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硅纳米线负载铂纳米粒子用于光热增强声动力治疗。

Silicon nanowires decorated with platinum nanoparticles were applied for photothermal-enhanced sonodynamic therapy.

机构信息

Institute of Functional Nano & Soft Materials Laboratory (FUNSOM), Collaborative Innovation Center of Suzhou Nano Science and Technology, Soochow University, Suzhou, Jiangsu 215123, China.

出版信息

Theranostics. 2021 Sep 3;11(19):9234-9242. doi: 10.7150/thno.58755. eCollection 2021.

Abstract

Sonodynamic therapy (SDT) triggered by ultrasound (US) can overcome pivotal limitations of photo-therapy owing to its high depth-penetration and low phototoxicity. However, there is still a need to develop more efficient sonosensitizes to enhance the therapy efficiency. In this study, Pt nanoparticles (Pt NPs) are reduced on silicon nanowires (SiNWs) by reduction to prepare Si-Pt nanocomposites (Si-Pt NCs). Si-Pt NCs can produce reactive oxygen radicals (ROS) under ultrasound (US) irradiation, which have sonodynamic therapy (SDT) effect. Meanwhile, Si-Pt NCs can convert excess hydrogen peroxide (HO) into ROS in the tumor microenvironment, which endow strong chemodynamic therapy (CDT) effect. Taking the advantages of the mesoporous structure of SiNWs, the SDT and CDT effects of Si-Pt NCs are stronger than those of the pure Pt NPs and SiNWs. Besides, the mild photothermal effect of Si-Pt NCs further improves the SDT&CDT activity and realizes the combined cancer therapy. The developed Si-Pt NCs with the ability of photothermal enhanced SDT/CDT combined therapy play a momentous role in the novel cancer treatment.

摘要

声动力学疗法(SDT)在超声(US)的触发下可以克服光疗的关键局限性,因为它具有高深度穿透和低光毒性。然而,仍然需要开发更有效的声敏剂来提高治疗效率。 在这项研究中,Pt 纳米颗粒(Pt NPs)通过还原在硅纳米线(SiNWs)上被还原,制备出 Si-Pt 纳米复合材料(Si-Pt NCs)。 Si-Pt NCs 在超声(US)辐照下可以产生活性氧自由基(ROS),具有声动力学治疗(SDT)作用。同时,Si-Pt NCs 可以将肿瘤微环境中的过量过氧化氢(HO)转化为 ROS,赋予强大的化学动力学治疗(CDT)作用。利用 SiNWs 的介孔结构,Si-Pt NCs 的 SDT 和 CDT 效应强于纯 Pt NPs 和 SiNWs。此外,Si-Pt NCs 的温和光热效应进一步提高了 SDT&CDT 活性,实现了联合癌症治疗。 具有光热增强 SDT/CDT 联合治疗能力的开发的 Si-Pt NCs 在新型癌症治疗中发挥着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83f4/8490511/dd0e8ae9286a/thnov11p9234g001.jpg

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