Jung C W, Jacobs P
Advanced Magnetics, Inc. Cambridge, MA 02138-1038, USA.
Magn Reson Imaging. 1995;13(5):661-74. doi: 10.1016/0730-725x(95)00024-b.
The bulk physiochemical properties of the active ingredients in three AMI colloidal, superparamagnetic iron oxide (SPIO), MR contrast agents are described. Ferrous content and X-Ray diffraction (XRD) of the colloids are consistent with nonstoichiometric magnetite phases in all three active ingredients. No separate maghemite (gamma-Fe2O3) phases were detected by XRD. XRD line-broadening determinations of representative samples of ferumoxides (dextran coated), Ferumoxtran (dextran covered), and ferumoxsil (siloxane coated) yielded mean crystal diameters (volume weighted distribution) of 4.8-5.6, 5.8-6.2, and 7.9-8.8 nm, respectively. Transmission electron microscopy (TEM) showed that the crystal sizes were lognormally distributed with respective mean crystal diameters (number weighted distribution) of 4.3-4.8, 4.3-4.9, and 8.0-9.5 nm, respectively. Consistent with their small crystal sizes, the three SPIO colloids are superparamagnetic with no remanence after saturation at high applied fields (< 1 T), and showed characteristic relaxed Mössbauer spectra. The Mössbauer spectra of ferumoxides and Ferumoxtran were consistent with the presence of superparamagnetic relaxation above a blocking temperature of approximately 60 K. Due to the larger crystal sizes of ferumoxsil, its Mössbauer spectra showed the presence of rapid collective magnetic excitations on the Mössbauer time scale (approximately 1-10 ns). All three colloids showed high MR relaxivities. TEM of the SPIO colloids showed that ferumoxides and ferumoxsil are composed of aggregates of nonstoichiometric magnetite crystals, while Ferumoxtran consists of single crystals of nonstoichiometric magnetite. Dynamic light scattering (PCS) measurements showed that Ferumoxtran particles have average hydrodynamic diameters of approximately 21 nm (number weighted distribution) or 30 nm (volume weighted distribution). The data indicate that Ferumoxtran crystals are coated with an 8-12 nm layer of dextran T-10. Ferumoxides aggregates have average particle sizes of approximately 35 nm (number average distribution; TEM and PCS), or approximately 50 nm (volume weighted distribution; PCS). Mean sizes of ferumoxsil aggregates are approximately 300 nm (intensity weighted distribution). A discussion of the various particle size distributions is presented.
描述了三种急性心肌梗死(AMI)胶体超顺磁性氧化铁(SPIO)磁共振造影剂中活性成分的整体物理化学性质。三种活性成分中胶体的亚铁含量和X射线衍射(XRD)结果均与非化学计量磁铁矿相一致。XRD未检测到单独的磁赤铁矿(γ-Fe₂O₃)相。对铁氧体(葡聚糖包被)、铁氧葡聚糖(葡聚糖覆盖)和铁氧硅(硅氧烷包被)代表性样品进行XRD线宽测定,得出平均晶体直径(体积加权分布)分别为4.8 - 5.6、5.8 - 6.2和7.9 - 8.8纳米。透射电子显微镜(TEM)显示晶体尺寸呈对数正态分布,各自的平均晶体直径(数量加权分布)分别为4.3 - 4.8、4.3 - 4.9和8.0 - 9.5纳米。与它们较小的晶体尺寸一致,这三种SPIO胶体具有超顺磁性,在高外加磁场(<1 T)饱和后无剩磁,并呈现出特征性的弛豫穆斯堡尔谱。铁氧体和铁氧葡聚糖的穆斯堡尔谱与在约60 K的阻塞温度以上存在超顺磁性弛豫一致。由于铁氧硅的晶体尺寸较大,其穆斯堡尔谱显示在穆斯堡尔时间尺度(约1 - 10纳秒)上存在快速集体磁激发。所有三种胶体均显示出高磁共振弛豫率。SPIO胶体的TEM显示,铁氧体和铁氧硅由非化学计量磁铁矿晶体聚集体组成,而铁氧葡聚糖由非化学计量磁铁矿单晶组成。动态光散射(PCS)测量表明,铁氧葡聚糖颗粒的平均流体动力学直径约为21纳米(数量加权分布)或30纳米(体积加权分布)。数据表明,铁氧葡聚糖晶体被8 - 12纳米厚的葡聚糖T - 10层包覆。铁氧体聚集体的平均粒径约为35纳米(数均分布;TEM和PCS),或约50纳米(体积加权分布;PCS)。铁氧硅聚集体的平均尺寸约为300纳米(强度加权分布)。文中对各种粒径分布进行了讨论。