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上临界溶液温度(UCST)聚合物功能化纳米医学用于控制药物释放和缓解肝癌治疗中的缺氧。

Upper-critical solution temperature (UCST) polymer functionalized nanomedicine for controlled drug release and hypoxia alleviation in hepatocellular carcinoma therapy.

机构信息

Department of General Surgery, Division of Biliary Surgery, West China Hospital, Sichuan University, Chengdu, 610041, China.

Research Center for Biliary Diseases, West China Hospital, Sichuan University, Chengdu, 610041, China.

出版信息

PLoS One. 2023 Aug 25;18(8):e0290237. doi: 10.1371/journal.pone.0290237. eCollection 2023.

Abstract

Recently, bioinspired material such as nanoparticle has been successfully applied in the cancer therapy. However, how to precisely control the drug release from nanomedicine in tumor tissue and overcome the hypoxic microenvironment of tumor tissue is still an important challenge in the development of nanomedicine. In this work, a new type of drug-loaded nanoparticles P(AAm-co-AN)-AuNRs@CeO2-DOX (PA-DOX) was prepared by combining high-efficiency photothermal reagents, critical up-conversion temperature polymer layer and anti-cancer drug doxorubicin (DOX) for the treatment of hepatocellular carcinoma (HCC). In this system, CeO2 can decompose hydrogen peroxide to H2O and O2 alleviate the anaerobic microenvironment of liver cancer cells. As a photothermal reagent, AuNRs@CeO2 can convert near-infrared light into heat energy to achieve local heat to kill cancer cells and ablate solid tumors. In addition, the elevated temperature would enable the polymer layer to undergo a phase transition to release more DOX to achieve a controlled release mechanism, which will open up a new horizon for clinical cancer treatment.

摘要

最近,仿生材料如纳米粒子已成功应用于癌症治疗。然而,如何精确控制纳米医学在肿瘤组织中的药物释放并克服肿瘤组织的缺氧微环境,仍是纳米医学发展中的一个重要挑战。在这项工作中,通过结合高效光热试剂、临界上转换温度聚合物层和抗癌药物阿霉素(DOX),制备了一种新型载药纳米粒子 P(AAm-co-AN)-AuNRs@CeO2-DOX(PA-DOX),用于治疗肝细胞癌(HCC)。在该体系中,CeO2 可以将过氧化氢分解为 H2O 和 O2,从而缓解肝癌细胞的厌氧微环境。作为一种光热试剂,AuNRs@CeO2 可以将近红外光转化为热能,实现局部热疗以杀死癌细胞并消融实体瘤。此外,升高的温度会使聚合物层发生相变,从而释放更多的 DOX,实现控制释放机制,这将为临床癌症治疗开辟新的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbcb/10456220/77b12f013c9f/pone.0290237.g001.jpg

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