Brishti Moumika Rahman, Venkatraman Gopinath, Baba Ahmad Salihin Bin Hj, Yajit Noor Liana Mat, Karsani Saiful Anuar
Department of Biochemistry, Faculty of Science, Universiti Malaya, 50603, Kuala Lumpur, Malaysia.
Universiti Malaya Centre for Proteomics Research (UMCPR), Universiti Malaya, 50603, Kuala Lumpur, Malaysia.
Probiotics Antimicrob Proteins. 2025 Feb 12. doi: 10.1007/s12602-025-10461-1.
Recently, there has been a high demand for the development of yogurt-based nutraceuticals and functional medications. This surge is primarily driven by the increasing global need for pharmaceutical and nutraceutical products, arising from widespread nutrient deficiencies and the emergence of various communicable and non-communicable diseases (NCDs), including respiratory infections, cancer, gastrointestinal, diabetes, obesity, and cardiovascular diseases. Probiotic yogurt provides an effective medium for delivering essential nutrients to the human body. Additionally, various prebiotic combinations, such as bioactive compounds from plants, animals, and microbes, can enrich the viability of probiotics, nutritional value, and efficacy. However, the gastric environment can significantly impact the viability of probiotic microorganisms as well as the absorption of nutrients and bioactive molecules. Therefore, utilizing biopolymer-based encapsulation for functional nutrients, metal nanostructures, and medications can improve the bioavailability of these compounds, protect the probiotics from gastric enzymes, increase nutrient and microbial absorption in colonic fluids, and enhance the antioxidant level in the body. This review investigates various methods for producing yogurt enriched with prebiotic and probiotic combinations alongside techniques such as microencapsulation, emulsification, and the incorporation of metal nanoparticles. Key factors such as viability, texture, and syneresis are examined to optimize yogurt-based nutraceuticals and functional medications.
近年来,对基于酸奶的营养保健品和功能性药物的开发需求高涨。这种激增主要是由全球对药品和营养保健品需求的增加所驱动,这源于普遍存在的营养缺乏以及各种传染病和非传染性疾病(NCDs)的出现,包括呼吸道感染、癌症、胃肠道疾病、糖尿病、肥胖症和心血管疾病。益生菌酸奶为向人体输送必需营养素提供了一种有效媒介。此外,各种益生元组合,如来自植物、动物和微生物的生物活性化合物,可以提高益生菌的活力、营养价值和功效。然而,胃部环境会显著影响益生菌微生物的活力以及营养物质和生物活性分子的吸收。因此,利用基于生物聚合物的包封技术来包裹功能性营养素、金属纳米结构和药物,可以提高这些化合物的生物利用度,保护益生菌免受胃酶的影响,增加结肠液中营养物质和微生物的吸收,并提高体内的抗氧化水平。本综述研究了生产富含益生元和益生菌组合的酸奶的各种方法,以及微胶囊化、乳化和金属纳米颗粒掺入等技术。还研究了活力、质地和脱水收缩等关键因素,以优化基于酸奶的营养保健品和功能性药物。