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使用µSRXRF研究样品制备技术对生物组织中元素浓度和分布的影响:一项对比研究。

Effect of sample preparation techniques on the concentrations and distributions of elements in biological tissues using µSRXRF: a comparative study.

作者信息

Al-Ebraheem A, Dao E, Desouza E, Li C, Wainman B C, McNeill F E, Farquharson M J

机构信息

Department of Medical Physics and Applied Radiation Sciences, McMaster University, 1280 Main St. West, Hamilton, ON, Canada.

出版信息

Physiol Meas. 2015 Mar;36(3):N51-60. doi: 10.1088/0967-3334/36/3/N51. Epub 2015 Feb 13.

Abstract

Routine tissue sample preparation using chemical fixatives is known to preserve the morphology of the tissue being studied. A competitive method, cryofixation followed by freeze drying, involves no chemical agents and maintains the biological function of the tissue. The possible effects of both sample preparation techniques in terms of the distribution of bio-metals (calcium (Ca), copper (Cu) zinc (Zn), and iron (Fe) specifically) in human skin tissue samples was investigated. Micro synchrotron radiation x-ray fluorescence (μSRXRF) was used to map bio-metal distribution in epidermal and dermal layers of human skin samples from various locations of the body that have been prepared using both techniques. For Ca, Cu and Zn, there were statistically significant differences between the epidermis and dermis using the freeze drying technique (p = 0.02, p < 0.01, and p < 0.01, respectively). Also using the formalin fixed, paraffin embedded technique the levels of Ca, Cu and Zn, were significantly different between the epidermis and dermis layers (p = 0.03, p < 0.01, and p < 0.01, respectively). However, the difference in levels of Fe between the epidermis and dermis was unclear and further analysis was required. The epidermis was further divided into two sub-layers, one mainly composed of the stratum corneum and the other deeper layer, the stratum basale. It was found that the difference between the distribution of Fe in the two epidermal layers using the freeze drying technique resulted in a statistically significant difference (p = 0.012). This same region also showed a difference in Fe using the formalin fixed, paraffin embedded technique (p < 0.01). The formalin fixed, paraffin embedded technique also showed a difference between the deeper epidermal layer and the dermis (p < 0.01). It can be concluded that studies involving Ca, Cu and Zn might show similar results using both sample preparation techniques, however studies involving Fe would need more special attention.

摘要

已知使用化学固定剂进行常规组织样本制备可保留所研究组织的形态。一种竞争性方法,即冷冻固定后冻干,不涉及化学试剂,并能维持组织的生物学功能。研究了这两种样本制备技术在人体皮肤组织样本中生物金属(具体为钙(Ca)、铜(Cu)、锌(Zn)和铁(Fe))分布方面可能产生的影响。使用微同步辐射X射线荧光(μSRXRF)技术绘制了采用这两种技术制备的来自身体不同部位的人体皮肤样本表皮和真皮层中生物金属的分布图。对于Ca、Cu和Zn,使用冻干技术时表皮和真皮之间存在统计学显著差异(分别为p = 0.02、p < 0.01和p < 0.01)。同样,使用福尔马林固定、石蜡包埋技术时,表皮和真皮层中Ca、Cu和Zn的含量也存在显著差异(分别为p = 0.03、p < 0.01和p < 0.01)。然而,表皮和真皮之间Fe含量的差异不明确,需要进一步分析。表皮进一步分为两个亚层,一个主要由角质层组成,另一个是更深的基底层。结果发现,使用冻干技术时,两个表皮层中Fe分布的差异具有统计学显著意义(p = 0.012)。在同一区域,使用福尔马林固定、石蜡包埋技术时Fe也存在差异(p < 0.01)。福尔马林固定、石蜡包埋技术还显示更深的表皮层和真皮之间存在差异(p < 0.01)。可以得出结论,涉及Ca、Cu和Zn的研究使用这两种样本制备技术可能会显示相似的结果,然而涉及Fe的研究需要更多特别关注。

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