Carbon nano-onion-mediated dual targeting of P-selectin and P-glycoprotein to overcome cancer drug resistance.
Hai WangYutong LiangYue YinJie ZhangWen SuAlisa M Whitenull Bin JiangJiangsheng XuYuntian ZhangSamantha StewartXiongbin LuXiaoming HePublished in: Nature communications (2021)
The transmembrane P-glycoprotein (P-gp) pumps that efflux drugs are a major mechanism of cancer drug resistance. They are also important in protecting normal tissue cells from poisonous xenobiotics and endogenous metabolites. Here, we report a fucoidan-decorated silica-carbon nano-onion (FSCNO) hybrid nanoparticle that targets tumor vasculature to specifically release P-gp inhibitor and anticancer drug into tumor cells. The tumor vasculature targeting capability of the nanoparticle is demonstrated using multiple models. Moreover, we reveal the superior light absorption property of nano-onion in the near infrared region (NIR), which enables triggered drug release from the nanoparticle at a low NIR power. The released inhibitor selectively binds to P-gp pumps and disables their function, which improves the bioavailability of anticancer drug inside the cells. Furthermore, free P-gp inhibitor significantly increases the systemic toxicity of a chemotherapy drug, which can be resolved by delivering them with FSCNO nanoparticles in combination with a short low-power NIR laser irradiation.
Keyphrases
- photodynamic therapy
- papillary thyroid
- drug induced
- squamous cell
- fluorescence imaging
- drug release
- cancer therapy
- adverse drug
- induced apoptosis
- emergency department
- ms ms
- squamous cell carcinoma
- genome wide
- cell cycle arrest
- radiation therapy
- high resolution
- mass spectrometry
- quantum dots
- dna methylation
- cell death
- childhood cancer