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使用质子激发X射线发射(PIXE)对癌性和非癌性人体组织进行比较微量元素分析。

Comparative Trace Elemental Analysis in Cancerous and Noncancerous Human Tissues Using PIXE.

作者信息

Mulware Stephen Juma

机构信息

Ion Beam Modification and Analysis Laboratory, Physics Department, University of North Texas, 1155 Union Circle, No. 311427, Denton, TX 76203, USA.

出版信息

J Biophys. 2013;2013:192026. doi: 10.1155/2013/192026. Epub 2013 May 16.

Abstract

The effect of high or low levels of trace metals in human tissues has been studied widely. There have been detectable significant variations in the concentrations of trace metals in normal and cancerous tissues suggesting that these variations could be a causative factor to various cancers. Even though essential trace metals play an important role such as stabilizers, enzyme cofactors, elements of structure, and essential elements for normal hormonal functions, their imbalanced toxic effects contribute to the rate of the reactive oxygen species (ROS) and formation of complexities in the body cells which may lead to DNA damage. The induction of oxidative-induced DNA damage by ROS may lead to isolated base lesions or single-strand breaks, complex lesions like double-strand breaks, and some oxidative generated clustered DNA lesions (OCDLs) which are linked to cell apoptosis and mutagenesis. The difference in published works on the level of variations of trace metals in different cancer tissues can be attributed to the accuracy of the analytical techniques, sample preparation methods, and inability of taking uniform samples from the affected tissues. This paper reviews comparative trace elemental concentrations of cancerous and noncancerous tissues using PIXE that has been reported in the published literature.

摘要

人体组织中痕量金属含量过高或过低所产生的影响已得到广泛研究。正常组织和癌组织中痕量金属的浓度存在显著差异,这表明这些差异可能是引发各种癌症的一个因素。尽管必需痕量金属发挥着重要作用,如作为稳定剂、酶辅因子、结构元素以及正常激素功能所必需的元素,但它们失衡的毒性作用会增加活性氧(ROS)的生成速率,并在体细胞中形成复杂情况,这可能导致DNA损伤。ROS诱导的氧化型DNA损伤可能导致孤立的碱基损伤或单链断裂、双链断裂等复杂损伤,以及一些氧化产生的聚集性DNA损伤(OCDLs),这些损伤与细胞凋亡和诱变有关。不同癌症组织中痕量金属含量变化水平的已发表研究结果存在差异,这可能归因于分析技术的准确性、样品制备方法以及无法从受影响组织中获取均匀样本。本文综述了已发表文献中报道的使用粒子激发X射线发射光谱法(PIXE)对癌组织和非癌组织进行比较的痕量元素浓度情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f983/3671537/139af2b73486/JBP2013-192026.001.jpg

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