Krasnoyarsk State Medical University named after Professor V. F. Voyno-Yasenetsky, Krasnoyarsk, Russia.
Siberian Federal University, Krasnoyarsk, Russia.
Theranostics. 2017 Jul 30;7(13):3326-3337. doi: 10.7150/thno.17089. eCollection 2017.
Biomedical applications of magnetic nanoparticles under the influence of a magnetic field have been proved useful beyond expectations in cancer therapy. Magnetic nanoparticles are effective heat mediators, drug nanocarriers, and contrast agents; various strategies have been suggested to selectively target tumor cancer cells. Our study presents magnetodynamic nanotherapy using DNA aptamer-functionalized 50 nm gold-coated magnetic nanoparticles exposed to a low frequency alternating magnetic field for selective elimination of tumor cells . The cell specific DNA aptamer AS-14 binds to the fibronectin protein in Ehrlich carcinoma hence helps deliver the gold-coated magnetic nanoparticles to the mouse tumor. Applying an alternating magnetic field of 50 Hz at the tumor site causes the nanoparticles to oscillate and pull the fibronectin proteins and integrins to the surface of the cell membrane. This results in apoptosis followed by necrosis of tumor cells without heating the tumor, adjacent healthy cells and tissues. The aptamer-guided nanoparticles and the low frequency alternating magnetic field demonstrates a unique non-invasive nanoscalpel technology for precise cancer surgery at the single cell level.
磁场下磁性纳米粒子的生物医学应用在癌症治疗中被证明具有超乎预期的效果。磁性纳米粒子是有效的热介体、药物纳米载体和对比剂;已经提出了各种策略来选择性地靶向肿瘤癌细胞。我们的研究使用 DNA 适体功能化的 50nm 金包覆磁性纳米粒子进行磁动力学纳米治疗,该纳米粒子在低频交变磁场中暴露,用于选择性消除肿瘤细胞。细胞特异性 DNA 适体 AS-14 与艾氏腹水癌细胞中的纤维连接蛋白结合,从而帮助将金包覆磁性纳米粒子递送到小鼠肿瘤中。在肿瘤部位施加 50Hz 的交变磁场会导致纳米粒子振动,并将纤维连接蛋白和整合素拉到细胞膜表面。这导致肿瘤细胞凋亡,随后坏死,而不会加热肿瘤、相邻的健康细胞和组织。适体引导的纳米粒子和低频交变磁场展示了一种独特的非侵入性纳米刀技术,可在单细胞水平上进行精确的癌症手术。