Endogenous mRNA Triggered DNA-Au Nanomachine for In Situ Imaging and Targeted Multimodal Synergistic Cancer Therapy.
Sha YuYang ZhouYao SunShaojun WuTingting XuYu-Chung ChangSai BiLi-Ping JiangJun-Jie ZhuPublished in: Angewandte Chemie (International ed. in English) (2021)
The development of versatile nanotheranostic platforms that integrate both diagnostic and therapeutic functions have always been an intractable challenge in precise cancer treatment. Herein, an aptamer-tethered deoxyribonucleic acids-gold particle (Apt-DNA-Au) nanomachine has been developed for in situ imaging and targeted multimodal synergistic therapy of mammary carcinoma. Upon specifically internalized into MCF-7 cells, the tumor-related TK1 mRNA activates the Apt-DNA-Au nanomachine by DNA strand displacement cascades, resulting in the release of the fluorophore and antisense DNA as well as the aggregation of AuNPs for in situ imaging, suppression of survivin expression and photothermal therapy, respectively. Meanwhile, the controlled released drugs are used for chemotherapy, while under the laser irradiation the loaded photosensitizer produces reactive oxygen species (ROS) for photodynamic therapy. The results confirm that the proposed Apt-DNA-Au nanomachine provides a powerful nanotheranostic platform for in situ imaging-guided combinatorial anticancer therapy.
Keyphrases
- cancer therapy
- circulating tumor
- photodynamic therapy
- cell free
- single molecule
- high resolution
- sensitive detection
- drug delivery
- reactive oxygen species
- nucleic acid
- poor prognosis
- fluorescence imaging
- reduced graphene oxide
- circulating tumor cells
- cell death
- binding protein
- mesenchymal stem cells
- mass spectrometry
- signaling pathway
- smoking cessation
- quantum dots
- silver nanoparticles
- wound healing
- cell cycle arrest
- rectal cancer
- pi k akt