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核壳壳多功能纳米平台用于细胞内肿瘤相关 mRNAs 成像和近红外光触发的光动力-光热协同治疗。

Core-Shell-Shell Multifunctional Nanoplatform for Intracellular Tumor-Related mRNAs Imaging and Near-Infrared Light Triggered Photodynamic-Photothermal Synergistic Therapy.

机构信息

State Key Laboratory of Chemo/Bio-Sensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University , Changsha 410082, People's Republic of China.

School of Pharmacy, Nanjing Medical University , Nanjing 211166, People's Republic of China.

出版信息

Anal Chem. 2017 Oct 3;89(19):10321-10328. doi: 10.1021/acs.analchem.7b02081. Epub 2017 Sep 13.

Abstract

A multifunctional nanoplatform, which generally integrates biosensing, imaging diagnosis, and therapeutic functions into a single nanoconstruct, has great important significance for biomedicine and nanoscience. Here, we developed a core-shell-shell multifunctional polydopamine (PDA) modified upconversion nanoplatform for intracellular tumor-related mRNAs detection and near-infrared (NIR) light triggered photodynamic and photothermal synergistic therapy (PDT-PTT). The nanoplatform was constructed by loading a silica shell on the hydrophobic upconversion nanoparticles (UCNPs) with hydrophilic photosensitizer methylene blue (MB) entrapped in it, and then modifying PDA shells through an in situ self-polymerization process, thus yielding a core-shell-shell nanoconstruct UCNP@SiO-MB@PDA. By taking advantages of preferential binding properties of PDA for single-stranded DNA over double-stranded DNA and the excellent quenching property of PDA, a UCNP@SiO-MB@PDA-hairpin DNA (hpDNA) nanoprobe was developed through adsorption of fluorescently labeled hpDNA on PDA shells for sensing intracellular tumor-related mRNAs and discriminating cancer cells from normal cells. In addition, the fluorescence resonance energy transfer from the upconversion fluorescence (UCF) emission at 655 nm of the UCNPs to the photosensitizer MB molecules could be employed for PDT. Moreover, due to the strong NIR absorption and high photothermal conversion efficiency of PDA, the UCF emission at 800 nm of the UCNPs could be used for PTT. We demonstrated that the UCNP@SiO-MB@PDA irradiated with NIR light had considerable PDT-PTT effect. These results revealed that the developed multifunctional nanoplatform provided promising applications in future oncotherapy by integrating cancer diagnosis and synergistic therapy.

摘要

一种多功能纳米平台,通常将生物传感、成像诊断和治疗功能集成到单个纳米结构中,对于生物医学和纳米科学具有重要意义。在这里,我们开发了一种核壳壳多功能聚多巴胺(PDA)修饰的上转换纳米平台,用于细胞内肿瘤相关 mRNA 的检测和近红外(NIR)光触发光动力和光热协同治疗(PDT-PTT)。该纳米平台是通过在亲水性上转换纳米粒子(UCNPs)上负载二氧化硅壳,将其内部包裹的亲水性光敏剂亚甲蓝(MB)制成的,然后通过原位自聚合过程修饰 PDA 壳,从而得到核壳壳纳米结构 UCNP@SiO-MB@PDA。利用 PDA 对单链 DNA 比对双链 DNA 的优先结合特性和 PDA 的优异猝灭特性,通过将荧光标记的 hpDNA 吸附在 PDA 壳上,开发了一种 UCNP@SiO-MB@PDA-发夹 DNA(hpDNA)纳米探针,用于检测细胞内肿瘤相关 mRNA,并区分癌细胞和正常细胞。此外,上转换荧光(UCF)发射在 655nm 的 UCNPs 的荧光共振能量转移到光敏剂 MB 分子可用于 PDT。此外,由于 PDA 具有很强的近红外吸收和高光热转换效率,UCNPs 的 800nm 的 UCF 发射可用于 PTT。我们证明了用近红外光照射的 UCNP@SiO-MB@PDA 具有相当的 PDT-PTT 效果。这些结果表明,所开发的多功能纳米平台通过整合癌症诊断和协同治疗,为未来的肿瘤治疗提供了有前景的应用。

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