Cyclodextrin-Activated Porphyrin Photosensitization for Boosting Self-Cleavable Drug Release.
Mian TangYanqiu SongYi-Lin LuYing-Ming ZhangZhilin YuXiufang XuYu LiuPublished in: Journal of medicinal chemistry (2022)
Supramolecular prodrugs that combine the merits of stimuli-responsiveness and targeting ability in a controllable manner have shown appealing prospects in disease diagnostics and therapeutics. Herein, we report that a new theranostic agent with the host-guest-binding-activated photosensitization has been fabricated by a binary supramolecular assembly consisting of the permethyl-β-cyclodextrin-grafted hyaluronic acid and a combretastatin A-4-appended porphyrin derivative. Illuminated by a red-light source, the production efficiency of singlet oxygen ( 1 O 2 ) pronouncedly increases by ∼60-fold once the porphyrin core is encapsulated by cyclodextrins. Consequently, the cell-selective fluorescence emission is dramatically enhanced, the microtubule-targeted drug is rapidly and completely released, and the 1 O 2 -involved combinational treatment is simultaneously achieved both in vitro and in vivo. To be envisaged, this complexation-boosted light-activatable photosensitizing prodrug delivery system with improved photophysical performance and remarkable phototheranostic outcomes will make a significant contribution to the creation of more advanced stimulus-based biomaterials.
Keyphrases
- energy transfer
- drug release
- hyaluronic acid
- photodynamic therapy
- cancer therapy
- drug delivery
- capillary electrophoresis
- ionic liquid
- quantum dots
- fluorescence imaging
- water soluble
- single cell
- metal organic framework
- small molecule
- current status
- mass spectrometry
- emergency department
- bone regeneration
- adipose tissue
- dna binding
- combination therapy
- transcription factor
- binding protein
- mesenchymal stem cells
- drug induced
- solid state
- smoking cessation