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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Targeted cancer therapy by immunoconjugated gold-gold sulfide nanoparticles using protein g as a cofactor
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Targeted cancer therapy by immunoconjugated gold-gold sulfide nanoparticles using protein g as a cofactor

机译:使用蛋白g作为辅因子的免疫共轭金-硫化金纳米颗粒进行靶向癌症治疗

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Gold-gold sulfide nanoparticles (GGS-NPs) fabricated from chloroauric acid and sodium thiosulfate show unique near infrared (NIR) absorption that renders them as a promising candidate for photothermal cancer therapy. To improve targeting efficiency, we developed a versatile method to allow ordered immunoconjugation of antibodies on the surfaces of these nanoparticles via a PEGylated recombinant Protein G (ProG). The PEGylated ProG was prepared with orthopyridyldisulfide-polyethylene glycol-succinimidyl valerate, average MW 2000 (OPSS-PEG-SVA), to first allow the self-assembly of ProG on the nanoparticles, subsequently antibodies were added to this construct to enable active targeting. The bioconjugated GGS-NPs were characterized by TEM, NIR-spectra, dynamic light scattering and modified immunoassay. In in vitro studies, the ProG-conjugated GGSNPs with bound mouse anti c-erbB-2 (HER-2) immunoglobulin G (IgG) successfully targeted the HER-2 overexpressing breast cancer cell, SK-BR-3. Extensive cell death was observed for the targeted SK-BR-3 line at a low laser power of 540 J (3 W cm22 for 3 min) while the control breast cancer cell (low expressing HER-2), HTB-22 survived. Using PEGylated ProG as a cofactor for immobilization of antibodies offers a promising strategy to functionalize various IgGs on nanoparticles for engineering their biomedical applications in cancer therapeutics.
机译:由氯金酸和硫代硫酸钠制成的金-金硫化物纳米颗粒(GGS-NPs)具有独特的近红外(NIR)吸收性能,使其成为光热癌症治疗的有希望的候选者。为了提高靶向效率,我们开发了一种通用的方法,可以通过PEG化重组蛋白G(ProG)在这些纳米颗粒的表面进行有序的免疫偶联。聚乙二醇化的ProG用平均分子量为2000的邻吡啶基二硫化物-聚乙二醇-琥珀酰亚胺戊酸酯(OPSS-PEG-SVA)制备,以首先使ProG在纳米颗粒上自组装,随后将抗体添加到此构建物中以实现活性靶向。通过TEM,NIR光谱,动态光散射和改进的免疫测定对生物共轭的GGS-NP进行表征。在体外研究中,与小鼠抗c-erbB-2(HER-2)免疫球蛋白G(IgG)结合的ProG偶联的GGSNPs成功靶向过表达HER-2的乳腺癌细胞SK-BR-3。在540 J(3 W cm22的低激光功率,持续3分钟)的低激光功率下,观察到了靶向SK-BR-3细胞的广泛细胞死亡,而对照乳腺癌细胞(低表达HER-2)HTB-22存活了下来。使用聚乙二醇化的ProG作为固定化抗体的辅因子,提供了一种有前途的策略,可将纳米颗粒上的各种IgG功能化,以工程化它们在癌症治疗中的生物医学应用。

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