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聚集体诱导发光纳米粒子包被聚乙二醇化纳米氧化石墨烯及其在体外和体内双光子荧光生物成像和光动力治疗中的应用。

Aggregation-Induced Emission Nanoparticles Encapsulated with PEGylated Nano Graphene Oxide and Their Applications in Two-Photon Fluorescence Bioimaging and Photodynamic Therapy in Vitro and in Vivo.

机构信息

State Key Laboratory of Modern Optical Instrumentations, Centre for Optical and Electromagnetic Research , Zhejiang University , Hangzhou , Zhejiang 310058 , China.

Department of Urology, Sir Run Run Shaw Hospital, College of Medicine , Zhejiang University , Hangzhou , Zhejiang 310016 , China.

出版信息

ACS Appl Mater Interfaces. 2018 Aug 1;10(30):25037-25046. doi: 10.1021/acsami.8b05546. Epub 2018 Jul 18.

Abstract

Aggregation-induced emission (AIE) nanoparticles have been shown promise for fluorescence bioimaging and photodynamic therapy due to the good combination of nanoparticles and organic dyes or photosensitizers. Among several kinds of AIE nanoparticles, those that are capsulated with nanographene oxides (NGO) are easy to make, size-tunable, and have proven to be very stable in deionized water. However, the stability in saline solution still needs improvement for further applications in chemical or biomedical fields, and the efficacy of photodynamic therapy using NGO-capsulate AIE photosensitizers has not been evaluated yet. Herein, we modified NGO with polyethylene glycol (PEG) to improve the stability of NGO-capsulated AIE nanoparticles in phosphate buffer saline. Furthermore, by combining this modification method with a dual-functional molecule which has both typical AIE property and photosensitizing ability, we performed both two-photon fluorescence bioimaging and photodynamic therapy in vitro and in vivo. Our work shows that AIE nanoparticles capsulated with PEGylated nanographene oxide can be a powerful tool for future bioimaging and photodynamic therapy applications.

摘要

聚集诱导发光(AIE)纳米粒子由于纳米粒子与有机染料或光敏剂的良好结合,在荧光生物成像和光动力治疗方面显示出了很大的应用潜力。在几种 AIE 纳米粒子中,用纳米氧化石墨烯(NGO)包裹的 AIE 纳米粒子易于制备,尺寸可调,并且在去离子水中已被证明非常稳定。然而,为了在化学或生物医学领域进一步应用,其在盐溶液中的稳定性仍需提高,同时 NGO 包裹的 AIE 光敏剂的光动力治疗效果也尚未得到评估。在此,我们用聚乙二醇(PEG)对 NGO 进行修饰,以提高 NGO 包裹的 AIE 纳米粒子在磷酸盐缓冲液中的稳定性。此外,通过将这种修饰方法与一种具有典型 AIE 性质和光敏能力的双功能分子相结合,我们在体外和体内进行了双光子荧光生物成像和光动力治疗。我们的工作表明,用 PEG 化纳米氧化石墨烯包裹的 AIE 纳米粒子可以成为未来生物成像和光动力治疗应用的有力工具。

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