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石墨烯量子点包覆的磁性介孔硅纳米粒子作为一种多功能平台,用于控制药物输送、磁热疗和光热治疗。

Graphene Quantum Dots-Capped Magnetic Mesoporous Silica Nanoparticles as a Multifunctional Platform for Controlled Drug Delivery, Magnetic Hyperthermia, and Photothermal Therapy.

机构信息

School of Materials Science and Engineering, University of Shanghai for Science and Technology, 516 Jungong Road, Shanghai, 200093, China.

Professur für Anorganische Chemie I, Fachrichtung Chemie und Lebensmittelchemie, Technische Universität Dresden, Bergstrasse 66, Dresden, 01062, Germany.

出版信息

Small. 2017 Jan;13(2). doi: 10.1002/smll.201602225. Epub 2016 Oct 13.

Abstract

A multifunctional platform is reported for synergistic therapy with controlled drug release, magnetic hyperthermia, and photothermal therapy, which is composed of graphene quantum dots (GQDs) as caps and local photothermal generators and magnetic mesoporous silica nanoparticles (MMSN) as drug carriers and magnetic thermoseeds. The structure, drug release behavior, magnetic hyperthermia capacity, photothermal effect, and synergistic therapeutic efficiency of the MMSN/GQDs nanoparticles are investigated. The results show that monodisperse MMSN/GQDs nanoparticles with the particle size of 100 nm can load doxorubicin (DOX) and trigger DOX release by low pH environment. Furthermore, the MMSN/GQDs nanoparticles can efficiently generate heat to the hyperthermia temperature under an alternating magnetic field or by near infrared irradiation. More importantly, breast cancer 4T1 cells as a model cellular system, the results indicate that compared with chemotherapy, magnetic hyperthermia or photothermal therapy alone, the combined chemo-magnetic hyperthermia therapy or chemo-photothermal therapy with the DOX-loaded MMSN/GQDs nanosystem exhibits a significant synergistic effect, resulting in a higher efficacy to kill cancer cells. Therefore, the MMSN/GQDs multifunctional platform has great potential in cancer therapy for enhancing the therapeutic efficiency.

摘要

本文报道了一种多功能平台,用于协同治疗,包括控制药物释放、磁热疗和光热疗,该平台由石墨烯量子点(GQDs)作为帽和局部光热发生器以及磁性介孔硅纳米颗粒(MMSN)作为药物载体和磁性热种子组成。研究了 MMSN/GQDs 纳米粒子的结构、药物释放行为、磁热疗能力、光热效应和协同治疗效率。结果表明,粒径为 100nm 的单分散 MMSN/GQDs 纳米粒子可以负载阿霉素(DOX),并在低 pH 环境下触发 DOX 释放。此外,MMSN/GQDs 纳米粒子在交变磁场或近红外辐射下可以有效地将热量产生到热疗温度。更重要的是,以乳腺癌 4T1 细胞为模型细胞系统,结果表明,与化疗相比,单独的磁热疗或光热疗,或负载 DOX 的 MMSN/GQDs 纳米系统的化疗-磁热疗联合治疗或化疗-光热疗具有显著的协同作用,从而提高了杀伤癌细胞的效果。因此,MMSN/GQDs 多功能平台在癌症治疗中具有很大的潜力,可以提高治疗效率。

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