Baek Ui-Bin, Kim Hack-Youn
Department of Animal Resources Science, Kongju National University, Yesan 32439, Korea.
Resource Science Research Institute, Kongju National University, Yesan 32439, Korea.
Food Sci Anim Resour. 2024 Sep;44(5):967-987. doi: 10.5851/kosfa.2024.e63. Epub 2024 Sep 1.
Recently, as the concept of pet food that satisfies both nutritional needs and the five senses has evolved, so too has the demand for effective pet food non-thermal sterilization methods. Prominent non-thermal technologies include high-pressure processing, plasma, and radiation, which are favored for their ability to preserve nutrients, avoid residues, and minimize compositional changes, thereby maintaining quality and sensory properties. However, to assess their effectiveness on pet food, it is essential to optimize operational parameters such as pressure levels, plasma intensity, radiation dosage, and temperature. Further studies are needed to evaluate microbial sterilization efficacy and sensory attributes. This exploration is expected to lay the groundwork for preventing zoonotic diseases and improving the production of high-quality pet food.
近年来,随着满足营养需求和五感的宠物食品概念不断发展,对有效的宠物食品非热杀菌方法的需求也在增加。突出的非热技术包括高压处理、等离子体和辐射,这些技术因其能够保留营养成分、避免残留并使成分变化最小化,从而保持质量和感官特性而受到青睐。然而,要评估它们对宠物食品的有效性,优化诸如压力水平、等离子体强度、辐射剂量和温度等操作参数至关重要。需要进一步的研究来评估微生物杀菌效果和感官属性。这一探索有望为预防人畜共患病和改善高品质宠物食品的生产奠定基础。