Kim S-Y, Jo E-K, Kim H-J, Bai K, Park J-K
Department of Microbiology and Cancer Research Institute, College of Medicine, Chungnam National University, Daejeon, Korea.
Lett Appl Microbiol. 2008 Jul;47(1):35-40. doi: 10.1111/j.1472-765X.2008.02384.x. Epub 2008 Jun 9.
To investigate the microbicidal mechanisms of high-power microwave (2.0 kW) irradiation on Bacillus subtilis and to determine the effect of this procedure on the ultrastructure of the cell wall.
We performed viability test, examined cells using transmission electron microscopy (TEM), and measured the release of intracellular proteins and nucleic acids. The inactivation rate of B. subtilis by 2.0-kW microwave irradiation was higher than that of a domestic microwave (0.5 kW). Few proteins were released from either microwaved or boiled cells. However, the leakage of nucleic acids from 2.0-kW-microwaved cells was significantly higher than that of 0.5-kW-microwaved or boiled cells. Therefore, we examined ultrastructural alterations of microwaved or boiled cells to analyse the pattern of release of cytoplasmic contents. Although boiled cells did not show any ultrastructural changes on TEM, 2.0-kW-microwaved cells showed disruption of the cell wall.
The microbicidal mechanisms of 2.0-kW microwave irradiation include damage to the microbial cell wall, breakage of the genomic DNA, and thermal coagulation of cytoplasmic proteins.
TEM images showed that the cytoplasmic protein aggregation and cell envelope damage by microwave irradiation were different from the ultrastructural changes observed after boiling.
研究高功率微波(2.0千瓦)照射对枯草芽孢杆菌的杀菌机制,并确定该过程对细胞壁超微结构的影响。
我们进行了活力测试,使用透射电子显微镜(TEM)检查细胞,并测量细胞内蛋白质和核酸的释放。2.0千瓦微波照射对枯草芽孢杆菌的灭活率高于家用微波炉(0.5千瓦)。无论是经微波处理还是煮沸的细胞,释放的蛋白质都很少。然而,2.0千瓦微波处理的细胞中核酸的泄漏明显高于0.5千瓦微波处理或煮沸的细胞。因此,我们检查了经微波处理或煮沸的细胞的超微结构变化,以分析细胞质内容物的释放模式。虽然煮沸的细胞在TEM上未显示任何超微结构变化,但2.0千瓦微波处理的细胞显示出细胞壁的破坏。
2.0千瓦微波照射的杀菌机制包括对微生物细胞壁的损伤、基因组DNA的断裂以及细胞质蛋白质的热凝固。
TEM图像显示,微波照射引起的细胞质蛋白质聚集和细胞膜损伤与煮沸后观察到的超微结构变化不同。