In vitro cytotoxicity and antitumor activity of dual-targeting drug delivery system based on modified magnetic carbon by folate

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Abstract

A dual-targeting drug delivery system (DTDDS) with magnetic targeting and active targeting was obtained to improve the targeting and drug-loading capacity of magnetic drug nanocarriers. An ultraviolet-visible spectrophotometer and flow cytometry were used to investigate the drug-loading and release capacity, cytotoxicity, and inhibition of tumor cell proliferation, separately. Results show that DTDDS has obvious magnetic characteristics, on which the modification amount of folic acid is 64.82 mg g-1. Doxorubicin was taken as a template drug to evaluate its drug-loading capacity, which was as high as 577.12 mg g-1. Good biocompatibility and low cytotoxicity of DTDDS were further confirmed. Moreover, DTDDS can target the folate receptor on the surface of HeLa cells and deliver doxorubicin into HeLa cells, thereby increasing the proliferation inhibition for cancer cells. Therefore, this new dual-targeting drug delivery system shows potential in significantly reducing the toxic side effects of chemotherapy and improving chemotherapy efficiency.

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Du, J., Li, Q., Chen, L., Wang, S., Zhang, L., Yu, S., … Liu, X. (2020). In vitro cytotoxicity and antitumor activity of dual-targeting drug delivery system based on modified magnetic carbon by folate. Journal of Nanomaterials, 2020. https://doi.org/10.1155/2020/7147130

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