Federal Scientific Research Center «Crystallography and Photonics» of the Russian Academy of Sciences, 119333 Moscow, Russia.
Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry of the Russian Academy of Sciences, 117997 Moscow, Russia.
Int J Mol Sci. 2023 Jun 24;24(13):10574. doi: 10.3390/ijms241310574.
Frontiers in theranostics are driving the demand for multifunctional nanoagents. Upconversion nanoparticle (UCNP)-based systems activated by near-infrared (NIR) light deeply penetrating biotissue are a powerful tool for the simultaneous diagnosis and therapy of cancer. The intercalation into large polymer micelles of poly(maleic anhydride-alt-1-octadecene) provided the creation of biocompatible UCNPs. The intrinsic properties of UCNPs (core@shell structure NaYF:Yb/Tm@NaYF) embedded in micelles delivered NIR-to-NIR visualization, photothermal therapy, and high drug capacity. Further surface modification of micelles with a thermosensitive polymer (poly-N-vinylcaprolactam) exhibiting a conformation transition provided gradual drug (doxorubicin) release. In addition, the decoration of UCNP micelles with Ag nanoparticles (Ag NPs) synthesized in situ by silver ion reduction enhanced the cytotoxicity of micelles at cell growth temperature. Cell viability assessment on Sk-Br-3, MDA-MB-231, and WI-26 cell lines confirmed this effect. The efficiency of the prepared UCNP complex was evaluated in vivo by Sk-Br-3 xenograft regression in mice for 25 days after peritumoral injection and photoactivation of the lesions with NIR light. The designed polymer micelles hold promise as a photoactivated theranostic agent with quattro-functionalities (NIR absorption, photothermal effect, Ag NP cytotoxicity, and Dox loading) that provides imaging along with chemo- and photothermal therapy enhanced with Ag NPs.
治疗学前沿正在推动对多功能纳米制剂的需求。上转换纳米粒子(UCNP)基系统在近红外(NIR)光的激活下,能够穿透生物组织,是癌症同时诊断和治疗的有力工具。聚(马来酸酐-alt-1-十八烯)的大聚合物胶束的嵌入提供了生物相容性 UCNP 的创造。UCNP 的固有特性(核/壳结构 NaYF:Yb/Tm@NaYF)嵌入胶束中,实现了 NIR 到 NIR 的可视化、光热治疗和高药物容量。进一步用具有构象转变的热敏聚合物(聚-N-乙烯基己内酰胺)对胶束进行表面修饰,提供了药物(阿霉素)的逐渐释放。此外,通过银离子还原原位合成的 Ag 纳米粒子(Ag NPs)对 UCNP 胶束的修饰增强了胶束在细胞生长温度下的细胞毒性。Sk-Br-3、MDA-MB-231 和 WI-26 细胞系的细胞活力评估证实了这一效果。通过在肿瘤周围注射后 25 天对 Sk-Br-3 异种移植瘤的回归和用 NIR 光对病变进行光激活,在体内评估了制备的 UCNP 复合物的效率。设计的聚合物胶束有望成为一种具有四重功能(NIR 吸收、光热效应、Ag NP 细胞毒性和 Dox 负载)的光激活治疗剂,可提供成像以及 Ag NPs 增强的化学和光热治疗。