Department of Food Science and Technology, Federal University of Santa Maria, Rio Grande do Sul, Brazil.
Department of Food Science and Nutrition, Faculty of Pharmacy, University of Granada, Campus Universitario Cartuja s/n, 18071 Granada, Spain.
Food Res Int. 2024 Dec;197(Pt 1):115183. doi: 10.1016/j.foodres.2024.115183. Epub 2024 Oct 5.
Probiotics have awakened a great interest in the scientific community for their potential beneficial effects on health. Although only allowed by the European Food Safety Agency as a nutrition declaration associated with the improvement of lactose digestion, recent in vitro and in vivo studies have demonstrated their varied beneficial effect for the improvement of certain pathologies. However, probiotics face stability and viability challenges, which make their delivery difficult in sufficient quantities for these effects to be observed. Thus, there is a dire need for the development and implantation of innovative technological protection procedures. In this sense, encapsulation rises as a widely applied technique, offering additional advantages. In the present study, a systematic review was conducted for the evaluation of the main encapsulation technologies applied in literature, considering operating conditions, probiotics, and encapsulation efficacy. For this purpose, several conditions are evaluated: a) the characteristics, storage conditions and viability of probiotics; b) evaluation and comparison of the probiotic stabilization for the main encapsulation methods; and c) co-encapsulation with potential bioactive molecules as a new alternative for improving cell viability. This evaluation revealed the efficacy of seven encapsulation techniques on the improvement of the stability and viability of probiotics.
益生菌因其对健康的潜在有益影响而引起了科学界的极大兴趣。尽管仅被欧洲食品安全局允许作为与改善乳糖消化相关的营养声明,但最近的体外和体内研究表明,它们对改善某些疾病具有多种有益作用。然而,益生菌面临着稳定性和生存能力的挑战,这使得它们难以以足够的数量传递,从而观察到这些效果。因此,迫切需要开发和植入创新的技术保护程序。在这种意义上,封装作为一种广泛应用的技术出现,提供了额外的优势。在本研究中,进行了系统评价,以评估文献中应用的主要封装技术,考虑操作条件、益生菌和封装效果。为此,评估了几个条件:a)益生菌的特性、储存条件和生存能力;b)主要封装方法对益生菌稳定化的评估和比较;c)与潜在生物活性分子的共封装作为提高细胞活力的新选择。该评估揭示了七种封装技术在改善益生菌稳定性和生存能力方面的功效。