Serum Bactericidal Assay: New Role in Salmonella Detection

Author:

Chen Yu1,Wu Da2,Sun Min3,Deng Mingjun3,Cui Shuhua3,Liang Chengzhu3,Geng Juan3,Sun Tao3,Long Ling4,Xiao Xizhi3

Affiliation:

1. College of Life Science, Fujian Agriculture and Forestry University, Fuzhou, Fujian, China, 350002

2. Gansu Entry-Exit Inspection and Quarantine Bureau, Lanzhou, Gansu, China, 730020

3. Shandong Entry-Exit Inspection and Quarantine Bureau, Qingdao, Shandong, China, 266002

4. College of Life Science and Engineering, Northwest University for Nationalities, Lan zhou, Gansu, China, 730030

Abstract

Abstract While inspecting animal feed for Salmonella contamination, we routinely observed bacterial colonies on selective agars that were similar in appearance to those formed by Salmonella. These were identified as Citrobacter freundii, Proteus mirabilis, and Serratia fonticola using biochemical and serological techniques. Because the presence of these bacterial species confounds identification of Salmonella, we refer to them as “interference bacteria.” Polyvalent antisera against these interference bacteria were prepared by immunizing rabbits with a mixture of all three organisms. To minimize or eliminate interference by these bacteria, the polyvalent antisera were introduced between the steps of selective enrichment and Salmonella-selective plating. The antisera raised against the interference bacteria, when combined with neonatal rabbit complement, exhibited specific bactericidal activity against C. freundii, P. mirabilis, and S. fonticola. The respective serum bactericidal assay titers were 29, 28, and 210. In selective broth, polyvalent antisera could also kill the target bacterial cells effectively. We tested 526 samples (186 white fishmeal, 97 red fishmeal, and 243 cattle bone powder) using the polyvalent antisera and found that the rates of contamination of each species of the three respective foods decreased by 58.8, 100, and 83%. Our data indicates that polyvalent sera against C. freundii, P. mirabilis, and S. fonticola can be used as inhibitors to increase the accuracy of Salmonella detection.

Publisher

Oxford University Press (OUP)

Subject

Pharmacology,Agronomy and Crop Science,Environmental Chemistry,Food Science,Analytical Chemistry

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