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携带Der p1变应原的颗粒及屋尘螨(粉尘螨)的静电荷特征

Electrostatic charge characteristics of Der p1 allergen-carrying particles and the house dust mite dermatophagoides pteronyssinus.

作者信息

Gaynor P T, Hughes J F

机构信息

Bioelectrostatics Research Centre, University of Southampton, UK.

出版信息

Med Biol Eng Comput. 1998 May;36(3):351-4. doi: 10.1007/BF02522482.

Abstract

Control of the house dust mite allergen has received considerable attention owing to its importance in some allergic diseases. One aspect of dust mites and their allergen-carrying faecal particles that has not been reported on, which may have allergen control applications, is the electrostatic charge they carry in the natural environment. To promote tribo-electric charging, household dust containing dust mite allergen and live house dust mites are separately agitated while in contact with either polypropylene, nylon or earthed metal. The charged dust and mites are subsequently subjected to electrostatic separation and collection. Results for concentrations of the house dust mite allergen, Der p1, indicate that, when subjected to nylon, Der p1 carrier particles appear to be predominantly positively charged. Similarly, when subjected to polypropylene, Der p1 carrier particles also appear to be positively charged. Reduction of excess free charge by agitation against earthed metal does not appear to affect the observed charging characteristics, indicating that the positive charge may be bound or inherent in the Der p1 carrier particles. In contrast, house dust mites exposed to nylon appear to be generally charging negative, whereas mites exposed to polypropylene appear to be charging positive. The observed electrostatic characteristics of the mites and Der p1 carrying particles will be useful in the future development of electrostatic allergen control methods.

摘要

由于屋尘螨过敏原在某些过敏性疾病中的重要性,其控制已受到相当多的关注。尘螨及其携带过敏原的粪便颗粒在自然环境中所带的静电荷这一方面尚未见报道,但这可能在过敏原控制应用方面具有价值。为促进摩擦起电,含有屋尘螨过敏原和活屋尘螨的家用灰尘在与聚丙烯、尼龙或接地金属接触时分别进行搅拌。随后对带电的灰尘和螨虫进行静电分离和收集。屋尘螨过敏原Der p1的浓度结果表明,当与尼龙接触时,Der p1载体颗粒似乎主要带正电。同样,当与聚丙烯接触时,Der p1载体颗粒也似乎带正电。通过与接地金属搅拌来减少多余的自由电荷似乎并不影响观察到的带电特性,这表明正电荷可能是与Der p1载体颗粒结合的或固有的。相比之下,暴露于尼龙的屋尘螨通常带负电,而暴露于聚丙烯的螨虫似乎带正电。观察到的螨虫和携带Der p1颗粒的静电特性将有助于未来静电过敏原控制方法的开发。

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