Nitroreductase-instructed supramolecular assemblies for microbiome regulation to enhance colorectal cancer treatments.
Jiali ChenPai ZhangYan ZhaoJie ZhaoXiaobo WuRuijia ZhangRuitao ChaQingxin YaoYuan GaoPublished in: Science advances (2022)
The development of human microbiome has collectively correlated the sophisticated interactions between Fusobacterium nucleatum and colorectal cancers (CRCs). However, the treatment of CRC via disruption of gastrointestinal flora remains less explored. Aiming at the up-regulated activity of nitroreductase in F. nucleatum -infected tumors, here, we developed the nitroreductase-instructed supramolecular self-assembly. The designed assembly precursors underwent enzymatic transformation to form assemblies, which agglutinated F. nucleatum and eradicated the targeted bacteria. These assemblies with anti- F. nucleatum activity could further alleviate the bacteria-induced drug resistance effect, thus sensitizing CRC cells against chemo-drugs. Eventually, in mice bearing F. nucleatum -infected CRC, the local introduction of nitroreductase-instructed assemblies could efficiently inhibit the tumor growth. Overall, this study incorporated nitroreductase to broaden the toolbox of enzyme-instructed supramolecular self-assembly. The local introduction of nitroreductase-instructed assemblies could target F. nucleatum to eliminate its contribution to CRC drug resistance and ameliorate chemotherapy outcomes.
Keyphrases
- induced apoptosis
- cancer therapy
- water soluble
- energy transfer
- locally advanced
- squamous cell carcinoma
- metabolic syndrome
- transcription factor
- nitric oxide
- photodynamic therapy
- drug induced
- radiation therapy
- high fat diet induced
- diabetic rats
- endoplasmic reticulum stress
- induced pluripotent stem cells
- quantum dots
- stress induced