Author:
Salazar Fernando,Pizarro-Oteíza Sebastián,Kasahara Ismael,Labbé Mariela
Abstract
Ultraviolet light-emitting diode (UV-LED) technology has emerged as a non-thermal and non-chemical treatment for preserving liquid fruit and vegetable foods. This technology uses ultraviolet light to interact with the food at different wavelengths, solving problems related to product stability, quality, and safety during storage. UV-LED treatment has been shown to affect microbe and enzyme inactivation, and it increases and improves retention of bioactive compounds. Moreover, computational simulations are a powerful and relevant tool that can be used optimize and improve the UV-LED process. Currently, there are a limited studies of this technology in liquid fruit and vegetable-based foods. This review gathers information on these food type and shows that it is a promising technology for the development of new products, is environmentally friendly, and does not require the addition of chemicals nor heat. This is relevant from an industrial perspective because maintaining the nutritional and organoleptic properties ensures better quality. However, due to the scarce information available on this type of food, further studies are needed.
Subject
Nutrition and Dietetics,Endocrinology, Diabetes and Metabolism,Food Science
Reference82 articles.
1. Carotenoids from fruits and vegetables: chemistry, analysis, occurrence, bioavailability and biological activities.;Saini;Food Res Int.,2015
2. Dietary polyphenols: structures, bioavailability and protective effects against atherosclerosis.;Santhakumar;Food Chem Toxicol.,2018
3. Dietary Fibers from fruits and vegetables and their health benefits via modulation of gut microbiota.;Cui;Compr Rev Food Sci Food Saf.,2019
4. Fruit and vegetable intake and the risk of cardiovascular disease, total cancer and all-cause mortality-A systematic review and dose-response meta-analysis of prospective studies.;Aune;Int J Epidemiol.,2017
5. Effect of UVC light-emitting diodes on apple juice: inactivation of Zygosaccharomyces rouxii and determination of quality.;Xiang;Food Control.,2020
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