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肥大细胞中5-羟色胺的细胞荧光定量分析:甲醛缩合反应的一种改进技术。

Cytofluorometric quantitation of 5-hydroxytryptamine in mast cells: an improved technique for the formaldehyde condensation reaction.

作者信息

Enerbäck L, Gustafsson B, Mellblom L

出版信息

J Histochem Cytochem. 1977 Jan;25(1):32-41. doi: 10.1177/25.1.556750.

Abstract

A simple technique for the condensation of cellular 5-hydroxytryptamine (5-HT) with formaldehyde gas is described. The technique, which is especially suited for quantitative cytofluormetric studies, involves the generation of formaldehyde gas from dry paraformaldehyde in a closed reaction vessel with the addition of a measured quantity of water. The fluorescence yield of 5-HT was tested at various humidities. Optimal results were obtained with the addition of 100 mg water to a 1000 ml reaction vessel containing 6 g of dry paraformaldehyde. A major advantage of the method if the fact that the humidity during the reaction can be precisely controlled. The fluorescence yield of 5-HT, tested over a 50 day period showed excellent reproducibility. The stoichiometry of the reaction was tested by comparison of cytofluormetic data with that obtained by analysing the 5-HT content of pooled mast cells with an independent biochemical method. A highly satisfactory correlation (r = 0.96) was obtained within the range of 0.1 to 4 pg of 5-HT per cell. The limit of sensitivity of the cytofluorometric method was found to be of the order of 10(-13) g, and was determined by the fluorescence blank of the mast cells. This contributes to between 10 and 30 per cent of the total fluorescence emission from mast cells containing about 0.2 pg of 5-HT.

摘要

本文描述了一种将细胞内5-羟色胺(5-HT)与甲醛气体缩合的简单技术。该技术特别适用于定量细胞荧光分析研究,它是在一个封闭的反应容器中,通过向一定量的干燥多聚甲醛中加入一定量的水来产生甲醛气体。在不同湿度条件下测试了5-HT的荧光产率。在含有6 g干燥多聚甲醛的1000 ml反应容器中加入100 mg水时,可获得最佳结果。该方法的一个主要优点是能够精确控制反应过程中的湿度。在50天的时间内对5-HT的荧光产率进行测试,结果显示出极好的重现性。通过将细胞荧光分析数据与用独立生化方法分析汇集肥大细胞中5-HT含量所获得的数据进行比较,对反应的化学计量关系进行了测试。在每个细胞含0.1至4 pg 5-HT的范围内,获得了高度令人满意的相关性(r = 0.96)。细胞荧光分析方法的灵敏度极限约为10^(-13) g,由肥大细胞的荧光空白值确定。这占含有约0.2 pg 5-HT的肥大细胞总荧光发射量的10%至30%。

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