The impact of temperature on the inactivation of enteric viruses in food and water: a review

被引:188
作者
Bertrand, I.
Schijven, J. F. [2 ]
Sanchez, G. [3 ]
Wyn-Jones, P. [4 ]
Ottoson, J. [5 ]
Morin, T. [6 ]
Muscillo, M. [7 ]
Verani, M. [8 ]
Nasser, A. [9 ]
Husman, A. M. de Roda [10 ]
Myrmel, M. [11 ]
Sellwood, J. [12 ]
Cook, N. [13 ]
Gantzer, C. [1 ]
机构
[1] Univ Lorraine, CNRS, LCPME, Fac Pharm, F-54001 Nancy, France
[2] Natl Inst Publ Hlth & Environm, Expert Ctr Methodol & Informat Serv, NL-3720 BA Bilthoven, Netherlands
[3] Inst Agrochem & Food Technol IATA CSIC, Valencia, Spain
[4] Aberystwyth Univ, IGES, Ceredigion, Wales
[5] Swedish Univ Agr Sci, Dept Biomed Sci & Vet Publ Hlth, Uppsala, Sweden
[6] ADRIA Normandie, Villers Bocage, France
[7] Ist Super Sanita, I-00161 Rome, Italy
[8] Univ Pisa, Dept Biol, Lab Hyg & Environm Virol, Pisa, Italy
[9] Beit Berl Coll, Inst Nat Sci, Beit Berl, Israel
[10] Natl Inst Publ Hlth & Environm RIVM, Ctr Infect Dis Control, Lab Zoonoses & Environm Microbiol, Bilthoven, Netherlands
[11] Norwegian Sch Vet Sci, Dept Food Safety & Infect Biol, Oslo, Norway
[12] Royal Berkshire Hosp, Microbiol Lab, Hlth Protect Agcy, Environm Virol Unit, Reading RG1 5AN, Berks, England
[13] Food & Environm Res Agcy, York, N Yorkshire, England
关键词
bacteriophage; environment; food; genome; inactivation; temperature; virus; water; HEPATITIS-A VIRUS; REVERSE TRANSCRIPTION-PCR; THERMAL INACTIVATION; FELINE CALICIVIRUS; HEAT INACTIVATION; ESCHERICHIA-COLI; MURINE NOROVIRUS; FECAL CONTAMINATION; HUMAN ENTEROVIRUSES; POLIOVIRUS TYPE-1;
D O I
10.1111/j.1365-2672.2012.05267.x
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Temperature is considered as the major factor determining virus inactivation in the environment. Food industries, therefore, widely apply temperature as virus inactivating parameter. This review encompasses an overview of viral inactivation and virus genome degradation data from published literature as well as a statistical analysis and the development of empirical formulae to predict virus inactivation. A total of 658 data (time to obtain a first log10 reduction) were collected from 76 published studies with 563 data on virus infectivity and 95 data on genome degradation. Linear model fitting was applied to analyse the effects of temperature, virus species, detection method (cell culture or molecular methods), matrix (simple or complex) and temperature category (<50 and =50 degrees C). As expected, virus inactivation was found to be faster at temperatures =50 degrees C than at temperatures <50 degrees C, but there was also a significant temperaturematrix effect. Virus inactivation appeared to occur faster in complex than in simple matrices. In general, bacteriophages PRD1 and PhiX174 appeared to be highly persistent whatever the matrix or the temperature, which makes them useful indicators for virus inactivation studies. The virus genome was shown to be more resistant than infectious virus. Simple empirical formulas were developed that can be used to predict virus inactivation and genome degradation for untested temperatures, time points or even virus strains.
引用
收藏
页码:1059 / 1074
页数:16
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