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用于使寄生虫失活的线虫卵电通透化处理。

Electropermeabilization of nematode eggs for parasite deactivation.

作者信息

Dryzer M H, Niven C, Wolter S D, Arena C B, Ngaboyamahina E, Parker C B, Stoner B R

机构信息

(corresponding author) Department of Physics, Elon University, Elon, NC 27244, USA.

Department of Biomedical Engineering and Mechanics, Virginia Tech, Blacksburg, VA 24061, USA.

出版信息

J Water Sanit Hyg Dev. 2019 Jan 2;9(1):49-55. doi: 10.2166/washdev.2019.100.

Abstract

The eggs of parasitic helminth worms are incredibly resilient - possessing the ability to survive changing environmental factors and exposure to chemical treatments - which has restricted the efficacy of wastewater sanitation. This research reports on the effectiveness of electroporation to permeabilize ova of , a helminth surrogate, for parasite deactivation. This technique utilizes electric pulses to increase cell membrane permeability in its conventional application, but herein is used to open pores in nonparasitic nematode eggshells - the first report of such an application to the best knowledge of the authors. A parametric evaluation of electric field strength and total electroporation duration of eggs and worms in phosphate-buffered saline was performed using a 1 Hz pulse train of 0.01% duty cycle. The extent of pore formation was determined using a fluorescent label, propidium iodide, targeting C. elegans embryonic DNA. The results of this research demonstrate that electroporation increases eggshell permeability. This treatment, coupled with existing methods of electrochemical disinfection, could improve upon current attempts at the deactivation of helminth eggs. We discuss electroporation treatment conditions and likely modification of the lipid-rich permeability barrier within the eggshell strata.

摘要

寄生蠕虫的卵具有极强的韧性——能够在不断变化的环境因素以及化学处理中存活——这限制了污水处理的效果。本研究报告了电穿孔法对作为蠕虫替代物的秀丽隐杆线虫卵进行透化处理以灭活寄生虫的有效性。该技术在传统应用中利用电脉冲来增加细胞膜通透性,但在此处用于在非寄生线虫的卵壳上开孔——据作者所知,这是此类应用的首次报道。使用占空比为0.01%的1Hz脉冲序列对磷酸盐缓冲盐水中的卵和蠕虫的电场强度和总电穿孔持续时间进行了参数评估。使用靶向秀丽隐杆线虫胚胎DNA的荧光标记碘化丙啶来确定孔形成的程度。本研究结果表明电穿孔可增加卵壳通透性。这种处理方法与现有的电化学消毒方法相结合,可能会改进目前在灭活蠕虫卵方面的尝试。我们讨论了电穿孔处理条件以及卵壳层内富含脂质的通透性屏障可能发生的改变。

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