Ultrasound and heat treatment effects on Staphylococcus aureus cell viability in orange juice
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Date
2021-09-07
Journal Title
Journal ISSN
Volume Title
Publisher
Ultrasonics Sonochemistry _ELSEVIER
Abstract
Ultrasounds are being considered an excellent alternative technology in juice preservation. Yet, when combined
with heat treatment, the process seems to be further intensified. This work aimed to evaluate and compare the
impact of ultrasounds and heat treatments, when applied alone or in combination, on Staphylococcus aureus
survival in orange juice. Inoculated commercial pasteurized orange juice was treated at different times at 20, 30,
40, 50 and 60 ◦C. SEM analyses were applied to identify morphological changes in S. aureus cells appearance. The
microbial inactivation data were fitted using two mathematical models, depending on the behaviour observed.
Sonication at 20, 30, and 40 ◦C induced 4.02 ± 0.52, 3.80 ± 0.49 and 4.30 ± 0.74 log cycles reduction of
S. aureus after treatments of 90, 60 and 60 min, respectively. The heat treatments at the same temperatures had
no impact on S. aureus survival. When 50 and 60 ◦C were applied, more than 5-log reductions were attained for
both thermosonication and heat treatments alone. A synergistic effect was observed between sonication and high
temperatures. At 50 ◦C, the thermosonication reduced the treatment time from 60 to 35 min and the microbial
load from 5.14 ± 0.08 to 10.76 ± 0.28 log cycles reduction, compared to heat treatment alone. Results from SEM
images showed that cells undergo membrane damage during sonication exposure. This was observed by
collapsed cells, cell disruption, and holes in the cell’s membrane.
Thermosonication proved to be a viable alternative to thermal pasteurization of orange juice since milder
treatments can be safely applied, improving the final product quality.
Description
Keywords
Staphylococcus aureus, Ultrasound, Heat treatment, Thermosonication, Kinetic inactivation modelling, Cell damage