Darwish Amira M G, Soliman Tarek N, Elhendy Hassan A, El-Kholy Wedad M
Department of Food Technology, Arid Lands Cultivation Research Institute (ALCRI), City of Scientific Research and Technological Applications (SRTA-City), Alexandria, Egypt.
Food Industries and Nutrition Research Division, Department of Dairy, National Research Centre, Cairo, Egypt.
Front Nutr. 2021 Apr 7;8:654624. doi: 10.3389/fnut.2021.654624. eCollection 2021.
Iron deficiency anemia (IDA) is a major health concern in developing countries, and these see an increased incidence in pregnant women and children in particular. The contribution of dairy products as natural products in drug delivery approaches is inspiring. This study aimed to analyze the application of iron (Fe) and folic acid (FA) bovine serum albumin-nanoparticles (BSA-NPs) as anti-anemic pharmacological agents that fortify stirred functional yogurt (SFY), comparing these with a plain control and SFY fortified with Fe and FA in free forms. The physicochemical, cytotoxicity, microbiological, viscosity, oxidative interactions, microstructural, sensorial analyses, and bioavailability properties of IDA-induced Albino rats were examined. The Transmission Electron Microscope (TEM), Zetasizer, and Scan Electron Microscope (SEM) were applied. Nanocapsule-fortified SFY showed an enhanced apparent viscosity, water-holding capacity, microstructure, least lipid oxidation, and overall sensorial acceptability. Feed that included Fe + FA nanocapsule-fortified SFY (G6) succeeded in restoring hemoglobin (16.53 gdL), iron (109.25 μgdL), ferritin (33.25 μgdL), and total protein (8.6 gdL) at the end of the 4-week feeding period, with significant competition revealed in calcium and zinc absorbance. Nanocapsule-fortified SFY showed no adverse effects or architectural alterations in the liver, kidney, or spleen, as indicated by biochemical and histological examinations. Bovine serum albumin-nanoparticles (BSA-NPs) of iron (Fe) and folic acid (FA) can be recommended as anti-anemia supplements in different functional food applications.
缺铁性贫血(IDA)是发展中国家主要的健康问题,在孕妇和儿童中发病率尤其高。乳制品作为天然产物在药物递送方法中的作用令人鼓舞。本研究旨在分析铁(Fe)和叶酸(FA)牛血清白蛋白纳米颗粒(BSA-NPs)作为抗贫血药物制剂在强化搅拌型功能性酸奶(SFY)中的应用,并将其与普通对照以及以游离形式添加Fe和FA的SFY进行比较。对缺铁性贫血诱导的白化大鼠的物理化学性质、细胞毒性、微生物学性质、粘度、氧化相互作用、微观结构、感官分析和生物利用度特性进行了研究。使用了透射电子显微镜(TEM)、zeta电位仪和扫描电子显微镜(SEM)。纳米胶囊强化的SFY表现出更高的表观粘度、持水能力、微观结构、最低的脂质氧化以及总体感官可接受性。在为期4周的喂养期结束时,包含Fe + FA纳米胶囊强化SFY的饲料(G6)成功恢复了血红蛋白(16.53 gdL)、铁(109.25 μgdL)、铁蛋白(33.25 μgdL)和总蛋白(8.6 gdL),同时在钙和锌吸收方面显示出显著竞争。生化和组织学检查表明,纳米胶囊强化的SFY对肝脏、肾脏或脾脏没有不良影响或结构改变。铁(Fe)和叶酸(FA)的牛血清白蛋白纳米颗粒(BSA-NPs)可推荐作为不同功能性食品应用中的抗贫血补充剂。