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郭东升课题组 | THERANOSTICS

发布人:    发布时间:2021/12/08   浏览次数:

A hypoxia-responsive supramolecular formulation for imaging-guided photothermal therapy

By

Zhang, TX (Zhang, Tian-Xing) Hou, XX (Hou, Xiaoxue) Kong, Y (Kong, Yong) Yang, F (Yang, Fan) Yue, YX (Yue, Yu-Xin) Shah, MR (Shah, Muhammad Raza) Li, HB (Li, Hua-Bin) Huang, F (Huang, Fan) Liu, JF (Liu, Jianfeng) Guo, DS (Guo, Dong-Sheng)


, 2021,12(1):396-409

DOI

10.7150/thno.67036


Abstract

Photothermal agents (PTAs) based on organic small-molecule dyes emerge as promising theranostic strategy in imaging and photothermal therapy (PTT). However, hydrophobicity, photodegradation, and low signal-to-noise ratio impede their transformation from bench to bedside. In this study, a novel supramolecular PTT formulation by a stimuli-responsive macrocyclic host is prepared to overcome these obstacles of organic small-molecule PTAs.

Methods: Sulfonated azocalix[4]arene (SAC4A) was synthesized as a hypoxia-responsive macrocyclic host. Taking IR780 as an example, the supramolecular nanoformulation IR780@SAC4A was constructed by grinding method, and its solubility, photostability, and photothermal conversion were evaluated. The hypoxia tumor-selective imaging and supramolecular PTT of IR780@SAC4A were further evaluated in vitro and in vivo.

Results: IR780@SAC4A is capable of enhancing the solubility, photostability, and photothermal conversion of IR780 significantly, which achieve this supramolecular formulation with good imaging-guided PTT efficacy in vitro and in vivo.

Conclusions: This study demonstrates that the supramolecular PTT strategy is a promising cancer theranostic method. Moreover, this supramolecular approach is applicative to construct kinds of supramolecular PTAs, opening a general avenue for extending smart PTT formulations.