Enzyme-Activatable Polypeptide for Plasma Membrane Disruption and Antitumor Immunity Elicitation.
Jiahui LiuRong Sheng LiLei ZhangJie WangQi DongZhigang XuYuejun KangPeng XuePublished in: Small (Weinheim an der Bergstrasse, Germany) (2023)
Enzyme-instructed self-assembly of bioactive molecules into nanobundles inside cells is conceived to potentially disrupt plasma membrane and subcellular structure. Herein, an alkaline phosphatase (ALP)-activatable hybrid of ICG-CF 4 KY p is facilely synthesized by conjugating photosensitizer indocyanine green (ICG) with CF 4 KY p peptide via classical Michael addition reaction. ALP-induced dephosphorylation of ICG-CF 4 KY p enables its transformation from small-molecule precursor into rigid nanofibrils, and such fibrillation in situ causes severe mechanical disruption of cytomembrane. Besides, ICG-mediated photosensitization causes additional oxidative damage of plasma membrane by lipid peroxidation. Hollow MnO 2 nanospheres devote to deliver ICG-CF 4 KY p into tumorous tissue through tumor-specific acidity/glutathione-triggered degradation of MnO 2 , which is monitored by fluorescent probing and magnetic resonance imaging. The burst release of damage-associated molecular patterns and other tumor antigens during therapy effectively triggers immunogenetic cell death and improves immune stimulatory, as demonstrated by the promotion of dendritic cell maturation and CD8 + lymphocyte infiltration, as well as constraint of regulatory T cell population. Taken together, such cytomembrane injury strategy based on peptide fibrillation in situ holds high clinical promise for lesion-specific elimination of primary, abscopal, and metastatic tumors, which may enlighten more bioinspired nanoplatforms for anticancer theranostics.
Keyphrases
- fluorescence imaging
- photodynamic therapy
- cystic fibrosis
- dendritic cells
- small molecule
- cell death
- magnetic resonance imaging
- cell cycle arrest
- induced apoptosis
- squamous cell carcinoma
- oxidative stress
- computed tomography
- regulatory t cells
- transcription factor
- quantum dots
- bone marrow
- machine learning
- high frequency
- mesenchymal stem cells
- big data
- mass spectrometry
- cell proliferation
- living cells
- deep learning
- endothelial cells