益生菌
食品科学
渗透
发酵
巴氏杀菌
产量(工程)
生物技术
生化工程
工程类
化学
生物
材料科学
细菌
生物化学
遗传学
冶金
膜
作者
Ibrahim A.A. Abou Ayana,Mohamed R. Elgarhy,Fatimah Al-Otibi,M. M. Omar,M. Z. El‐Abbassy,Salah A. Khalifa,Yosra A. Helmy,WesamEldin I. A. Saber
出处
期刊:ACS omega
[American Chemical Society]
日期:2024-05-29
卷期号:9 (23): 25189-25202
被引量:14
标识
DOI:10.1021/acsomega.4c02824
摘要
Consumer demand for plant-based alternatives drives innovation in nondairy beverages. This study explores the development of a novel sesame milk with enhanced functionality using an artificial neural network (ANN) and milk permeate integration. An ANN model effectively optimized water-based sesame milk (WSM) extraction, maximizing total solids (T.S.) recovery. The ANN model's predicted T.S. yield (99.65%) closely matched the actual value (95.18%), demonstrating its potential for optimizing high-yield production. Furthermore, milk permeate was incorporated (5:1 ratio) to create permeate-based sesame milk (PSM), which supported the growth of lactic acid bacteria, suggesting its potential as a growth medium for future probiotic applications. PSM also displayed superior nutritional value and sensory characteristics compared to WSM. These findings highlight the promise of ANN-powered optimization and milk permeate integration for creating innovative sesame milk alternatives with enhanced probiotic viability and sensory appeal. Future research should focus on ANN optimization of alternative-based-plant milk, including permeate-based sesame milk production, the health benefits of LAB fermentation, and consumer preferences for flavors and textures. Optimizing fermentation and LAB selection remain key for commercial success.
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