Synergism between high hydrostatic pressure and glutaraldehyde for the inactivation of Staphylococcus aureus at moderate temperature
被引:0
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作者:
Marriam Yamin
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机构:Institute of Biology,Laboratory of Protein Thermodynamics, Departament of Biochemistry and Tissue Biology
Marriam Yamin
Ancelmo R. Souza
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机构:Institute of Biology,Laboratory of Protein Thermodynamics, Departament of Biochemistry and Tissue Biology
Ancelmo R. Souza
Bianca G. Castelucci
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机构:Institute of Biology,Laboratory of Protein Thermodynamics, Departament of Biochemistry and Tissue Biology
Bianca G. Castelucci
Juliana G. Mattoso
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机构:Institute of Biology,Laboratory of Protein Thermodynamics, Departament of Biochemistry and Tissue Biology
Juliana G. Mattoso
Carlos Francisco Sampaio Bonafe
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机构:Institute of Biology,Laboratory of Protein Thermodynamics, Departament of Biochemistry and Tissue Biology
Carlos Francisco Sampaio Bonafe
机构:
[1] Institute of Biology,Laboratory of Protein Thermodynamics, Departament of Biochemistry and Tissue Biology
[2] State University of Campinas (UNICAMP),Electron Microscopy Center
[3] Institute of Biology,undefined
[4] State University of Campinas (UNICAMP),undefined
来源:
Applied Microbiology and Biotechnology
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2018年
/
102卷
关键词:
Biofilms;
Glutaraldehyde;
High hydrostatic pressure;
Nosocomial infections;
Sterilization;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
The sterilization of transplant and medical devices should be effective but not detrimental to the structural properties of the materials used. In this study, we examined the effectiveness of chemical and physical agents for inactivating Staphylococcus aureus, a gram-positive bacterium and important cause of infections and biofilm production. The treatment conditions in this work were chosen to facilitate their subsequent use with sensitive materials. The effects of temperature, high hydrostatic pressure, and glutaraldehyde disinfectant on the growth of two strains of S. aureus (ATCC 25923 and BEC 9393) were investigated individually and/or in combinations. A low concentration of glutaraldehyde (0.5 mM), high hydrostatic pressure (300 MPa for 10 min), and moderate temperature (50 °C), when used in combination, significantly potentiated the inactivation of both bacterial strains by > 8 orders of magnitude. Transmission electron microscopy revealed structural damage and changes in area that correlated with the use of pressure in the presence of glutaraldehyde at room temperature in both strains. Biofilm from strain ATCC 25923 was particularly susceptible to inactivation. The conditions used here provided effective sterilization that can be applied to sensitive surgical devices and biomaterials, with negligible damage. The use of this experimental approach to investigate other pathogens could lead to the adoption of this procedure for sterilizing sensitive materials.
机构:Universitat Autonòma de Barcelona,Center Especial de Recerca Planta Tecnologia dels Aliments (CERPTA), XaRTA, XiT, MALTA Consolider, Departament de Ciència Animal i dels Aliments, Facultat de Veterinària, Edifici V
Qamar Abbas Syed
Martin Buffa
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机构:Universitat Autonòma de Barcelona,Center Especial de Recerca Planta Tecnologia dels Aliments (CERPTA), XaRTA, XiT, MALTA Consolider, Departament de Ciència Animal i dels Aliments, Facultat de Veterinària, Edifici V
Martin Buffa
Buenaventura Guamis
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机构:Universitat Autonòma de Barcelona,Center Especial de Recerca Planta Tecnologia dels Aliments (CERPTA), XaRTA, XiT, MALTA Consolider, Departament de Ciència Animal i dels Aliments, Facultat de Veterinària, Edifici V
Buenaventura Guamis
Jordi Saldo
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机构:Universitat Autonòma de Barcelona,Center Especial de Recerca Planta Tecnologia dels Aliments (CERPTA), XaRTA, XiT, MALTA Consolider, Departament de Ciència Animal i dels Aliments, Facultat de Veterinària, Edifici V
Jordi Saldo
Food and Bioprocess Technology,
2014,
7
: 1202
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1207