| Literature DB >> 30565924 |
Xingshu Li1,2, Sungsook Yu3, Yoonji Lee4, Tian Guo2, Nahyun Kwon2, Dayoung Lee2, Su Cheong Yeom5, Yejin Cho3, Gyoungmi Kim2, Jian-Dong Huang1, Sun Choi4, Ki Taek Nam3, Juyoung Yoon2.
Abstract
Albumin is a promising candidate as a biomarker for potential disease diagnostics and has been extensively used as a drug delivery carrier for decades. In these two directions, many albumin-detecting probes and exogenous albumin-based nanocomposite delivery systems have been developed. However, there are only a few cases demonstrating the specific interactions of exogenous probes with albumin in vivo, and nanocomposite delivery systems usually suffer from tedious fabrication processes and potential toxicity of the complexes. Herein, we demonstrate a facile "one-for-all" switchable nanotheranostic (NanoPcS) for both albumin detection and cancer treatment. In particular, the in vivo specific binding between albumin and PcS, arising from the disassembly of injected NanoPcS, is confirmed using an inducible transgenic mouse system. Fluorescence imaging and antitumor tests on different tumor models suggest that NanoPcS has superior tumor-targeting ability and the potential for time-modulated, activatable photodynamic therapy.Entities:
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Year: 2019 PMID: 30565924 DOI: 10.1021/jacs.8b12167
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419