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多功能A7R肽修饰的中空介孔二氧化硅@Ag₂S纳米诊疗剂用于光声/近红外荧光成像引导的肿瘤靶向化学-光热疗法

Multifunctional A7R Peptide-Modified Hollow Mesoporous Silica@Ag₂S Nanotheranostics for Photoacoustic/Near-Infrared Fluorescence Imaging-Guided Tumor-Targeted Chemo-Photothermal Therapy.

作者信息

Wu Jianrong, Bremner David H, Niu Shiwei, Li Dejian, Tang Ranran, Zhu Li-Min

出版信息

J Biomed Nanotechnol. 2019 Jul 1;15(7):1415-1431. doi: 10.1166/jbn.2019.2729.

Abstract

The fabrication of theranostic nanoplatforms which combine diagnostic and therapeutic functions have become an emerging approach for personal nanomedicine. Herein, a multifunctional nanoplatform consisting of A7R peptide (ATWLPPR) conjugated hollow mesoporous silica nanoparticles decorated with Ag₂S nanodots (Ag₂S@HMSs-A7R) has been developed as an efficient theranostic agent for simultaneous photoacoustic (PA) imaging and near-infrared fluorescence imaging (NIRF)-guided targeted chemotherapy and photothermal therapy against human breast cancer MDA-MB-231 cells. The design of Ag₂S doped HMSs by controlled growth of ultrasmall Ag₂S nanodots in the mesopores of HMSs. The synthesized multifunctional nanoplatform exhibits high doxorubicin (DOX) loading capability (451 mg/g) and can be precisely controlled by glutathione (GSH), acidic environment and external laser irradiation. Thanks to the strong tunable NIR absorbance of Ag₂S, the nanoplatform produce effective photoacoustic capacity and superb photothermal conversion under light irradiation, thereby exhibiting sufficient fluorescence and photoacoustic signals as well as desirable photothermal therapeutic performance. Importantly, A7R peptide can selectively bind the Neuropilin-1 (NRP-1) receptor which overexpressed by the MDA-MB-231 cells. The achieved Ag₂S@HMSs-A7R possess ideal imaging capability for both PA and NIRF imaging , and the anti-tumor effect of Ag₂S@HMSs(DOX)-A7R was studied and , showing remarkable synergistic chemo-photothermal effect (combination index, CI < 1). Over all, the strategy of utilizing triple-responsive nanocarriers presents a highly promising potential as an efficient method for cancer theranostics.

摘要

将诊断和治疗功能相结合的治疗诊断纳米平台的制造已成为个人纳米医学的一种新兴方法。在此,已开发出一种多功能纳米平台,其由缀合有A7R肽(ATWLPPR)的中空介孔二氧化硅纳米颗粒组成,并用Ag₂S纳米点(Ag₂S@HMSs-A7R)进行修饰,作为一种高效的治疗诊断剂,用于对人乳腺癌MDA-MB-231细胞同时进行光声(PA)成像和近红外荧光成像(NIRF)引导的靶向化疗及光热治疗。通过在HMSs的介孔中可控生长超小Ag₂S纳米点来设计Ag₂S掺杂的HMSs。合成的多功能纳米平台表现出高阿霉素(DOX)负载能力(451 mg/g),并且可以通过谷胱甘肽(GSH)、酸性环境和外部激光照射进行精确控制。由于Ag₂S具有很强的近红外吸收可调性,该纳米平台在光照射下产生有效的光声能力和出色的光热转换,从而表现出足够的荧光和光声信号以及理想的光热治疗性能。重要的是,A7R肽可以选择性结合MDA-MB-231细胞过表达的神经纤毛蛋白-1(NRP-1)受体。所制备的Ag₂S@HMSs-A7R对PA和NIRF成像均具有理想的成像能力,并且研究了Ag₂S@HMSs(DOX)-A7R的抗肿瘤效果,显示出显著的协同化学-光热效应(联合指数,CI < 1)。总体而言,利用三响应纳米载体的策略作为一种高效的癌症治疗诊断方法具有非常广阔的前景。

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