Chair Institute of Inorganic and Materials Chemistry, University of Cologne, D-50939 Cologne, Germany.
ACS Nano. 2011 Aug 23;5(8):6315-24. doi: 10.1021/nn201348s. Epub 2011 Aug 2.
Ultrasmall superparamagnetic Fe(3)O(4) nanoparticles (USIRONs) were synthesized by a novel, easily scalable chemical reduction of colloidal iron hydroxide under hydrothermal conditions. The average crystallite size (5.1 ± 0.5 nm) and good crystallinity of the samples were supported by HR-TEM analysis and the saturation magnetization value (47 emu g(-1)). Vitamin C, used as a chemical reducing agent, also served as a capping agent in the oxidized form (dehydroascorbic acid, DHAA) to impart nanoparticles with exceptional solubility and stability in water, PBS buffer, and cell culture medium. Detailed physicochemical analysis of the USIRON suspensions provided insight into the magnetic ordering phenomena within the colloid, arising from the formation of uniform clusters displaying a hydrodynamic size of 41 nm. Phantom experiments on the contrast agent (clinical 3 T MRI scanner) revealed an enhanced r(2)/r(1) ratio of 36.4 (r(1)= 5 s(-1) mM(-1) and r(2)= 182 s(-1) mM(-1)) when compared to the clinically approved agents. The potential of the DHAA-Fe(3)O(4) nanoparticles as negative contrast agents for MRI with optimal hydrodynamic size for extended blood circulation times was confirmed by strong contrast observed in T(2)- and T(2)*-weighted images. The cell tests performed with primary human immune-competent cells confirmed the excellent biocompatibility of USIRONs.
超小超顺磁性 Fe(3)O(4) 纳米粒子 (USIRONs) 通过胶体氢氧化铁在水热条件下的新型、易于扩展的化学还原法合成。高分辨率透射电子显微镜分析和饱和磁化强度值 (47 emu g(-1)) 支持了样品的平均晶粒尺寸 (5.1 ± 0.5 nm) 和良好的结晶度。维生素 C 用作化学还原剂,也在氧化形式 (脱氢抗坏血酸,DHAA) 中用作封端剂,使纳米粒子在水中、PBS 缓冲液和细胞培养基中具有出色的溶解性和稳定性。对 USIRON 悬浮液的详细物理化学分析深入了解了胶体中磁有序现象,这是由于形成了显示出 41 nm 水动力尺寸的均匀簇而引起的。对比剂(临床 3 T MRI 扫描仪)的幻影实验表明,与临床批准的试剂相比,r(2)/r(1) 比值提高了 36.4(r(1)= 5 s(-1) mM(-1) 和 r(2)= 182 s(-1) mM(-1))。DHAA-Fe(3)O(4) 纳米粒子作为具有延长血液循环时间的最佳水动力尺寸的 MRI 负对比剂的潜力通过 T(2)-和 T(2)*-加权图像中观察到的强对比得到了证实。与原代人免疫活性细胞进行的细胞测试证实了 USIRONs 的出色生物相容性。