Mesoporous silica@chitosan@gold nanoparticles as "on/off" optical biosensor and pH-sensitive theranostic platform against cancer

(2022) Mesoporous silica@chitosan@gold nanoparticles as "on/off" optical biosensor and pH-sensitive theranostic platform against cancer. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES. pp. 241-255. ISSN 0141-8130 1879-0003 J9 - INT J BIOL MACROMOL

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Abstract

A cancer nanotheranostic system was fabricated based on mesoporous silica@chitosan@gold (MCM@CS@Au) nanosystem targeted by aptamer toward the MUC-1 positive tumor cells. Subsequently, curcumin as an efficient herbal anticancer drug was first encapsulated into chitosan-triphosphate nanoparticles and then the resulted nanoparticle was loaded into the nanosystem (MCM@CS@Au-Apt). The nanosystem successful fabrication was approved at each synthesis step through FTIR, XRD, BET, DLS, FE-SEM, HRTEM, and fluorescence spectroscopy. Besides, the interaction between aptamer and curcumin was evaluated using full atomistic molecular dynamics simulations. The mechanism of curcumin release was likewise investigated through different kinetic models. Afterwards, the potential of the designed nanosystem in targeted imaging, and drug delivery was evaluated using fluorescence microscopy and flow cytometry. It was found that the energy transfer between the base pairs in the hairpin of double strands of DNA aptamer acts as a quencher for MCM@CS@Au fluorescence culminating in an "on/off" optical biosensor. On the other hand, the presence of pH-sensitive chitosan nanoparticles creates smart nanosystem to deliver more curcumin into the desired cells. Indeed, when the aptamer specifically binds to the MUC-1 receptor, its double strands separate under the low pH condition, leading to the drug release and the recovery of the fluorescence ("On" state). Based on the toxicity results, this nanosystem had more toxicity toward the MUC-1-positive tumor cells than MUC-1-negative cells, representing its selective targeting. Therefore, this nanosystem could be introduced as a smart anticancer nanotheranostic system for tracing particular biomarkers (MUC-1), non-invasive fluorescence imaging, and targeted curcumin delivery.

Item Type: Article
Keywords: cancer nanotheranostics On off fluorescence imaging Mesoporous silica nanoparticles Chitosan nanoparticles Targeted curcumin delivery DRUG-DELIVERY SYSTEM BREAST-CANCER CURCUMIN RELEASE CYTOTOXICITY CARRIERS POLYMER GROWTH CELLS
Page Range: pp. 241-255
Journal or Publication Title: INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES
Journal Index: ISI
Volume: 202
Identification Number: https://doi.org/10.1016/j.ijbiomac.2022.01.063
ISSN: 0141-8130 1879-0003 J9 - INT J BIOL MACROMOL
Depositing User: Zahra Otroj
URI: http://eprints.mui.ac.ir/id/eprint/16151

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