Tumor Regression In Vivo by Photothermal Therapy Based on Gold-Nanorod-Loaded, Functional Nanocarriers

纳米载体 光热治疗 体内 纳米棒 材料科学 泊洛沙姆 纳米技术 壳聚糖 生物物理学 纳米医学 药物输送 光热效应 化学 纳米颗粒 聚合物 共聚物 生物化学 生物 生物技术 复合材料
作者
Won Il Choi,Jayoung Kim,Chul Kang,Clare C. Byeon,Young‐Ha Kim,Giyoong Tae
出处
期刊:ACS Nano [American Chemical Society]
卷期号:5 (3): 1995-2003 被引量:426
标识
DOI:10.1021/nn103047r
摘要

We developed a very effective hyperthermia system for successful photothermal cancer therapy. Instead of applying individual gold nanorods (GNRs) that can absorb NIR light, GNRs were loaded into functional nanocarriers that could provide stable storage of GNRs and selective delivery to a target tumor site. The functional nanocarriers (chitosan-conjugated, Pluronic-based nanocarriers) were prepared by chemically cross-linking Pluronic F 68 with chitosan conjugation to form a flexible, soft, and excellent reservoir for biomacromolecules as well as tumor targeting. In vivo characteristics of the nanocarriers including a long circulation time, a good tumor accumulation, and low liver uptake were previously characterized by us. When GNRs were delivered by using these nanocarriers, much enhanced in vitro cellular uptake and a photothermal effect were observed for a cancer cell line. More importantly, an intravenous injection of this system followed by NIR laser irradiation to the tumor site resulted in a very efficient thermolysis in vivo. Thus, apparently complete tumor resorption was achieved without damage to the surrounding tissue, suggesting a promising candidate for clinical phototherapeutic applications.

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