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首页> 外文期刊>Quantitative Imaging in Medicine and Surgery >Design and synthesis of magnetic nanoparticles for biomedical diagnostics
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Design and synthesis of magnetic nanoparticles for biomedical diagnostics

机译:用于生物医学诊断的磁性纳米颗粒的设计与合成

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Sensitive and quantitative characterization of clinically relevant biomarkers can facilitate disease diagnosis and treatment evaluation. Magnetic nanomaterials and their biosensing strategies have recently received considerable attention. Magnetic signals experience little interference from native biological background as most biological molecules have negligible magnetic susceptibilities and thus appear transparent to external magnetic fields. Because of this unique property, magnetic sensing can be applied to both in vivo deep tissue imaging as well as ex vivo point-of-care diagnostics. To exploit this mode of magnetic detection, new advancements in both magnetic material syntheses and sensing technologies have been made. This review focuses on recent developments of magnetic nanomaterials as image contrast agents and diagnostic sensors. These developments have not only enabled precise control of magnetic nanomaterial properties but also expanded the reach of magnetic detection for biomedical diagnostics.
机译:临床相关生物标志物的灵敏和定量表征可以促进疾病诊断和治疗评估。磁性纳米材料及其生物传感策略最近受到了相当大的关注。磁信号几乎不受天然生物学背景的干扰,因为大多数生物分子的磁化率可忽略不计,因此对外部磁场透明。由于这种独特的特性,磁感测可应用于体内深层组织成像以及离体即时诊断。为了利用这种磁性检测模式,磁性材料合成和传感技术都取得了新的进展。这篇综述集中在磁性纳米材料作为图像对比剂和诊断传感器的最新发展。这些发展不仅实现了磁性纳米材料特性的精确控制,而且扩大了生物医学诊断中磁性检测的范围。

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