4.7 Article

Cantharidin-encapsulated thermal-sensitive liposomes coated with gold nanoparticles for enhanced photothermal therapy on A431 cells

期刊

INTERNATIONAL JOURNAL OF NANOMEDICINE
卷 13, 期 -, 页码 2143-2160

出版社

DOVE MEDICAL PRESS LTD
DOI: 10.2147/IJN.S156240

关键词

gold nanoparticles; liposome; cantharidin; photothermal therapy; heat shock response

资金

  1. National Natural Science Foundation of China [61705177, 61335012, 61727823, 61575156, 61775178, 61505159]
  2. China Postdoctoral Science Foundation [2017M613107, 2015M572570]

向作者/读者索取更多资源

Purpose: Plasmonic nanostructure-mediated photothermal therapy (PTT) is a promising alternative therapy for the treatment of skin cancer and other diseases. However, the insufficient efficiency of PTT at irradiation levels tolerable to tissues and the limited biodegradability of nanomaterials are still crucial challenges. In this study, a novel nanosystem for PTT based on liposome-nanoparticle assemblies (LNAs) was established. Materials and methods: Thermal-sensitive liposomes (TSLs) encapsulating cantharidin (CTD) were coated with gold nanoparticles (GNPs) and used in near-infrared (NIR) illumination-triggered PTT and thermally induced disruption on A431 cells. Results: The coated GNPs disintegrated into small particles of 5-6 nm after disruption of TSLs, allowing their clearance by the liver and kidneys. CTD encapsulated in the TSLs was released into cytoplasm after PTT. The released CTD increased the apoptosis of PTT-treated tumor cells by blocking the heat shock response (HSR) and inhibiting the expression of HSP70 and BAG3 inhibiting the expression of HSP70 and BAG3 with the synergistic enhancement of CTD, the new nanosystem CTD-encapsulated TSLs coated with GNPs (CTD-TSL@GNPs) had an efficient PTT effect using clinically acceptable irradiation power (200 mW/cm(2)) on A431 cells. Conclusion: The developed CTD-TSL@GNPs may be a promising PTT agent for clinical skin cancer therapy.

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