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一种用于使用荧光数字成像显微镜研究单个活T细胞内钙水平的一次性腔体温调节系统。

A disposable-chamber temperature-regulation system for the study of intracellular calcium levels in single live T cells using fluorescence digital-imaging microscopy.

作者信息

Boltz R C, Sirotina A, Blake T, Kath G, Uhrig B, McKeel J, Quinn C

机构信息

Department of Immunology Research (R.C.B., A.S., T.B., Merck Research Laboratories, Rahway, New Jersey 07065.

出版信息

Cytometry. 1994 Oct 1;17(2):128-34. doi: 10.1002/cyto.990170204.

Abstract

Utilizing flow cytometry, we previously demonstrated that the potassium channel blocker margatoxin (MgTX) inhibits the [Ca2+]i transient involved in T-cell activation. We wished to extend these studies to single-cell transients using florescence digital-imaging microscopy (DIM). However, the most currently available temperature-regulation chambers reuse part or all of the apparatus and introduce compounds via perfusion. Thus, these apparatuses are not suitable for studies involving compounds that are particularly sticky. We have designed a dual-temperature regulation system that will maintain Nunc, eight-well, coverglass-bottom, disposable chambers, and three disposable addition pipets at 37 degrees C for physiological studies on an inverted digital-imaging microscope. We have demonstrated that calcium transients of human T lymphocytes can be initiated and monitored reproducibly during the addition of three distinct chemical species. The DIM results correlate with flow cytometry measurements in the number of responding cells and the heterogeneity of the response in both control and MgTX-inhibited cultures. Additionally, DIM revealed that the [Ca2+]i transient is more rapid than the flow-cytometric measurement indicated. The correlation between flow cytometry and DIM permits the amalgamation of these results in the interpretation of studies on the regulation of T-cell activation.

摘要

我们之前利用流式细胞术证明,钾通道阻滞剂玛格毒素(MgTX)可抑制参与T细胞活化的[Ca2+]i瞬变。我们希望使用荧光数字成像显微镜(DIM)将这些研究扩展到单细胞瞬变。然而,目前最常用的温度调节室会重复使用部分或全部设备,并通过灌注引入化合物。因此,这些设备不适用于涉及特别粘稠化合物的研究。我们设计了一种双温度调节系统,该系统可在倒置数字成像显微镜上,将Nunc八孔、盖玻片底部的一次性培养室和三个一次性加样移液器维持在37摄氏度,用于生理学研究。我们已经证明,在添加三种不同化学物质的过程中,可以可重复地启动和监测人T淋巴细胞的钙瞬变。DIM结果与流式细胞术测量结果在反应细胞数量以及对照和MgTX抑制培养物中反应的异质性方面相关。此外,DIM显示[Ca2+]i瞬变比流式细胞术测量结果表明的更快。流式细胞术和DIM之间的相关性使得在解释T细胞活化调节研究时可以将这些结果合并。

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