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多胺作为临床实验室工具。

Polyamines as clinical laboratory tools.

作者信息

Gugliucci A

机构信息

Laboratory of Biochemistry, Division of Basic Medical Sciences, Touro University College of Osteopathic Medicine, 1310 Johnson Lane, Mare Island, Vallejo, CA 94592, USA.

出版信息

Clin Chim Acta. 2004 Jun;344(1-2):23-35. doi: 10.1016/j.cccn.2004.02.022.

Abstract

Since their discovery by Antoni van Leeuwenhoek in 1678 until the recent development of transgenic mice expressing proteins altering polyamine levels in a tissue-specific manner, polyamines have been the object of intense research efforts which have shed light on several biological and pathological processes. From the discovery of a particular form of proteasome regulation of the catabolism of the key regulatory enzyme in their synthetic pathway, to the experimental cancer treatment or prevention with polyamine antagonists or inhibitors of the latter enzyme, a whole spectrum of interests can be revealed. Still, many aspects of their functions remain elusive and difficulties inherent in their analysis, which relies on sophisticated high-performance liquid chromatographic (HPLC) methods, and the lack of standardization; have hampered the transit from the research realm to the standard clinical laboratory domain. Their assay in biological fluids has been used for cancer diagnosis and for monitoring anticancer treatment. In this article, we attempt to provide an overview of polyamine structure, nutritional value, metabolism, and physiological roles. Next, we will summarize the main analytical methods on which we count, and finally we will address their role in diagnosis of cancer as well their proposed role as antioxidant and antiglycation agents.

摘要

自1678年安东尼·范·列文虎克发现多胺以来,直至最近通过转基因小鼠以组织特异性方式表达改变多胺水平的蛋白质的技术发展,多胺一直是大量研究工作的对象,这些研究揭示了多种生物学和病理学过程。从发现其合成途径中关键调节酶分解代谢的一种特定形式的蛋白酶体调节,到用多胺拮抗剂或后一种酶的抑制剂进行实验性癌症治疗或预防,都能展现出一系列的研究兴趣。尽管如此,它们功能的许多方面仍然难以捉摸,而且其分析存在固有的困难,这依赖于复杂的高效液相色谱(HPLC)方法,并且缺乏标准化;这些都阻碍了从研究领域向标准临床实验室领域的过渡。它们在生物体液中的检测已用于癌症诊断和监测抗癌治疗。在本文中,我们试图概述多胺的结构、营养价值、代谢和生理作用。接下来,我们将总结我们所依赖的主要分析方法,最后我们将阐述它们在癌症诊断中的作用以及它们作为抗氧化剂和抗糖化剂的潜在作用。

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