Application of high pressure with homogenization, temperature, carbon dioxide, and cold plasma for the inactivation of bacterial spores: a review

Rita P. Lopes, Maria J. Mota, Ana M. Gomes, Ivonne Delgadillo, Jorge A. Saraiva*

*Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

47 Citations (Scopus)

Abstract

Formation of highly resistant spores is a concern for the safety of low-acid foods as they are a perfect vehicle for food spoilage and/or human infection. For spore inactivation, the strategy usually applied in the food industry is the intensification of traditional preservation methods to sterilization levels, which is often accompanied by decreases of nutritional and sensory properties. In order to overcome these unwanted side effects in food products, novel and emerging sterilization technologies are being developed, such as pressure-assisted thermal sterilization, high-pressure carbon dioxide, high-pressure homogenization, and cold plasma. In this review, the application of these emergent technologies is discussed, in order to understand the effects on bacterial spores and their inactivation and thus ensure food safety of low-acid foods. In general, the application of these novel technologies for inactivating spores is showing promising results. However, it is important to note that each technique has specific features that can be more suitable for a particular type of product. Thus, the most appropriate sterilization method for each product (and target microorganisms) should be assessed and carefully selected.
Original languageEnglish
Pages (from-to)532-555
Number of pages24
JournalComprehensive Reviews in Food Science and Food Safety
Volume17
Issue number3
DOIs
Publication statusPublished - May 2018

Keywords

  • Cold plasma
  • HPCD
  • HPH
  • PATS
  • Sterilization

Fingerprint

Dive into the research topics of 'Application of high pressure with homogenization, temperature, carbon dioxide, and cold plasma for the inactivation of bacterial spores: a review'. Together they form a unique fingerprint.

Cite this