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不同干燥方法对使用益生元物质包封的益生菌功能特性的影响。

Effect of different drying methods on the functional properties of probiotics encapsulated using prebiotic substances.

作者信息

Yoha K S, Moses J A, Anandharamakrishnan C

机构信息

Computational Modeling and Nanoscale Processing Unit, National Institute of Food Technology, Entrepreneurship and Management - Thanjavur, Ministry of Food Processing Industries, Government of India, Thanjavur, Tamil Nadu, 613005, India.

Bharathidasan University, Tiruchirappalli, Tamil Nadu, 620024, India.

出版信息

Appl Microbiol Biotechnol. 2023 Mar;107(5-6):1575-1588. doi: 10.1007/s00253-023-12398-3. Epub 2023 Feb 2.

Abstract

Probiotics and prebiotics together work synergistically as synbiotics and confer various health benefits. Many studies on synbiotic foods only focus on the survival of probiotics but fail to evaluate their functional properties. The impact on functional properties should be explored to better understand its therapeutic efficacy. In this work, probiotics (Lactiplantibacillus plantarum NCIM 2083) were encapsulated with prebiotics (fructooligosaccharide + whey protein + maltodextrin) using spray-drying (SD), freeze-drying (FD), spray-freeze-drying (SFD), and refractance window-drying (RWD) techniques. Aggregation, intestinal adhesion, antagonistic activity, and bile salt hydrolase (BSH) activity of probiotics were studied before and after the encapsulation process. The SFD probiotics showed better aggregation ability (79% at 24-h incubation), on par with free cells (FC) (81% at 24-h incubation). The co-aggregation ability of encapsulated probiotics has drastic variations with each pathogenic strain. The adhesion ability of probiotics in chicken intestinal mucus was assessed by the crystal violet method, indicating no significant variations between FC and SFD probiotics. Also, encapsulated probiotics exhibit antagonistic activity (zone of inhibition in mm) against gut pathogens E. coli (11.33 to 17.34), S. faecalis (8.83 to 15.32), L. monocytogenes (13.67 to 18), S. boydii (12.17 to 15.5), and S. typhi (2.17 to 6.86). Overall, these studies confirm the significance and impact of various drying techniques on the functionality of encapsulated probiotics in synbiotic powders. KEY POINTS: • Understanding the relevance of processing effects on the functionality of probiotics. • Spray-freeze-dried probiotics showed superior functional properties. • The encapsulation process had no significant impact on bile salt hydrolase activity.

摘要

益生菌和益生元协同作用,作为合生元发挥功效,并带来多种健康益处。许多关于合生元食品的研究仅关注益生菌的存活情况,却未能评估其功能特性。应当探究其对功能特性的影响,以便更好地理解其治疗效果。在本研究中,采用喷雾干燥(SD)、冷冻干燥(FD)、喷雾冷冻干燥(SFD)和折射窗干燥(RWD)技术,将益生菌(植物乳杆菌NCIM 2083)与益生元(低聚果糖 + 乳清蛋白 + 麦芽糊精)进行包封。在包封前后,对益生菌的聚集、肠道黏附、拮抗活性和胆盐水解酶(BSH)活性进行了研究。喷雾冷冻干燥的益生菌表现出更好的聚集能力(孵育24小时时为79%),与游离细胞(FC)相当(孵育24小时时为81%)。包封益生菌的共聚集能力因每种致病菌株而有显著差异。通过结晶紫法评估了益生菌在鸡肠道黏液中的黏附能力,结果表明游离细胞和喷雾冷冻干燥的益生菌之间无显著差异。此外,包封的益生菌对肠道病原体大肠杆菌(抑菌圈直径为11.33至17.34毫米)、粪肠球菌(8.83至15.32毫米)、单核细胞增生李斯特菌(13.67至18毫米)、鲍氏志贺菌(12.17至15.5毫米)和伤寒沙门氏菌(2.17至6.86毫米)表现出拮抗活性(抑菌圈直径,单位为毫米)。总体而言,这些研究证实了各种干燥技术对合生元粉末中包封益生菌功能的重要性和影响。要点:• 了解加工过程对益生菌功能的相关性。• 喷雾冷冻干燥的益生菌表现出卓越的功能特性。• 包封过程对胆盐水解酶活性无显著影响。

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