Microorganisms (Mar 2021)

Synergistic Effects of Nisin, Lysozyme, Lactic Acid, and Citricidal<sup>TM</sup> for Enhancing Pressure-Based Inactivation of <i>Bacillus amyloliquefaciens</i>, <i>Geobacillus stearothermophilus</i>, and <i>Bacillus atrophaeus</i> Endospores

  • Sadiye Aras,
  • Niamul Kabir,
  • Sabrina Wadood,
  • Jyothi George,
  • Shahid Chowdhury,
  • Aliyar Cyrus Fouladkhah

DOI
https://doi.org/10.3390/microorganisms9030653
Journal volume & issue
Vol. 9, no. 3
p. 653

Abstract

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The inactivation of bacterial endospores continues to be the main curtailment for further adoption of high-pressure processing in intrastate, interstate, and global food commerce. The current study investigated the effects of elevated hydrostatic pressure for the inactivation of endospore suspension of three indicator spore-forming bacteria of concern to the food industry. Additionally, the effects of four bacteriocin/bactericidal compounds were studied for augmenting the decontamination efficacy of the treatment. Elevated hydrostatic pressure at 650 MPa and at 50 °C was applied for 0 min (untreated control) and for 3, 7, and 11 min with and without 50K IU of nisin, 224 mg/L lysozyme, 1% lactic acid, and 1% CitricidalTM. The results were statistically analyzed using Tukey- and Dunnett’s-adjusted ANOVA. Under the condition of our experiments, we observed that a well-designed pressure treatment synergized with mild heat and bacteriocin/bactericidal compounds could reduce up to >4 logs CFU/mL (i.e., >99.99%) of bacterial endospores. Additions of nisin and lysozyme were able, to a great extent, to augment (p Bacillus amyloliquefaciens and Bacillus atrophaeus, while exhibiting no added benefit (p ≥ 0.05) for reducing endospores of Geobacillus stearothermophilus. The addition of lactic acid, however, was efficacious for augmenting the pressure-based reduction of bacterial endospores of the three microorganisms.

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