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使用活体共聚焦显微摄像术对静脉注射物质进行直接和即时观察。

Direct and instantaneous observation of intravenously injected substances using intravital confocal micro-videography.

作者信息

Matsumoto Yu, Nomoto Takahiro, Cabral Horacio, Matsumoto Yoko, Watanabe Sumiyo, Christie R James, Miyata Kanjiro, Oba Makoto, Ogura Tadayoshi, Yamasaki Yuichi, Nishiyama Nobuhiro, Yamasoba Tatsuya, Kataoka Kazunori

出版信息

Biomed Opt Express. 2010 Oct 21;1(4):1209-1216. doi: 10.1364/BOE.1.001209.

Abstract

We describe the development and application of intravital confocal micro-videography to visualize entrance, distribution, and clearance of drugs within various tissues and organs. We use a Nikon A1R confocal laser scanning microscope system attached to an upright ECLIPSE FN1. The Nikon A1R allows simultaneous four channel acquisition and speed of 30 frames per second while maintaining high resolution of 512 × 512 scanned points. The key techniques of our intravital imaging are (1) to present a flat and perpendicular surface to the objective lens, and (2) to expose the subject with little or no bleeding to facilitate optical access to multiple tissues and organs, and (3) to isolate the subject from the body movement without compressing the blood vessels, and (4) to insert a tail vein catheter for timed injection without moving the subject. Ear lobe dermis tissue was accessible without surgery. Liver, kidney, and subcutaneous tumor were accessed following exteriorization through skin incision. In order to image initial extravasations of compounds into tissue following intravenous injection, movie acquisition was initialized prior to drug administration. Our technique can serve as a powerful tool for investigating biological mechanisms and functions of intravenously injected drugs, with both spatial and temporal resolution.

摘要

我们描述了活体共聚焦显微摄像技术的开发与应用,以可视化药物在各种组织和器官内的进入、分布和清除情况。我们使用连接到直立式ECLIPSE FN1的尼康A1R共聚焦激光扫描显微镜系统。尼康A1R允许同时进行四通道采集,速度为每秒30帧,同时保持512×512扫描点的高分辨率。我们活体成像的关键技术包括:(1)向物镜呈现平坦且垂直的表面;(2)使受试者出血很少或不出血,以便于光学观察多个组织和器官;(3)将受试者与身体运动隔离开,同时不压迫血管;(4)插入尾静脉导管进行定时注射,而不移动受试者。耳垂真皮组织无需手术即可观察。通过皮肤切口暴露后可观察肝脏、肾脏和皮下肿瘤。为了成像静脉注射后化合物进入组织的初始外渗情况,在给药前启动电影采集。我们的技术可作为研究静脉注射药物的生物学机制和功能的有力工具,具有空间和时间分辨率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9704/3018094/980b674fbead/boe-1-4-1209-g001.jpg

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