Tailoring Platinum(IV) Amphiphiles for Self-Targeting All-in-One Assemblies as Precise Multimodal Theranostic Nanomedicine.
Shasha HeChan LiQingfei ZhangJian-Xun DingXing-Jie LiangXuesi ChenHaihua XiaoXiaoyuan Shawn ChenDongfang ZhouYubin HuangPublished in: ACS nano (2018)
Drug, targeting ligand, and imaging agent are the three essential components in a nanoparticle-based drug delivery system. However, tremendous batch-to-batch variation of composition and drug content typically accompany the current approaches of building these components together. Herein, we report the design of photoactivatable platinum(IV) (Pt(IV)) amphiphiles containing one or two hydrophilic lactose targeting ligands per hydrophobic Pt(IV) prodrug for an all-in-one precise nanomedicine. Self-assembly of these Pt(IV) amphiphiles results in either micelle or vesicle formation with a fixed Pt/targeting moiety ratio and a constantly high content of Pt. The micelles and vesicles are capable of hepatoma cell-targeting, fluorescence/Pt-based CT imaging and have shown effective anticancer efficacy under laser irradiation in vitro and in vivo. This photoactivatable, active self-targeting, and multimodal theranostic amphiphile strategy shows great potential in constructing precise nanomedicine.
Keyphrases
- cancer therapy
- drug delivery
- high resolution
- computed tomography
- emergency department
- stem cells
- single cell
- fluorescence imaging
- mass spectrometry
- radiation therapy
- cell therapy
- magnetic resonance
- climate change
- pain management
- mesenchymal stem cells
- chronic pain
- liquid chromatography
- anaerobic digestion
- radiation induced