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采用微波辅助溶液燃烧合成法制备用于生物成像应用的掺铕磷酸钙纳米线。

A microwave-assisted solution combustion synthesis to produce europium-doped calcium phosphate nanowhiskers for bioimaging applications.

机构信息

The University of Toledo, Colleges of Engineering and of Medicine and Life Sciences, Department of Biomedical Engineering, Toledo, OH 43606, USA.

出版信息

Acta Biomater. 2013 Sep;9(9):8422-32. doi: 10.1016/j.actbio.2013.05.033. Epub 2013 Jun 11.

Abstract

Biocompatible nanoparticles possessing fluorescent properties offer attractive possibilities for multifunctional bioimaging and/or drug and gene delivery applications. Many of the limitations with current imaging systems center on the properties of the optical probes in relation to equipment technical capabilities. Here we introduce a novel high aspect ratio and highly crystalline europium-doped calcium phosphate nanowhisker produced using a simple microwave-assisted solution combustion synthesis method for use as a multifunctional bioimaging probe. X-ray diffraction confirmed the material phase as europium-doped hydroxyapatite. Fluorescence emission and excitation spectra and their corresponding peaks were identified using spectrofluorimetry and validated with fluorescence, confocal and multiphoton microscopy. The nanowhiskers were found to exhibit red and far red wavelength fluorescence under ultraviolet excitation with an optimal peak emission of 696 nm achieved with a 350 nm excitation. Relatively narrow emission bands were observed, which may permit their use in multicolor imaging applications. Confocal and multiphoton microscopy confirmed that the nanoparticles provide sufficient intensity to be utilized in imaging applications.

摘要

具有荧光特性的生物相容性纳米粒子为多功能生物成像和/或药物及基因传递应用提供了有吸引力的可能性。目前的成像系统的许多局限性都集中在光学探针与设备技术能力的关系上。在这里,我们介绍了一种新型的高纵横比和高结晶的掺铕磷酸钙纳米线,它是使用简单的微波辅助溶液燃烧合成方法制备的,可用作多功能生物成像探针。X 射线衍射证实了材料相为掺铕羟基磷灰石。荧光发射和激发光谱及其相应的峰通过荧光分光光度法确定,并通过荧光、共聚焦和多光子显微镜进行了验证。纳米线在紫外激发下表现出红色和远红色波长的荧光,在 350nm 激发下达到 696nm 的最佳峰值发射。观察到相对较窄的发射带,这可能允许它们用于多色成像应用。共聚焦和多光子显微镜证实,纳米颗粒提供了足够的强度,可用于成像应用。

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