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带有无壳培养室的延时成像系统。

Time-lapse imaging system with shell-less culture chamber.

作者信息

Funahashi Jun-ichi, Nakamura Harukazu

机构信息

Department of Project Programs, Institute of Development, Aging and Cancer (IDAC), Tohoku University, Aoba-ku, Sendai, Japan.

出版信息

Dev Growth Differ. 2014 May;56(4):305-9. doi: 10.1111/dgd.12132. Epub 2014 Apr 11.

DOI:10.1111/dgd.12132
PMID:24720489
Abstract

We have developed a system for imaging whole chick embryos from embryonic day 1.5 (E1.5) to E4.5. Our system consists of a custom-made culture chamber, the top and bottom of which were heated and the inside was humidified. The system also has a fixed stage uplight fluorescent microscope, and long-working distance objective lenses were adopted. The albumen removed-yolk with the embryo in the dish was put in the chamber. It is of importance that we adopted long working distance lenses because the working distance of conventional objective lenses is too short for observation of the embryo in a humidified chamber. The objective lens we adopted has sufficient resolution to detect fluorescent protein expression at the single-cell level. Transparent glass heater set on the top of the chamber helps to reduce dew condensation; the bottom heater keeps the temperature inside the chamber, and the water bath surrounding the egg maintains humidity. This system was used to detect fluorescent protein expressing cells in embryos. We could successfully trace those cells for 17 h in vivo. In conclusion, this system is useful for time-lapse analysis of fluorescent protein expression and distribution for a longer period of time.

摘要

我们开发了一种用于对整个鸡胚从胚胎第1.5天(E1.5)到E4.5进行成像的系统。我们的系统由一个定制的培养室组成,其顶部和底部进行加热,内部保持湿润。该系统还配备了一台固定载物台的落射荧光显微镜,并采用了长工作距离物镜。将去除蛋白的带胚胎的卵黄置于培养皿中放入培养室内。我们采用长工作距离物镜很重要,因为传统物镜的工作距离对于在湿润培养室内观察胚胎来说太短。我们采用的物镜具有足够的分辨率来检测单细胞水平的荧光蛋白表达。置于培养室顶部的透明玻璃加热器有助于减少结露;底部加热器保持培养室内的温度,围绕鸡蛋的水浴维持湿度。该系统用于检测胚胎中表达荧光蛋白的细胞。我们能够在体内成功追踪这些细胞长达17小时。总之,该系统对于长时间的荧光蛋白表达和分布的延时分析很有用。

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