Lipid-coated CaCO 3 -PDA nanoparticles as a versatile nanocarrier to enable pH-responsive dual modal imaging-guided combination cancer therapy.
XinXing MaChunjie WangZiliang DongChunhong HuLiangzhu FengPublished in: Journal of materials chemistry. B (2022)
Development of an intelligent and versatile delivery system to achieve tumor-targeted delivery and controlled release of diverse functional moieties is of great significance to realize precise cancer theranostics. In this study, we use pH-dissociable calcium carbonate-polydopamine (pCaCO 3 ) nanocomposites as a template to guide the formation of a lipid bilayer on their surface, yielding lipid-coated pCaCO 3 nanoparticles with high loading efficacies towards gadolinium ions (Gd 3+ ), doxorubicin (DOX) and 1,1'-dioctadecyl-3,3,3',3'-tetramethylindotricarbocyanine iodide (DiR). The obtained liposomal nanotheranostics show excellent physiological stability and pH-dependent release of DOX and Gd 3+ ; the latter could lead to pH-dependent T 1 signal enhancement under magnetic resonance (MR) imaging, as well as efficient photothermal conversion efficacy. Then, we found that tumors in mice with intravenous injection of DiR-DOX-Gd@pCaCO 3 -PEG could be clearly visualized in a real-time manner by recording their near-infrared (NIR) fluorescence and T 1 MR signal. Furthermore, treatment with such liposomal nanotheranostics injection and NIR laser irradiation could enable collective suppression of the growth of 4T1 tumors in Balb/c mice via combined chemo- and photothermal therapies. Therefore, this work highlights the concise preparation of lipid-coated pCaCO 3 nanocomposites, which could be utilized for the construction of diverse cancer nanotheranostics by exploiting their versatile loading capacities.
Keyphrases
- cancer therapy
- drug delivery
- photodynamic therapy
- magnetic resonance
- drug release
- contrast enhanced
- papillary thyroid
- fatty acid
- squamous cell
- fluorescence imaging
- high fat diet induced
- high resolution
- molecularly imprinted
- combination therapy
- magnetic resonance imaging
- metabolic syndrome
- type diabetes
- skeletal muscle
- quantum dots
- adipose tissue
- high dose
- squamous cell carcinoma
- mass spectrometry
- radiation induced
- reduced graphene oxide
- young adults
- rectal cancer
- locally advanced
- visible light
- tandem mass spectrometry
- wild type