孢子
电场
内孢子
微波食品加热
介电常数
材料科学
光电子学
微生物学
物理
电介质
生物
计算机科学
电信
量子力学
作者
Dmitry Malyshev,Catrin F. Williams,J. Lees,Les Baillie,Adrian Porch
摘要
A recent application of microwaves in the healthcare area is for the rapid detection of bacterial spores, particularly of clinically significant spores such as Clostridium difficile. Here, we present a working model of C. difficile spore disruption by the action of a 2.45 GHz microwave electric field, independent of overall sample heating. The model shows how inner layers of the spore with the lower complex permittivity values will be subject to higher values of the electric field. The model also shows how the electric effects can be enhanced, focusing the electric field into “hotspots” using “angled” nanoparticles, yielding effective DNA release even at low microwave power levels. The model’s predictions have been validated through experimental results, which show an enhancement of DNA release from spores.
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