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一种通用的自组装方法,用于近红外二区荧光成像和光疗的光热治疗。

A generic self-assembly approach towards phototheranostics for NIR-II fluorescence imaging and phototherapy.

机构信息

Xiangyang Central Hospital, Affiliated Hospital of Hubei University of Arts and Science, Hubei 441021, China.

MOE key Laboratory for Analytical Science of Food Safety and Biology, College of Chemistry, Fuzhou University, Fuzhou 350108, China.

出版信息

Acta Biomater. 2022 Mar 1;140:601-609. doi: 10.1016/j.actbio.2021.11.023. Epub 2021 Nov 20.

Abstract

Controllable self-assembly of photonic molecules for precise biomedicine is highly desirable but challenging to prepare multifunctional nano-phototheranostics. Herein, we developed a generic self-assembly approach to design nano-phototheranostics that provides NIR-II fluorescence imaging and phototherapy. We first designed and synthesized two amphiphilic photonic molecules, PEG-IR806 and BODIPY. Then, we prepared the co-self-assembled phototheranostic agents, PEG-IR806/BODIPY nanoparticles (PIBY NPs). The morphology of the PIBY NPs is controllable by adjusting the ratio of PEG-IR806 and BODIPY during self-assembly. The NIR-II fluorescence properties and phototherapy capability of the PIBY NPs were demonstrated in vitro and in vivo. By tuning the ratio of PEG-IR806 and BODIPY, the PIBY NPs showed various morphologies (e.g. spherical nanoparticles, nanovesicles and rod-like nanoparticles). The PEG-IR806 plays two roles in the co-self-assemblies, one is second near-infrared (NIR-II, 1000-1700 nm) agent, the other is the surfactant for BODIPY encapsulation. The phototherapeutic PIBY NPs all show bright NIR-II fluorescence and effective phototherapeutic (photothermal and photodynamic) properties, which are attributed to IR806 and BODIPY, respectively. The driving force of the self-assembly can be attributed to the electrostatic interaction between NIR806 and BODIPY and their hydrophobicity. The rod-like PIBY NPs (rPIBY NPs) demonstrated a low half inhibitory concentration (IC) of 3.96 µg/mL on U87MG cells. The NIR-II imaging showed the accumulation of rPIBY NPs in the tumor region. After systemic injection of rPIBY NPs at low dose (0.5 mg/kg), the tumor growth was greatly inhibited upon laser irradiation without noticeable side effects. This study provides a generic self-assembly approach to fabricate NIR-II imaging and phototherapeutic platform for cancer phototheranostics. STATEMENT OF SIGNIFICANCE: Nanophototheranostics providing NIR-II fluorescence imaging and phototherapy are expected to play a critical role in modern precision medicine. Controllable self-assembly of optical molecules for the fabrication of efficient nanophototheranostics is highly desirable but challenging. This work reports for the first time the co-assembly of a NIR-II imaging contrast agent and a phototherapeutic agent to yield nanophototheranostics with various morphologies. The design of molecular co-assembly with complementary optical functions can be a generic method for future the development of phototheranostics.

摘要

用于精确医学的光子分子可控自组装对于制备多功能纳米光热治疗极具吸引力,但具有挑战性。在此,我们开发了一种通用的自组装方法来设计提供近红外二区(NIR-II)荧光成像和光疗的纳米光热治疗剂。我们首先设计并合成了两种两亲性的光子分子,PEG-IR806 和 BODIPY。然后,我们制备了共自组装的光热治疗剂,PEG-IR806/BODIPY 纳米颗粒(PIBY NPs)。通过在自组装过程中调整 PEG-IR806 和 BODIPY 的比例,可以控制 PIBY NPs 的形态。PIBY NPs 的近红外二区(NIR-II,1000-1700nm)荧光性质和光疗能力在体外和体内得到了证明。通过调节 PEG-IR806 和 BODIPY 的比例,PIBY NPs 呈现出各种形态(例如,球形纳米颗粒、纳米囊泡和棒状纳米颗粒)。PEG-IR806 在共自组装中发挥了两个作用,一个是第二个近红外(NIR-II)试剂,另一个是用于封装 BODIPY 的表面活性剂。光疗 PIBY NPs 均表现出明亮的 NIR-II 荧光和有效的光疗(光热和光动力)性能,分别归因于 IR806 和 BODIPY。自组装的驱动力可归因于 NIR806 和 BODIPY 之间的静电相互作用及其疏水性。棒状 PIBY NPs(rPIBY NPs)对 U87MG 细胞的半抑制浓度(IC)低至 3.96μg/mL。NIR-II 成像显示 rPIBY NPs 在肿瘤区域的积累。在低剂量(0.5mg/kg)全身注射 rPIBY NPs 后,激光照射可大大抑制肿瘤生长,且无明显副作用。这项研究提供了一种通用的自组装方法来构建用于癌症光热治疗的 NIR-II 成像和光疗平台。

意义声明:提供近红外二区(NIR-II)荧光成像和光疗的纳米光热治疗剂有望在现代精准医学中发挥关键作用。可控的光学分子自组装用于制备高效的纳米光热治疗极具吸引力,但具有挑战性。本工作首次报道了将 NIR-II 成像造影剂和光疗剂共组装,得到具有各种形态的纳米光热治疗剂。具有互补光学功能的分子共组装的设计可以成为未来光热治疗发展的一种通用方法。

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