Xu Baiyao, Ju Yang, Cui Yanbin, Song Guanbin, Iwase Yuichi, Hosoi Atsushi, Morita Yasuyuki
Department of Mechanical Science and Engineering, Nagoya University , Nagoya, Japan 464-8603.
Langmuir. 2014 Jul 8;30(26):7789-97. doi: 10.1021/la500595b. Epub 2014 Jun 23.
Mesoporous silica-coated Au nanorod (AuNR@SiO2) is one of the most important appealing nanomaterials for cancer therapy. The multifunctions of chemotherapy, photothermal therapy, and imaging of AuNR@SiO2 make it very useful for cancer therapy. In this study, AuNR@SiO2 was functionalized to deliver hydrophobic antitumor drug and to heat the targeted tumor with the energy of near-infrared (NIR). To carry out the function of targeting the tumor, tLyP-1, a kind of tumor homing and penetrating peptide, was engrafted to AuNR@SiO2. The fabricated AuNR@SiO2-tLyP-1 which was loaded with camptothecin (CPT) showed a robust, selective targeting and penetrating efficiency to Hela and MCF-7 cells and induced the death of these cells. When the micromasses of these AuNR@SiO2-tLyP-1 internalized cells were irradiated by NIR illumination, all the cells were killed instantaneously owing to the increased temperature caused by the surface plasma resonance (SPR) of the internalized AuNR@SiO2-tLyP-1. Moreover, the systematic toxicity of CPT-loaded AuNR@SiO2-tLyP-1 on human mesenchymal stem cells (hMSCs) was minimized, because the AuNR@SiO2-tLyP-1 selectively targeted and penetrated into the tumor cells, and little hydrophobic CPT was released into the culture medium or blood. This study indicates that the AuNR@SiO2-tLyP-1 drug delivery system (DDS) has great potential application for the chemo-photothermal cancer therapy.
介孔二氧化硅包覆的金纳米棒(AuNR@SiO₂)是癌症治疗中最重要且吸引人的纳米材料之一。AuNR@SiO₂ 的化疗、光热治疗及成像等多种功能使其在癌症治疗中非常有用。在本研究中,AuNR@SiO₂ 被功能化以递送疏水性抗肿瘤药物,并利用近红外(NIR)能量加热靶向肿瘤。为实现肿瘤靶向功能,将一种肿瘤归巢与穿透肽 tLyP-1 嫁接到 AuNR@SiO₂ 上。负载喜树碱(CPT)的 AuNR@SiO₂-tLyP-1 对 Hela 和 MCF-7 细胞显示出强大的、选择性靶向和穿透效率,并诱导这些细胞死亡。当用 NIR 照射内化了这些 AuNR@SiO₂-tLyP-1 的细胞微团时,由于内化的 AuNR@SiO₂-tLyP-1 的表面等离子体共振(SPR)导致温度升高,所有细胞瞬间被杀死。此外,负载 CPT 的 AuNR@SiO₂-tLyP-1 对人间充质干细胞(hMSCs)的系统毒性降至最低,因为 AuNR@SiO₂-tLyP-1 选择性地靶向并穿透肿瘤细胞,很少有疏水性 CPT 释放到培养基或血液中。本研究表明,AuNR@SiO₂-tLyP-1 药物递送系统(DDS)在化学 - 光热癌症治疗方面具有巨大的潜在应用价值。