Mandawala Chalani, Chebbi Imène, Durand-Dubief Mickael, Le Fèvre Raphael, Hamdous Yasmina, Guyot François, Alphandéry Edouard
Nanobacterie SARL, 36 boulevard Flandrin, 75016, Paris, France.
J Mater Chem B. 2017 Sep 28;5(36):7644-7660. doi: 10.1039/c6tb03248f. Epub 2017 Sep 8.
Magnetic hyperthermia, in which magnetic nanoparticles are introduced into tumors and exposed to an alternating magnetic field (AMF), appears to be promising since it can lead to increased life expectancy in patients. Its efficacy can be further improved by using biocompatible iron oxide magnetosome minerals with better crystallinity and magnetic properties compared with chemically synthesized nanoparticles (IONP - Iron Oxide Nanoparticles). To fabricate such minerals, magnetosomes are first isolated from MSR-1 magnetotactic bacteria, purified to remove potentially toxic organic bacterial residues and stabilized with poly-l-lysine (N-PLL), citric acid (N-CA), oleic acid (N-OA), or carboxy-methyl-dextran (N-CMD). The different coated nanoparticles appear to be composed of a cubo-octahedral mineral core surrounded by a coating of different thickness, composition, and charge, and to be organized in chains of various lengths. The in vitro anti-tumor and heating efficacies of these nanoparticles were examined by bringing them into contact with GL-261 glioblastoma cells and by applying an AMF. This led to a specific absorption rate of 89-196 W g , measured using an AMF of 198 kHz and 34-47 mT, and to percentages of tumor cell destruction due to the exposure of the nanoparticles to the AMF of 10 ± 3% to 43 ± 3% depending on the coating agent. These results show the potential of this protocol for the tumor treatment by magnetic hyperthermia.
磁热疗是将磁性纳米颗粒引入肿瘤并使其暴露于交变磁场(AMF)中,由于它可以延长患者的预期寿命,因此似乎很有前景。与化学合成的纳米颗粒(IONP - 氧化铁纳米颗粒)相比,使用具有更好结晶度和磁性的生物相容性氧化铁磁小体矿物质可以进一步提高其疗效。为了制造这种矿物质,首先从MSR - 1趋磁细菌中分离出磁小体,进行纯化以去除潜在有毒的有机细菌残留物,并用聚 - L - 赖氨酸(N - PLL)、柠檬酸(N - CA)、油酸(N - OA)或羧甲基葡聚糖(N - CMD)进行稳定化处理。不同包被的纳米颗粒似乎由一个立方八面体矿物核心组成,周围包裹着不同厚度、组成和电荷的涂层,并排列成各种长度的链状。通过使这些纳米颗粒与GL - 261胶质母细胞瘤细胞接触并施加AMF,检测了它们的体外抗肿瘤和加热效果。这导致在使用198 kHz和34 - 47 mT的AMF测量时,比吸收率为89 - 196 W/g,并且由于纳米颗粒暴露于AMF,肿瘤细胞破坏的百分比根据包被剂的不同为10±3%至43±3%。这些结果显示了该方案在磁热疗肿瘤治疗中的潜力。