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CuFeS 纳米粒子通过温敏聚合物功能化用于光热治疗和外部控制的药物递送。

CuFeS Nanoparticles Functionalized with a Thermoresponsive Polymer for Photothermia and Externally Controlled Drug Delivery.

机构信息

Italian Institute of Technology, via Morego 30, 16163 Genoa, Italy.

Dipartimento di Chimica e Chimica Industriale, Università di Genova, Via Dodecaneso 31, 16146 Genoa, Italy.

出版信息

ACS Appl Mater Interfaces. 2023 May 17;15(19):22999-23011. doi: 10.1021/acsami.3c03902. Epub 2023 May 3.

Abstract

CuFeS chalcopyrite nanoparticles (NPs) can generate heat under exposure to near-infrared laser irradiation. Here, we develop a protocol to decorate the surface of CuFeS NPs (13 nm) with a thermoresponsive (TR) polymer based on poly(ethylene glycol methacrylate) to combine heat-mediated drug delivery and photothermal heat damage. The resulting TR-CuFeS NPs feature a small hydrodynamic size (∼75 nm), along with high colloidal stability and a TR transition temperature of 41 °C in physiological conditions. Remarkably, TR-CuFeS NPs, when exposed to a laser beam (in the range of 0.5 and 1.5 W/cm) at NP concentrations as low as 40-50 μg Cu/mL, exhibit a high heating performance with a rise in the solution temperature to hyperthermia therapeutic values (42-45 °C). Furthermore, TR-CuFeS NPs worked as nanocarriers, being able to load an appreciable amount of doxorubicin (90 μg DOXO/mg Cu), a chemotherapeutic agent whose release could then be triggered by exposing the NPs to a laser beam (through which a hyperthermia temperature above 42 °C could be reached). In an study performed on U87 human glioblastoma cells, bare TR-CuFeS NPs were proven to be nontoxic at a Cu concentration up to 40 μg/mL, while at the same low dose, the drug-loaded TR-CuFeS-DOXO NPs displayed synergistic cytotoxic effects due to the combination of direct heat damage and DOXO chemotherapy, under photo-irradiation by a 808 nm laser (1.2 W/cm). Finally, under a 808 nm laser, the TR-CuFeS NPs generated a tunable amount of reactive oxygen species depending on the applied power density and NP concentration.

摘要

铜铁硫(CuFeS)黄铜矿纳米粒子(NPs)在近红外激光照射下会产生热量。在此,我们开发了一种方案,通过在铜铁硫 NPs(13nm)表面修饰热敏聚合物(基于聚乙二醇甲基丙烯酸酯),将热介导药物输送和光热热损伤结合起来。所得的热敏 CuFeS NPs 的水动力尺寸较小(约 75nm),具有高胶体稳定性,在生理条件下的热敏转变温度为 41°C。值得注意的是,在激光强度为 0.5 至 1.5W/cm 时,低至 40-50μg Cu/mL 的 NPs 浓度下,TR-CuFeS NPs 表现出高的升温性能,溶液温度升高至治疗性高热值(42-45°C)。此外,TR-CuFeS NPs 作为纳米载体,能够负载可观量的阿霉素(90μg DOXO/mg Cu),该化疗药物的释放可以通过将 NPs 暴露于激光来触发(通过达到 42°C 以上的热疗温度)。在对 U87 人神经胶质瘤细胞进行的研究中,裸 TR-CuFeS NPs 在高达 40μg/mL 的 Cu 浓度下被证明是无毒的,而在相同的低剂量下,载药的 TR-CuFeS-DOXO NPs 由于光热破坏和 DOXO 化疗的联合作用,显示出协同的细胞毒性效应,在 808nm 激光(1.2W/cm)的照射下。最后,在 808nm 激光照射下,TR-CuFeS NPs 会根据施加的功率密度和 NPs 浓度产生可调节的活性氧物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ee2/10197081/d3759ee06cbd/am3c03902_0002.jpg

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