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Dye-Doped Fluorescent Nanoparticles in Molecular Imaging: A Review of Recent Advances and Future Opportunities

机译:染料掺杂的荧光纳米粒子在分子成像中的研究:最近的进展和未来的机会。

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摘要

Molecular Imaging (MI) is an in vivo assessment of characterization and quantitatively measurement of biological processes at the molecular level. Determination of pathologies of malfunctioned tissues without invasive biopsies or surgical procedures, early detection, monitoring of treatment process and visualization of cell trafficking are advantages of this approach. One example of basic requirement of MI is high affinity molecular probe that acts as the source of image contrast. Recent advances in nanotechnology have developed the use of nanoparticles as MI probe. Optical molecular imaging is one of the main categories of molecular imaging with great potentials for in vivo cell trafficking. Fluorescent nanoparticles are a major group of nanoparticles in optical molecular imaging. Dye-doped, quantum dots and upconversion particles are three classes of fluorescent nanoparticles. This paper reviews the basic principles of molecular imaging based on nanoparticles focusing on the optical molecular imaging. The characteristics of dye-doped nanoparticles, their as well as of that are reviewed in this paper.
机译:分子成像(MI)是在分子水平上对生物过程进行表征和定量测量的体内评估。这种方法的优点是无需侵入性活组织检查或外科手术程序即可确定故障组织的病理状况,及早发现,监测治疗过程并可视化细胞运输。 MI的基本要求之一是充当图像对比度来源的高亲和力分子探针。纳米技术的最新进展已经开发了纳米颗粒作为MI探针的用途。光学分子成像是分子成像的主要类别之一,具有体内细胞运输的巨大潜力。荧光纳米颗粒是光学分子成像中主要的纳米颗粒组。染料掺杂的量子点和上转换颗粒是三类荧光纳米颗粒。本文综述了基于纳米粒子的分子成像的基本原理,重点是光学分子成像。本文概述了染料掺杂的纳米颗粒的特性以及它们的特性。

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