Systematic Assessment of Nonproteolytic Clostridium botulinum Spores for Heat Resistance

Author:

Wachnicka Ewelina1,Stringer Sandra C.1,Barker Gary C.1,Peck Michael W.1

Affiliation:

1. Institute of Food Research, Norwich Research Park, Colney, United Kingdom

Abstract

ABSTRACT Heat treatment is an important controlling factor that, in combination with other hurdles (e.g., pH, a w ), is used to reduce numbers and prevent the growth of and associated neurotoxin formation by nonproteolytic C. botulinum in chilled foods. It is generally agreed that a heating process that reduces the spore concentration by a factor of 10 6 is an acceptable barrier in relation to this hazard. The purposes of the present study were to review the available data relating to heat resistance properties of nonproteolytic C. botulinum spores and to obtain an appropriate representation of parameter values suitable for use in quantitative microbial risk assessment. In total, 753 D values and 436 z values were extracted from the literature and reveal significant differences in spore heat resistance properties, particularly those corresponding to recovery in the presence or absence of lysozyme. A total of 503 D and 338 z values collected for heating temperatures at or below 83°C were used to obtain a probability distribution representing variability in spore heat resistance for strains recovered in media that did not contain lysozyme. IMPORTANCE In total, 753 D values and 436 z values extracted from literature sources reveal significant differences in spore heat resistance properties. On the basis of collected data, two z values have been identified, z = 7°C and z = 9°C, for spores recovered without and with lysozyme, respectively. The findings support the use of heat treatment at 90°C for 10 min to reduce the spore concentration by a factor of 10 6 , providing that lysozyme is not present during recovery. This study indicates that greater heat treatment is required for food products containing lysozyme, and this might require consideration of alternative recommendation/guidance. In addition, the data set has been used to test hypotheses regarding the dependence of spore heat resistance on the toxin type and strain, on the heating technique used, and on the method of D value determination used.

Funder

Biotechnology and Biological Sciences Research Council

Food Standards Agency

Institute of Food Research

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference89 articles.

1. Clostridium botulinum and the safety of minimally heated, chilled foods: an emerging issue?

2. Assessment of the potential for growth and neurotoxin formation by non-proteolytic Clostridium botulinum in short shelf-life commercial foods designed to be stored chilled☆

3. Clostridium botulinum in the post-genomic era

4. Johnson EA. 2007. Clostridium botulinum, p 401–422. In Doyle MP, Beuchat LR (ed), Food microbiology: fundamentals and frontiers, 3rd ed. ASM Press, Washington, DC.

5. Lindström M, Fredriksson-Ahomaa M, Korkeala H. 2009. Molecular epidemiology of group I and group II Clostridium botulinum, p 103–130. In Gottschalk G, Br̈uggemann H (ed), Clostridia: molecular biology in the post-genomic era. Caister Academic Press, Norfolk, United Kingdom.

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