微波辐照缩短扫描电镜鞭毛菌样品处理时间。

Francisco Hernández-Chavarría
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摘要

微波辐照(MWI)已被应用于开发快速处理扫描电子显微镜(SEM)生物样品的方法。在本文中,我们提出了两种简单和快速的技术处理细菌(变形杆菌和拟态弧菌)用MWI扫描电镜。在最简单的方法中,将细菌放在玻璃罩上,风干,并进行电导率染色。电导率染色所用试剂为光镜染色法的媒染剂(5%石炭酸溶液10ml,单宁酸2g,饱和硫酸铝12-H2O 10ml)。在第二种方法中,样品被双重固定(戊二醛和锇),提交电导率染色,通过一系列增加浓度的乙醇溶液脱水,用六甲基二嗪(HMDS)处理,在35℃下干燥5分钟。在这两种方法中,从固定到HMDS治疗的步骤都是在MWI下在冰水浴中进行2分钟,以消散MWI产生的热量。虽然这两种技术都能充分保存细菌形态,但后一种技术表现出最好的保存效果,包括鞭毛的外观,并且该过程在4至5摄氏度的MWI温度下不到2小时就完成了。
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Microwave irradiation for shortening the processing time of samples of flagellated bacteria for scanning electron microscopy.

Microwave irradiation (MWI) has been applied to the development of rapid methods to process biological samples for scanning electron microscopy (SEM). In this paper we propose two simple and quick techniques for processing bacteria (Proteus mirabilis and Vibrio mimicus) for SEM using MWI. In the simplest methodology, the bacteria were placed on a cover-glass, air-dried, and submitted to conductivity stain. The reagent used for the conductivity stain was the mordant of a light microscopy staining method (10 ml of 5% carbolic acid solution, 2 g of tannic acid, and 10 ml of saturated aluminum sulfate 12-H2O). In the second method the samples were double fixed (glutaraldehyde and then osmium), submitted to conductivity stain, dehydrated through a series of ethanol solutions of increasing concentration, treated with hexamethyldisilazine (HMDS), and dried at 35 degrees C for 5 minutes. In both methods the steps from fixation to treatment with HMDS were done under MWI for 2 minutes in an ice-water bath, in order to dissipate the heat generated by the MWI. Although both techniques preserve bacterial morphology adequately, the latter, technique showed the best preservation, including the appearance of flagella, and that process was completed in less than 2 hours at temperatures of MWI between 4 to 5 degrees C.

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