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1.
Journal of Xi'an Jiaotong University(Medical Sciences) ; (6): 823-829, 2023.
Artículo en Chino | WPRIM | ID: wpr-1005810

RESUMEN

【Objective】 Escherichia coli phage (ECP) and Staphylococcus aureus phage (SAP) isolated from sewage were used as research objects, and their biological characteristics were analyzed to provide new experimental materials for the application of phages. 【Methods】 ECP and SAP were purified and cultured by double-layer agar method. Then a series of biological characteristics of these two phages were preliminarily analyzed by electron microscope observation, optimal multiplicity of infection (MOI) test, one-step growth curve test, temperature, pH, chloroform and ultraviolet sensitivity tests, respectively. 【Results】 The results of biological characteristics showed that ECP and SAP were both virulent phages, belonging to myoviridac family. Their optimal MOI was 10-1, and they had strong resistance to ultraviolet light. The cleavage volume of ECP was 76.3 PFU/cell, while that of SAP was 8.3 PFU/cell. ECP had a wide range of temperature tolerance and could stably survive at 30-50 ℃, while SAP was more sensitive to temperature and could be completely inactivated at 50 ℃ for 1 h. ECP could maintain a good lysis activity in the range of pH 5-11, while SAP in the range of pH 6-9. ECP had strong resistance to chloroform and was non-membranous phage, while SAP was more sensitive to chloroform and was a membranous phage. 【Conclusion】 ECP and SAP are both virulent phages and have strong resistance to ultraviolet light. The lysability, temperature, pH, and chloroform tolerance of ECP are stronger than those of SAP.

2.
Journal of Xi'an Jiaotong University(Medical Sciences) ; (6): 774-779, 2021.
Artículo en Chino | WPRIM | ID: wpr-1011674

RESUMEN

【Objective】 To observe the inactivation effect of a new low-temperature plasma air disinfector on microorganisms in the natural environment and artificial contaminated environment so as to further determine the minimum effective processing parameters. 【Methods】 First, in 0.5 m3 of super clean workbench and 1.05 m3 airtight organic glass cavity in the body, the new low-temperature plasma air disinfector developed was used to inactivate the natural bacteria in the air under different parameters. Then in 1.05 m3 airtight organic glass cavity in the body, the new low-temperature plasma air disinfector was used to treat the Staphylococcus aureus and Escherichia coli under the condition of artificial bacteria spraying. Last, the plate counting method was used to evaluate the inactivation effect of the disinfector on natural bacteria and artificial bacteria in the air. 【Results】 For the low-temperature plasma air disinfector in 0.5 m3 and 1.05 m3 confined space, the lowest effective treatment parameters for inactivated natural bacteria were 13 kV, 5 min or 12 kV, 10 min. For the low-temperature plasma air disinfection machine in 13 kV discharge voltage treatment of different time, compared with before treatment, the killing rate of Escherichia coli and Staphylococcus aureus increased significantly after treatment for 20 min (P<0.000 1). Both could meet the requirements of disinfection specifications [100%, (99.98±0.01)%≥99.90%]. 【Conclusion】 The inactivation of natural bacteria and artificial bacteria by the new low-temperature plasma air disinfector has reached the qualified standard of disinfection stipulated in Technical Specifications for Disinfection.

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