer ablation purposes, regarding the opportunity given by the F-fluorodeoxyglucose (F-FDG) functionalization.
诸如纳米颗粒等创新纳米技术系统与超越癌症诊断治疗方法的持续需求之间的交汇与融合,正在彻底改变医学研究格局,引领我们进入纳米医学领域。光热疗法(PTT)是一种非侵入性热消融治疗方法,通过近红外光与光热转换实体(如金纳米颗粒(GNP))的相互作用产生细胞热疗。GNP在缩短恢复时间、治愈复杂性以及减少特定类型癌症治疗时间方面具有巨大潜力。用于光热疗效和靶向选择性的金纳米结构的开发,确保了有效且能深入组织的PTT,同时减少了对非特异性分布产生不良反应的担忧。尽管在过去十年中,关于纳米颗粒的多种生物医学应用,特别是它们与药物的结合,已有大量研究成果,但关于将GNP与癌症靶向药物氟脱氧葡萄糖(FDG)结合的可能性的研究却很少。本综述旨在就F - 氟脱氧葡萄糖(F - FDG)功能化带来的机遇,提供关于功能化GNP介导的PTT用于癌症消融目的的实际应用情况。