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通过红细胞中葡萄糖-6-磷酸脱氢酶缺乏症的展示说明单细胞细胞化学

Single Cell Cytochemistry Illustrated by the Demonstration of Glucose-6-Phosphate Dehydrogenase Deficiency in Erythrocytes.

作者信息

Peters Anna L, van Noorden Cornelis J F

机构信息

Department of Intensive Care, Academic Medical Center, Meibergdreef 9, Amsterdam, 1105AZ, The Netherlands.

Department of Cell Biology and Histology, Academic Medical Center, Meibergdreef 15, 1105AZ, Amsterdam, The Netherlands.

出版信息

Methods Mol Biol. 2017;1560:3-13. doi: 10.1007/978-1-4939-6788-9_1.

Abstract

Cytochemistry is the discipline that is applied to visualize specific molecules in individual cells and has become an essential tool in life sciences. Immunocytochemistry was developed in the sixties of last century and is the most frequently used cytochemical application. However, metabolic mapping is the oldest cytochemical approach to localize activity of specific enzymes, but in the last decades of the previous century and the first decade of the present century it almost became obsolete. The popularity of this approach revived in the past few years. Metabolism gained interest as player in chronic and complex diseases such as cancer, diabetes, neurodegenerative diseases, and vascular diseases and both enzyme cytochemistry and metabolic mapping have become important tools in life sciences.In this chapter, we present glucose-6-phosphate dehydrogenase (G6PD) deficiency, the most prevalent enzyme deficiency worldwide, to illustrate recent developments in enzyme cytochemistry or metabolic mapping. The first assays which were developed quantified enzyme activity but were unreliable for single cell evaluation. The field has expanded with the development of cytochemical single cell assays and DNA testing. Still, all assays-from the earliest developed tests up to the most recently developed tests-have their place in investigations on G6PD activity. Recently, nanoscopy has become available for light and fluorescence microscopy at the nanoscale. For nanoscopy, cytochemistry is an essential tool to visualize intracellular molecular processes. The ultimate goal in the coming years will be nanoscopy of living cells so that the molecular dynamics can be studied. Cytochemistry will undoubtedly play a critical role in these developments.

摘要

细胞化学是一门用于在单个细胞中可视化特定分子的学科,已成为生命科学中的一项重要工具。免疫细胞化学在上世纪六十年代得以发展,是最常用的细胞化学应用。然而,代谢图谱是定位特定酶活性的最古老的细胞化学方法,但在上世纪的最后几十年和本世纪的头十年里,它几乎过时了。在过去几年中,这种方法再度流行起来。代谢作为癌症、糖尿病、神经退行性疾病和血管疾病等慢性复杂疾病的一个影响因素而受到关注,酶细胞化学和代谢图谱都已成为生命科学中的重要工具。在本章中,我们以葡萄糖 -6-磷酸脱氢酶(G6PD)缺乏症为例,这是全球最普遍的酶缺乏症,来说明酶细胞化学或代谢图谱的最新进展。最初开发的检测方法是对酶活性进行定量,但对于单细胞评估并不可靠。随着细胞化学单细胞检测和DNA检测的发展,该领域不断扩展。尽管如此,从最早开发的检测到最近开发的检测,所有检测方法在G6PD活性研究中都有其用武之地。最近,纳米显微镜已可用于纳米尺度的光学和荧光显微镜观察。对于纳米显微镜观察而言,细胞化学是可视化细胞内分子过程的重要工具。未来几年的最终目标将是对活细胞进行纳米显微镜观察,以便能够研究分子动力学。细胞化学无疑将在这些发展中发挥关键作用。

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