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一种用于淬灭校正的新方法导致受体放射自显影数据的修订。

A new method for quenching correction leads to revisions of data in receptor autoradiography.

作者信息

Zilles K, zur Nieden K, Schleicher A, Traber J

机构信息

Institute I of Anatomy, University of Cologne, Federal Republic of Germany.

出版信息

Histochemistry. 1990;94(6):569-78. doi: 10.1007/BF00271983.

Abstract

Differential quenching of beta-emission affects strongly the analysis of receptor distribution patterns in quantitative receptor autoradiography with tritiated ligands. Different methods for the quenching correction have been described in the past, but some of these are of limited value, if a detailed anatomical parcellation is necessary. Other methods correct exclusively local variations in lipid concentration, which is an important, but only one of several factors causing quenching. A new method for the measurement of quenching (or autoradiographic efficiency) is presented, which permits an anatomically detailed and direct determination of the total quenching without lipid extraction procedures. This method is based on the measurement of autoradiographic efficiency in cryostat sections homogeneously labeled with tritiated formaldehyde by an underlying gelatine section containing this labeled compound. Regional and layer specific measurements of autoradiographic efficiency in cortical and subcortical regions of the human and rat brain are reported. A significant correlation was found between the density of myelin and autoradiographic efficiency but other factors were also shown to influence differential quenching. The use of the here presented correction procedure leads to revisions of the laminar distribution patterns reported for different receptors in human and rat cortical areas. Our results show, that a complete quenching correction is necessary for the mapping of receptor distributions with tritiated ligands.

摘要

β发射的差异淬灭对用氚标记配体进行定量受体放射自显影分析受体分布模式有很大影响。过去已经描述了不同的淬灭校正方法,但如果需要详细的解剖分区,其中一些方法的价值有限。其他方法仅校正脂质浓度的局部变化,这是导致淬灭的一个重要因素,但只是几个因素之一。本文提出了一种测量淬灭(或放射自显影效率)的新方法,该方法无需脂质提取程序即可对总淬灭进行解剖学上详细且直接的测定。该方法基于通过含有这种标记化合物的下层明胶切片,对用氚化甲醛均匀标记的低温恒温器切片中的放射自显影效率进行测量。报告了人和大鼠脑皮质和皮质下区域放射自显影效率的区域和层特异性测量结果。发现髓磷脂密度与放射自显影效率之间存在显著相关性,但也显示其他因素会影响差异淬灭。使用本文提出的校正程序会导致对人和大鼠皮质区域中不同受体报道的层状分布模式进行修订。我们的结果表明,对于用氚标记配体绘制受体分布图,完全的淬灭校正是必要的。

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