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荧光生物成像中常用纳米颗粒概述。

An overview of nanoparticles commonly used in fluorescent bioimaging.

机构信息

Institute of Analytical Chemistry, Chemo- and Biosensors, University of Regensburg, 93040 Regensburg, Germany.

出版信息

Chem Soc Rev. 2015 Jul 21;44(14):4743-68. doi: 10.1039/c4cs00392f.

DOI:10.1039/c4cs00392f
PMID:25620543
Abstract

This article gives an overview of the various kinds of nanoparticles (NPs) that are widely used for purposes of fluorescent imaging, mainly of cells and tissues. Following an introduction and a discussion of merits of fluorescent NPs compared to molecular fluorophores, labels and probes, the article assesses the kinds and specific features of nanomaterials often used in bioimaging. These include fluorescently doped silicas and sol-gels, hydrophilic polymers (hydrogels), hydrophobic organic polymers, semiconducting polymer dots, quantum dots, carbon dots, other carbonaceous nanomaterials, upconversion NPs, noble metal NPs (mainly gold and silver), various other nanomaterials, and dendrimers. Another section covers coatings and methods for surface modification of NPs. Specific examples on the use of nanoparticles in (a) plain fluorescence imaging of cells, (b) targeted imaging, (c) imaging of chemical species, and (d) imaging of temperature are given next. A final section covers aspects of multimodal imaging (such as fluorescence/nmr), imaging combined with drug and gene delivery, or imaging combined with therapy or diagnosis. The electronic supplementary information (ESI) gives specific examples for materials and methods used in imaging, sensing, multimodal imaging and theranostics such as imaging combined with drug delivery or photodynamic therapy. The article contains 273 references in the main part, and 157 references in the ESI.

摘要

本文概述了广泛用于荧光成像的各种纳米粒子 (NPs),主要是细胞和组织的荧光成像。在介绍和讨论了荧光 NPs 与分子荧光团、标记物和探针相比的优点之后,本文评估了生物成像中常用的纳米材料的种类和特点。这些包括荧光掺杂的硅和溶胶-凝胶、亲水性聚合物(水凝胶)、疏水性有机聚合物、半导体聚合物点、量子点、碳点、其他碳纳米材料、上转换 NPs、贵金属 NPs(主要是金和银)、各种其他纳米材料和树枝状大分子。另一部分涵盖了 NPs 表面修饰的涂层和方法。接下来,还介绍了纳米粒子在(a)细胞的普通荧光成像、(b)靶向成像、(c)化学物质成像和(d)温度成像中的具体应用实例。最后一部分涵盖了多模态成像(如荧光/NMR)、成像与药物和基因传递的结合、或成像与治疗或诊断的结合等方面。在主要部分中有 273 个参考文献,在 ESI 中有 157 个参考文献。

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