Materials Science and Devices Institute, Suzhou University of Science and Technology, 1 Kerui Road, Suzhou 215009, Jiangsu, China.
Nanoscale. 2020 Mar 7;12(9):5521-5532. doi: 10.1039/c9nr10397j. Epub 2020 Feb 24.
Iron based nanomedicine (IBNM) has been one powerful diagnostic tool as a magnetic resonance imaging (MRI) contrast agent (CA) in the clinic for years. Conventional IBNMs are generally employed as T-MRI CAs, but most of them are constrained in clinical indication expansion by magnetic susceptibility artifacts. In comparison, extremely small iron oxide (ESIO) with a core size less than 5 nm has demonstrated the T-MRI effect, which provides prospects for a Gd-based agent alternative. Nevertheless, currently developed ESIOs for T-MRI CAs always require harsh conditions such as a high temperature and high boiling point reagent. Moreover, very few of the currently developed ESIOs meet the stringent pharmaceutical standard. Herein, on the basis of a crystal nuclear precipitation-dissolution equilibrium mechanism and outer/inner sphere T-MRI theory, monodisperse ESIOs with an average size of 3.43 nm (polydispersity index of 0.104) are fabricated using a moderate cooling procedure with mild coprecipitation reaction conditions. The as-synthesized ESIOs display around 3-fold higher T MRI signal intensity than that of commercial Ferumoxytol (FMT), comparable to that of Gd-based CAs in vitro. Additionally, the T-MRI performance of the ESIOs is pH dependent and delivers bright signal augmentation. Eventually, the internalization into mesenchymal stem cells of the ESIO is realized in the absence of a transferring agent. Considering the identical structure and composition of the ESIOs as compared to that of FMT, they could meet the pharmaceutical criteria, thus providing great potential as T-MRI Cas, for instance as stem cell tracers.
铁基纳米医学(IBNM)多年来一直是一种强大的诊断工具,可用作磁共振成像(MRI)造影剂(CA)。传统的 IBNM 通常用作 T-MRI CA,但它们中的大多数在临床适应证扩展方面受到磁敏感性伪影的限制。相比之下,粒径小于 5nm 的超小氧化铁(ESIO)具有 T-MRI 效应,为替代钆基造影剂提供了前景。然而,目前开发的 T-MRI CA ESIO 通常需要苛刻的条件,如高温和高沸点试剂。此外,目前开发的 ESIO 很少满足严格的药物标准。在此基础上,基于晶核沉淀溶解平衡机制和内外球 T-MRI 理论,采用温和共沉淀反应条件的适度冷却程序制备了平均粒径为 3.43nm(多分散指数为 0.104)的单分散 ESIO。合成的 ESIO 的 T-MRI 信号强度比商用 Ferumoxytol(FMT)高约 3 倍,与体外的钆基 CA 相当。此外,ESIO 的 T-MRI 性能与 pH 值有关,可实现信号增强。最终,在没有转染剂的情况下,将 ESIO 内化到间充质干细胞中。考虑到 ESIO 与 FMT 具有相同的结构和组成,它们可能符合药物标准,因此作为 T-MRI CA 具有很大的潜力,例如作为干细胞示踪剂。