光热治疗
光敏剂
光动力疗法
透明质酸
吲哚青绿
化学
纳米技术
纳米颗粒
癌症研究
材料科学
生物医学工程
光化学
医学
病理
解剖
有机化学
作者
Yanan Liu,Chunfang Wei,Ange Lin,Jiali Pan,Xu Chen,Xufeng Zhu,Youcong Gong,Guanglong Yuan,Lanmei Chen,Jie Liu,Zhaohui Luo
标识
DOI:10.1016/j.colsurfb.2020.110820
摘要
The photothermal/photodynamic synergistic therapy is a promising tumor treatment, but developing nanosystems that achieve synchronous photothermal/photodynamic functions is still quite challenging. Here, we use a simple method to synthesize molybdenum selenide nanoparticles (MoSe2 NPs) with a photothermal effect as a carrier, and load a photosensitizer ICG to form a nanosystem (MoSe2@ICG-PDA-HA)with dual photothermal/photodynamic functions under near-infrared irradiation. In addition, the surface modification of the nanosystem with acid-responsive release polydopamine (PDA) and tumor-targeted hyaluronic acid (HA) enhanced the stability of the photosensitizer ICG and the accumulation of ICG at tumor sites. The multicellular sphere assay simulated solid tumors and demonstrated that MoSe2@ICG-PDA-HA could significantly inhibit the 4T1 cell growth. The anti-tumor experiments in tumor-bearing mice showed that MoSe2@ICG-PDA-HA not only significantly inhibited the growth of 4T1 subcutaneous tumors, but also inhibited their metastasis. This study presented a nanosystem that could improve the photostability of optical materials and enhance the photothermal/photodynamic synergy effect, providing a new idea for finding a way to effectively treat breast cancer.
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