4.6 Article

Water-soluble hyaluronic acid-hybridized polyaniline nanoparticles for effectively targeted photothermal therapy

期刊

JOURNAL OF MATERIALS CHEMISTRY B
卷 3, 期 18, 页码 3767-3776

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c4tb01738b

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资金

  1. Natural Science Foundation of China [21161003, 21364002]
  2. Guangxi Natural Science Foundation of China [2013GXNSFGA019001, 2012GXNSFDA053007, 2014GXNSFBA118038]
  3. Program for New Century Excellent Talents in University of the Ministry of Education [NCET-13-0743]
  4. Program for New Century National Hundred, Thousand and Ten Thousand Talent Project of Guangxi
  5. State Key Laboratory Cultivation Base for the Chemistry and Molecular Engineering of Medicinal Resources [CMEMR2012-A12, CMEMR2013-A08, CMEMR2013-A013]
  6. Program for Guangxi Scientific Research of Higher Education [YB2014052]
  7. Program for Key Scientific Research of Guangxi Normal University [2013ZD005]

向作者/读者索取更多资源

The construction of advanced phototherapy systems with high therapeutic efficacy toward cancer and low side effects, especially targeted species, is highly desirable. Herein, we developed one kind of water-soluble hyaluronic acid-hybridized polyaniline nanoparticles (HA-PANI NPs) as a nanoplatform for photothermal therapy (PTT) with targeted specificity of a CD44-mediated cancer cell. The water-soluble HA-PANI NPs were fabricated by one-step oxidative polymerization using aniline as a polymerizable monomer and HA as a stabilizer and targeted agent, where non-covalent electrostatic interaction between the negatively charged polymer HA and the cationic polymer PANI drives the formation of HA-PANI NPs. It was demonstrated that approximately spherical HA-PANI NPs are well-dispersed in aqueous solutions, with average hydrodynamic diameters of around 100 nm. Besides, HA-PANI NPs have negligible cytotoxicity in vitro, which facilitates biomedical applications with low toxicity. We studied the in vitro photothermal cell-killing efficacy of HA-PANI NPs by MTT assay and confocal microscopy measurement. The results reveal that HA-PANI NPs can selectively kill the cancer cells of HeLa and HCT-116 cells rather than normal cells of HFF cells upon exposure to a NIR 808 nm laser. The efficient intracellular intake of the HA-PANI NPs by both HeLa and HCT-116 cells are observed, confirming their targeting ability for CD44-overexpressing cancer cells. Furthermore, the results of in vivo photothermal ablation of tumors show excellent treatment efficacy, indicating that the HA-PANI NPs can be considered as an extremely promising nanoplatform for targeted PTT of cancer.

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