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Inactivation of Bacillus subtilis spores by combining ultrasonic wavesunder pressure and mild heat treatment

机译:压力和温和热处理相结合的超声波灭活枯草芽孢杆菌孢子

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The inactivation of Bacillus subtilis spores by ultrasonic treatments under static pressure (Mano-Sonication, MS) and a combined MS/heat treatment (Mano-Thermo-Sonication) was investigated. The sporicidal effect of MS treatments depended on static pressure, amplitude of ultrasonic waves and treatment temperature. At 70 degrees C, pressure increments up to 500 kPa caused progressively more inactivation. An MS treatment at 500 kPa and 117 mu m of amplitude for 12 min inactivated approximately 99% of the B. subtilis spare population. Over 500 kPa, further increments in pressure did not increase the percentage of inactivation. In the range 90-150 mu m, an exponential relationship was observed between the amplitude of ultrasonic waves under pressure and the number of survivors. While an MS treatment (20 kHz, 300 kPa, 70 degrees C, 12 min) at 90 mu m inactivated 75% of the B. subtilis spore population, the same treatment at 150 mu m inactivated 99.9% of this population. The MS treatments at temperatures higher than 70 degrees C (MTS) led to more spore inactivation. In the range 70-90 degrees C, the combination of heat with an MS treatment (20 kHz, 300 kPa, 117 mu m, 6 min) had a synergistic effect on spore inactivation. The inactivating effect of ultrasound was due neither to titanium particles eroded from the sonication tip, nor to free radicals released during ultrasonic treatment. The MS treatments sensitized spores of B. subtilis to lysozyme.
机译:研究了在静态压力下超声处理(Mano-Sonication,MS)和联合MS /热处理(Mano-Thermo-Sonication)对枯草芽孢杆菌孢子的灭活作用。 MS治疗的杀孢子效果取决于静压,超声波幅度和治疗温度。在70摄氏度时,压力增加到500 kPa逐渐导致更多的失活。在500 kPa和117μm的振幅下进行12分钟的MS处理可灭活约99%的枯草芽孢杆菌备用种群。超过500 kPa,压力的进一步增加不会增加灭活的百分比。在90-150μm的范围内,在压力下超声波的振幅与幸存者的数量之间观察到指数关系。虽然在90微米处的MS处理(20 kHz,300 kPa,70摄氏度,12分钟)使枯草芽孢杆菌孢子种群灭活了75%,但在150微米处的相同处理灭活了该种群的99.9%。在高于70摄氏度(MTS)的温度下进行MS处理会导致更多的孢子失活。在70-90摄氏度的范围内,加热和MS处理(20 kHz,300 kPa,117μm,6分钟)的组合对孢子失活具有协同作用。超声波的灭活效果既不是由于钛颗粒从超声尖端腐蚀而来,也不是由于超声波处理过程中释放的自由基。 MS处理使枯草芽孢杆菌的孢子对溶菌酶敏感。

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