Microbial Testing Methods for Detection of Residual Cleaning Agents and Disinfectants—Prevention of ATP Bioluminescence Measurement Errors in the Food Industry
Author(s) -
Juha Lappalainen,
Satu Loikkanen,
Marika Havana,
Matti Karp,
AnnaMaija Sjöberg,
Gun Wirtanen
Publication year - 2000
Publication title -
journal of food protection
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.613
H-Index - 137
eISSN - 1944-9097
pISSN - 0362-028X
DOI - 10.4315/0362-028x-63.2.210
Subject(s) - bioluminescence , micrococcus luteus , chemistry , vibrio , food industry , luciferase , cleaning agent , food science , chromatography , microbiology and biotechnology , pulp and paper industry , biochemical engineering , biochemistry , bacteria , biology , escherichia coli , organic chemistry , gene , transfection , engineering , genetics
The ATP luminescence measurement is based on the presence of an enzymatic reaction and may significantly be affected by cleaning agents and disinfectants. In addition, disinfectants can also reduce the activity of the luciferase enzyme and also act as ATP-releasing agents. The agents disrupt the cell walls but preserve ATP in measurable form, and therefore correlation with culture methods can be poor. Therefore, if a rapid method is used to detect ATP, a control must be used for reliable results. The possible effect of disinfectants can be eliminated with a rapid test to minimize sources of error. In the present study a microbiological residue testing method that is nonspecific for residues was developed. The effects of a total of 38 commercial cleaning agents and disinfectants of various types were assessed using two microbiological methods, the Vibrio fischeri photobacteria test and Micrococcus luteus inhibition zone technique. The results show that the V. fischeri photobacteria test is very sensitive. This test can therefore be used for testing cleaning agent residues on surfaces in very small amounts. A small study was also carried out in a food factory to show applicability in processing facilities. The study showed, that a need for this type of method exists in food processing.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom