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Nanoparticles for biomedical imaging.

机译:用于生物医学成像的纳米颗粒。

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BACKGROUND: Synthetic nanoparticles are emerging as versatile tools in biomedical applications, particularly in the area of biomedical imaging. Nanoparticles 1 - 100 nm in diameter have dimensions comparable to biological functional units. Diverse surface chemistries, unique magnetic properties, tunable absorption and emission properties, and recent advances in the synthesis and engineering of various nanoparticles suggest their potential as probes for early detection of diseases such as cancer. Surface functionalization has expanded further the potential of nanoparticles as probes for molecular imaging. OBJECTIVE: To summarize emerging research of nanoparticles for biomedical imaging with increased selectivity and reduced nonspecific uptake with increased spatial resolution containing stabilizers conjugated with targeting ligands. METHODS: This review summarizes recent technological advances in the synthesis of various nanoparticle probes, and surveys methods to improve the targeting of nanoparticles for their application in biomedical imaging. CONCLUSION: Structural design of nanomaterials for biomedical imaging continues to expand and diversify. Synthetic methods have aimed to control the size and surface characteristics of nanoparticles to control distribution, half-life and elimination. Although molecular imaging applications using nanoparticles are advancing into clinical applications, challenges such as storage stability and long-term toxicology should continue to be addressed.
机译:背景技术:合成的纳米颗粒正在作为生物医学应用中的通用工具出现,特别是在生物医学成像领域。直径为1-100 nm的纳米颗粒的尺寸可与生物功能单元相比。多样的表面化学特性,独特的磁性,可调节的吸收和发射特性以及各种纳米粒子的合成和工程化的最新进展表明,它们具有作为癌症等早期疾病检测探针的潜力。表面功能化进一步扩大了纳米粒子作为分子成像探针的潜力。目的:概述用于生物医学成像的纳米粒子的新兴研究,该纳米粒子具有与靶向配体偶联的稳定剂,具有更高的选择性和更低的非特异性摄取,且具有更高的空间分辨率。方法:这篇综述总结了各种纳米粒子探针合成中的最新技术进展,并调查了改善纳米粒子靶向性的方法,以将其应用于生物医学成像。结论:用于生物医学成像的纳米材料的结构设计不断扩展和多样化。合成方法旨在控制纳米颗粒的大小和表面特征,以控制分布,半衰期和消除。尽管使用纳米颗粒的分子成像应用正在进入临床应用,但是诸如存储稳定性和长期毒理学等挑战仍应继续解决。

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