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在体成像观察小鼠脑脊液的淋巴引流。

In vivo imaging of lymphatic drainage of cerebrospinal fluid in mouse.

机构信息

Keenan Research Centre for Biomedical Science, St, Michael's Hospital, Toronto, ON, Canada.

出版信息

Fluids Barriers CNS. 2013 Dec 21;10(1):35. doi: 10.1186/2045-8118-10-35.

Abstract

BACKGROUND

Mouse models are commonly used to study central nervous system disorders, in which cerebrospinal fluid (CSF) drainage may be disturbed. However, mouse CSF drainage into lymphatics has not been thoroughly characterized. We aimed to image this using an in vivo approach that combined quantum dot fluorescent nanoparticles with hyperspectral imaging.

FINDINGS

Quantum dot 655 was injected into the CSF of the cisterna magna in seven mice and visualized by in vivo hyperspectral imaging at time points 20 and 40 min, 1, 2, and 6 h after injection. In controls (n = 4), quantum dots were applied directly onto intact dura mater covering the cisterna magna. After imaging, lymph nodes in the neck were harvested and processed post-mortem for histological analysis. After injection into the CSF, quantum dot signal was detected in vivo in submandibular lymph nodes of all mice studied as early as 20 min, but not in controls. Post-mortem gross and histological examination of lymph nodes confirmed in vivo observations.

CONCLUSIONS

Non-invasive in vivo hyperspectral imaging is a useful tool to study CSF lymphatic drainage and is relevant to understanding this pathway in CNS disease models.

摘要

背景

小鼠模型常用于研究中枢神经系统疾病,其中脑脊液(CSF)引流可能受到干扰。然而,鼠 CSF 向淋巴系统的引流尚未得到充分描述。我们旨在通过一种将量子点荧光纳米粒子与高光谱成像相结合的体内方法来对此进行成像。

发现

将量子点 655 注入到七只小鼠的脑脊髓液中,并在注射后 20 和 40 分钟、1、2 和 6 小时进行体内高光谱成像来进行可视化。在对照组(n=4)中,量子点直接应用于覆盖脑脊髓液池的完整硬脑膜上。成像后,采集颈部淋巴结并进行死后组织学分析。在 CSF 中注射后,所有研究的小鼠在 20 分钟内就可以在颌下淋巴结中检测到量子点信号,但对照组则没有。淋巴结的死后大体和组织学检查证实了体内观察结果。

结论

非侵入性体内高光谱成像是研究 CSF 淋巴引流的有用工具,与理解 CNS 疾病模型中该途径相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45b1/3879644/eedebae56764/2045-8118-10-35-1.jpg

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