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Innovative magnetic nanoparticle platform for magnetic resonance imaging and magnetic fluid hyperthermia applications

机译:用于磁共振成像和磁流体热疗应用的创新磁性纳米粒子平台

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Magnetic nanoparticles (MNPs) have been extensively used as contrast and hyperthermia agents for magnetic resonance imaging (MRI) and magnetic fluid hyperthermia (MFH) applications. Current superparamagnetic iron oxides, however, exhibit low sensitivity and poor heating efficiency. MNPs should possess precisely tunable magnetic properties and biological functionalities for early diagnosis and efficient therapeutics, which could be achieved by tailoring the MNP size, shape, composition, and surface coating during chemical engineering processes. Recent advances in controllable synthesis that have helped realize promising MNP platforms as high-performance contrast and hyperthermia agents for highly sensitive MRI and efficient MFH applications have been reviewed. All of those dependences should be optimized together in order to reach a comprehensive, conclusive understanding of MNPs and maximize T1 or T2 relaxivity and specific absorption rate (SAR) to chemically engineer an ideal nanoagent.
机译:磁性纳米粒子(MNP)已被广泛用作造影剂和热疗剂,用于磁共振成像(MRI)和磁流体热疗(MFH)应用。然而,当前的超顺磁性氧化铁表现出低灵敏度和差的加热效率。 MNP应具有精确的可调磁特性和生物学功能,以进行早期诊断和有效的治疗,这可以通过在化学工程过程中定制MNP的尺寸,形状,成分和表面涂层来实现。综述了可控合成技术的最新进展,这些进展已帮助实现有前途的MNP平台,如用于高灵敏度MRI和高效MFH应用的高性能造影剂和热疗剂。所有这些依赖性都应一起优化,以便对MNP达成全面,结论性的理解,并最大限度地提高T1或T2弛豫性和比吸收率(SAR),以化学方式构建理想的纳米剂。

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