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一种使用中空金纳米球可视化淋巴内原血管系统的新技术。

A Novel Technique for Visualizing the Intralymphatic Primo Vascular System by Using Hollow Gold Nanospheres.

作者信息

Carlson Eric, Perez-Abadia Gustavo, Adams Staci, Zhang Jin Z, Kang Kyung A, Maldonado Claudio

机构信息

Department of Physiology and Biophysics, University of Louisville, Louisville, USA.

Department of Chemistry and Biochemistry and W. M. Keck Center for Nanoscale Optofluidics, University of California, Santa Cruz, USA.

出版信息

J Acupunct Meridian Stud. 2015 Dec;8(6):294-300. doi: 10.1016/j.jams.2015.09.003. Epub 2015 Oct 8.

Abstract

Until recently, the primo vascular system (PVS) has been unnoticed by most anatomists due to the small diameter and translucent features of the threadlike network. These properties make primo vessels (PVs) difficult to visualize for harvest and for further characterization. One particular PVS subtype that is located within the lymphatic vessels (LVs) is of strong interest because with a proper contrast, these long PVs can be visualized through the transparent LV wall and can be harvested to provide sufficient sample material for analysis. The most common method to visualize this PVS subtype utilizes Alcian blue as the contrast agent. This technique is effective, but tedious, and has relatively low repeatability. The purpose of this study was to develop a new technique that allows reliable visualization of the intralymphatic PVS (IL-PVS) in a user-friendly manner. The method was designed to provide optical contrast to the PVS by taking advantage of the porous nature of the PV's external wall and interstitial matrix. Turquoise-green-colored hollow gold nanospheres (HGNs) in the size range of 50-125 nm were found to provide excellent optical contrast for the IL-PVS in rats. The PVS was visualized within 10 minutes after HGN administration at a 95% success rate.

摘要

直到最近,由于丝状网络的直径小且具有半透明特征,大多数解剖学家都未注意到原血管系统(PVS)。这些特性使得原血管(PVs)在采集和进一步表征时难以可视化。一种位于淋巴管(LVs)内的特殊PVS亚型备受关注,因为在适当的造影剂作用下,这些长的PVs可以透过透明的LV壁可视化,并且可以采集以提供足够的样本材料进行分析。可视化这种PVS亚型最常用的方法是使用阿尔新蓝作为造影剂。该技术有效,但繁琐,且重复性相对较低。本研究的目的是开发一种新技术,以用户友好的方式可靠地可视化淋巴管内PVS(IL-PVS)。该方法旨在利用PV外壁和间质基质的多孔性质为PVS提供光学对比度。发现尺寸范围为50-125nm的绿松石绿色空心金纳米球(HGNs)为大鼠的IL-PVS提供了出色的光学对比度。在给予HGN后10分钟内即可可视化PVS,成功率为95%。

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