Affiliation:
1. The Key Laboratory of Biomedical Information Engineering of the Ministry of Education School of Life Science and Technology Bioinspired Engineering and Biomechanics Center (BEBC) Xi'an Jiaotong University Xi'an 710049 China
2. Zhejiang Cancer Hospital The Key Laboratory of Zhejiang Province for Aptamers and Theranostics Hangzhou Institute of Medicine (HIM) Chinese Academy of Sciences Hangzhou 310022 China
3. College of Material Chemistry and Chemical Engineering Hangzhou Normal University Hangzhou 311121 China
4. Department of Gastrointestinal Surgery The Affiliated Drum Tower Hospital of Nanjing University Medical School Nanjing 210008 China
5. School of Aerospace Engineering Tsinghua University Beijing 100084 China
Abstract
AbstractProteolysis Targeting Chimeras (PROTACs) represent a promising therapeutic modality to address undruggable and resistant issues in drug discovery. However, potential on‐target toxicity remains clinically challenging. We developed a generalized caging strategy to synthesize a series of stimuli‐responsive PROTACs (sr‐PROTACs) with diverse molecular blocks bearing robust and cleavable linkers, presenting “turn on” features in manipulating protein degradation. By leveraging pathological cues, such as elevated ROS, phosphatase, H2S, or hypoxia, and external triggers, such as ultraviolet light, X‐Ray, or bioorthogonal reagents, we achieved site‐specific activation and traceless release of original PROTACs through de‐caging and subsequent self‐immolative cleavage, realizing selective uptake and controlled protein degradation in vitro. An in vivo study revealed that two sr‐PROTACs with phosphate‐ and fluorine‐containing cages exhibited high solubility and long plasma exposure, which were specifically activated by tumor overexpressing phosphatase or low dosage of X‐Ray irradiation in situ, leading to efficient protein degradation and potent tumor remission. With more reactive biomarkers to be screened from clinical practice, our caging library could provide a general tool to design activatable PROTACs, prodrugs, antibody‐drug conjugates, and smart biomaterials for personalized treatment, tissue engineering or regenerative medicine.
Funder
National Natural Science Foundation of China
Key Technologies Research and Development Program
Subject
General Chemistry,Catalysis
Cited by
16 articles.
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