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Validation of Extrusion as a Killing Step for Enterococcus faeciumin a Balanced Carbohydrate-Protein Meal by Using a Response Surface Design

Authors :
Bianchini, Andreia
Stratton, Jayne
Weier, Steve
Hartter, Timothy
Plattner, Brian
Rokey, Galen
Hertzel, Gerry
Gompa, Lakshmi
Martinez, Bismarck
Eskridge, Kent M.
Source :
Journal of Food Protection; September 2012, Vol. 75 Issue: 9 p1646-1653, 8p
Publication Year :
2012

Abstract

Outbreaks of salmonellosis and recalls of low-moisture foods including extruded products highlight the need for the food and feed industries to validate their extrusion processes to ensure the destruction of pathogenic microorganisms. Response surface methodology was employed to study the effect of moisture and temperature on inactivation by extrusion of Enterococcus faeciumNRRL B-2354 in a carbohydrate-protein mix. A balanced carbohydrate-protein mix was formulated to different combinations of moisture contents, ranging from 24.9 to 31.1%, and each was inoculated with a pure culture of E. faeciumto a final level of 5 log CFU/g. Each mix of various moistures was then extruded in a pilot scale extruder at different temperatures (ranging from 67.5 to 85°;C). After the extruder was allowed to equilibrate for 10 min, samples were collected in sterile bags, cooled in dry ice, and stored at 4°;C prior to analysis. E. faeciumwas enumerated with tryptic soy agar and membrane Enterococcusmedia, followed by incubation at 35°;C for 48 h. Each extrusion was repeated twice, with the central point of the design being repeated four times. From each extrusion, three subsamples were collected for microbial counts and moisture determination. Based on the results, the response surface model was y=185.04 - 3.11X12 4.23X2+ 0.02X12-0.004X1X2+ 0.08X22, with a good fit (R2= 0.92), which demonstrated the effects of moisture and temperature on the inactivation of E. faeciumduring extrusion. According to the response surface analysis, the greatest reduction of E. faeciumfor the inoculation levels studied here (about 5 log) in a carbohydrate-protein meal would occur at the temperature of 81.1°;C and moisture content of 28.1%. Other temperature and moisture combinations needed to achieve specific log reductions were plotted in a three-dimensional response surface graph.

Details

Language :
English
ISSN :
0362028X and 19449097
Volume :
75
Issue :
9
Database :
Supplemental Index
Journal :
Journal of Food Protection
Publication Type :
Periodical
Accession number :
ejs62049983
Full Text :
https://doi.org/10.4315/0362-028x.jfp-12-085