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Synthesisof Multifunctional Magnetic NanoFlakes forMagnetic Resonance Imaging Hyperthermia and Targeting.

机译:合成多功能磁性纳米薄片的制备磁共振成像热疗和靶向。

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摘要

Iron oxide nanoparticles (IOs) are intrinsically theranostic agents that could be used for magnetic resonance imaging (MRI) and local hyperthermia or tissue thermal ablation. Yet, effective hyperthermia and high MR contrast have not been demonstrated within the same nanoparticle configuration. Here, magnetic nanoconstructs are obtained by confining multiple, ∼ 20 nm nanocubes (NCs) within a deoxy-chitosan core. The resulting nanoconstructs—magnetic nanoflakes (MNFs)—exhibit a hydrodynamic diameter of 156 ± 3.6 nm, with a polydispersity index of ∼0.2, and are stable in PBS up to 7 days. Upon exposure to an alternating magnetic field of 512 kHz and 10 kA m–1, MNFs provide a specific absorption rate (SAR) of ∼75 W gFe–1, which is 4–15 times larger than that measured for conventional IOs. Moreover, the same nanoconstructs provide a remarkably high transverse relaxivity of ∼500 (mM s)−1, at 1.41T. MNFs represent a first step toward the realization of nanoconstructs with superior relaxometric and ablation properties for more effective theranostics.
机译:氧化铁纳米粒子(IOs)本质上是治疗治疗剂,可用于磁共振成像(MRI)和局部热疗或组织热消融。然而,尚未在相同的纳米颗粒配置中证明有效的热疗和高MR对比。在这里,磁性纳米结构是通过将多个〜20 nm纳米立方体(NC)限制在脱氧壳聚糖核心中而获得的。所得的纳米结构-磁性纳米薄片(MNFs)的流体动力学直径为156±3.6 nm,多分散指数约为0.2,并且在PBS中稳定长达7天。在512 kHz和10 kA m –1 的交变磁场下,MNFs的比吸收率(SAR)为〜75 W gFe -1 ,即比传统IO的测量结果大4至15倍。此外,相同的纳米结构在1.41T时具有约500(mM s) -1 的极高的横向弛豫率。 MNF是迈向实现纳米结构的第一步,纳米结构具有出色的弛豫和消融特性,可实现更有效的治疗学。

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