Recent advances in luminescent metallacycles/metallacages for biomedical imaging and cancer therapy.
Yida PangChonglu LiHongping DengYao SunPublished in: Dalton transactions (Cambridge, England : 2003) (2022)
Small molecule metal-based drugs have shown great achievements in preclinical and clinical applications. In particular, platinum based antitumor drugs are well established in current cancer chemotherapy. However, they face problems such as poor selectivity, severe toxicity and side effects, strong drug resistance, poor uptake/retention in vivo , and difficulty in monitoring the therapeutic effect in real time, which largely limit their widespread use in clinical applications. The metallacycles/metallacages formed by the coordination-driven self-assembly of highly emitting ligands can solve the above problems. Importantly, acceptors with chemotherapeutic properties in the metallacycles/metallacages can be combined with luminescent ligands to achieve a combination of chemotherapy, imaging contrast agents and multifunctional therapeutic platforms. Here, this review provides an insight into the paradigm of self-assembled metallacycles/metallacages in biological applications, from mono-chemotherapeutic drugs to excellent fluorescent imaging contrast agents and multifunctional therapeutic platforms.
Keyphrases
- cancer therapy
- quantum dots
- high resolution
- small molecule
- drug delivery
- mental health
- magnetic resonance
- metal organic framework
- sensitive detection
- locally advanced
- squamous cell carcinoma
- energy transfer
- drug induced
- mass spectrometry
- mesenchymal stem cells
- radiation therapy
- computed tomography
- living cells
- squamous cell
- protein protein
- contrast enhanced
- structural basis