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用于组合抗肿瘤光动力和光热治疗的纳米级共价有机框架。

Nanoscale Covalent Organic Framework for Combinatorial Antitumor Photodynamic and Photothermal Therapy.

机构信息

College of Chemistry, Chemical Engineering and Materials Science, Collaborative Innovation Center of Functionalized Probes for Chemical Imaging in Universities of Shandong, Key Laboratory of Molecular and Nano Probes, Ministry of Education , Shandong Normal University , Jinan 250014 , P. R. China.

School of Chemical and Biological Engineering , Qilu Institute of Technology , Jinan 250200 , P. R. China.

出版信息

ACS Nano. 2019 Nov 26;13(11):13304-13316. doi: 10.1021/acsnano.9b06467. Epub 2019 Nov 8.

Abstract

Despite the excellent photodynamic and photothermal properties of organic molecular photosensitizers (PSs) and photothermal agents (PTAs), such as porphyrin and naphthalocyanine, their poor water solubility severely impedes their biological applications. Covalent organic frameworks (COFs), as an emerging class of organic crystalline porous materials, possess free active end groups (bonding defects) and large inner pores, which make them an ideal type of nanocarriers for loading hydrophobic organic molecular PSs and PTAs by both bonding defect functionalization (BDF) and guest encapsulation approaches to obtain multifunctional nanomedicines for PDT/PTT combination therapy. In this work, we report a nanoscale COF (NCOF) prepared a facile synthetic approach under ambient conditions. Furthermore, a dual-modal PDT/PTT therapeutic nanoagent, VONc@COF-Por (), is successfully fabricated by stepwise BDF and guest encapsulation processes. The covalently grafted porphyrinic PS (Por) and the noncovalently loaded naphthalocyanine PTA (VONc) are independently responsible for the PDT and PTT functionalities of the nanoagent. Upon visible (red LED) and NIR (808 nm laser) irradiation, VONc@COF-Por () displayed high O generation and photothermal conversion ability (55.9%), consequently providing an excellent combined PDT/PTT therapeutic effect on inhibiting MCF-7 tumor cell proliferation and metastasis, which was well evidenced by and experiments. We believe that the results obtained herein can significantly promote the development of NCOF-based multifunctional nanomedicines for biomedical applications.

摘要

尽管有机分子光动力治疗敏化剂(PSs)和光热剂(PTAs)如卟啉和萘酞菁具有优异的光动力和光热性能,但它们较差的水溶性严重阻碍了它们的生物应用。共价有机骨架(COFs)作为一种新兴的有机结晶多孔材料,具有游离的活性端基(键合缺陷)和较大的内孔,这使其成为通过键合缺陷功能化(BDF)和客体包封方法负载疏水性有机分子 PSs 和 PTAs 的理想纳米载体类型,以获得用于 PDT/PTT 联合治疗的多功能纳米药物。在这项工作中,我们报道了一种在环境条件下通过简便合成方法制备的纳米 COF(NCOF)。此外,通过逐步 BDF 和客体包封过程成功制备了双模式 PDT/PTT 治疗性纳米制剂 VONc@COF-Por()。共价接枝的卟啉 PS(Por)和非共价负载的萘酞菁 PTA(VONc)分别负责纳米制剂的 PDT 和 PTT 功能。在可见光(红色 LED)和近红外(808nm 激光)照射下,VONc@COF-Por()显示出高 O2 生成和光热转换能力(55.9%),因此在抑制 MCF-7 肿瘤细胞增殖和转移方面表现出优异的联合 PDT/PTT 治疗效果,这通过和实验得到了很好的证明。我们相信,本文的研究结果可以显著促进基于 NCOF 的多功能纳米药物在生物医学中的发展。

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