Sakr Sally S, Barakat Hassan
Department of Food Science and Human Nutrition, College of Agriculture and Food, Qassim University, Buraydah 51452, Saudi Arabia.
Foods. 2025 Jul 31;14(15):2698. doi: 10.3390/foods14152698.
Noncommunicable diseases (NCDs) like diabetes and cancer drive demand for therapeutic functional foods. This study developed freeze-dried fermented camel milk (FCM) with Ajwa date pulp (ADP), evaluating its physical and functional properties, probiotic survival, and potential benefits for diabetes and cancer. To achieve this target, six FCM formulations were prepared using ABT-5 starter culture (containing , , and ) with or without B-1937 and ADP (12% or 15%). The samples were freeze-dried, and their functional properties, such as water activity, dispersibility, water absorption capacity, water absorption index, water solubility index, insolubility index, and sedimentation, were assessed. Reconstitution properties such as density, flowability, air content, porosity, loose bulk density, packed bulk density, particle density, carrier index, Hausner ratio, porosity, and density were examined. In addition, color and probiotic survivability under simulated gastrointestinal conditions were analyzed. Also, antidiabetic potential was assessed via α-amylase and α-glucosidase inhibition assays, while cytotoxicity was evaluated using the MTT assay on Caco-2 cells. The results show that ADP supplementation significantly improved dispersibility (up to 72.73% in FCM15D+L). These improvements are attributed to changes in particle size distribution and increased carbohydrate and mineral content, which facilitate powder rehydration and reduce clumping. All FCM variants demonstrated low water activity (0.196-0.226), indicating good potential for shelf stability. The reconstitution properties revealed that FCM powders with ADP had higher bulk and packed densities but lower particle density and porosity than controls. Including ADP reduced interstitial air and increased occluded air within the powders, which may minimize oxidation risks and improve packaging efficiency. ADP incorporation resulted in a significant decrease in lightness (L*) and increases in redness (a*) and yellowness (b*), with greater pigment and phenolic content at higher ADP levels. These changes reflect the natural colorants and browning reactions associated with ADP, leading to a more intense and visually distinct product. Probiotic survivability was higher in ADP-fortified samples, with and showing resilience in intestinal conditions. The FCM15D+L formulation exhibited potent antidiabetic effects, with IC values of 111.43 μg mL for α-amylase and 77.21 μg mL for α-glucosidase activities, though lower than control FCM (8.37 and 10.74 μg mL, respectively). Cytotoxicity against Caco-2 cells was most potent in non-ADP samples (IC: 82.22 μg mL for FCM), suggesting ADP and may reduce antiproliferative effects due to proteolytic activity. In conclusion, the study demonstrates that ADP-enriched FCM is a promising functional food with enhanced probiotic viability, antidiabetic potential, and desirable physical properties. This work highlights the potential of camel milk and date synergies in combating some NCDs in vitro, suggesting potential for functional food application.
糖尿病和癌症等非传染性疾病推动了对治疗性功能食品的需求。本研究开发了添加阿朱瓦枣果肉(ADP)的冻干发酵骆驼奶(FCM),评估其物理和功能特性、益生菌存活率以及对糖尿病和癌症的潜在益处。为实现这一目标,使用ABT - 5发酵剂(含有 、 和 )制备了六种FCM配方,添加或不添加B - 1937和ADP(12%或15%)。将样品冻干,并评估其功能特性,如水活性、分散性、吸水能力、吸水指数、水溶性指数、不溶性指数和沉降。检测了复配特性,如密度、流动性、空气含量、孔隙率、松散堆积密度、紧实堆积密度、颗粒密度、载体指数、豪斯纳比、孔隙率和密度。此外,分析了模拟胃肠道条件下的颜色和益生菌存活率。还通过α -淀粉酶和α -葡萄糖苷酶抑制试验评估了抗糖尿病潜力,同时使用MTT试验在Caco - 2细胞上评估细胞毒性。结果表明,添加ADP显著提高了分散性(FCM15D + L中高达72.73%)。这些改善归因于粒度分布的变化以及碳水化合物和矿物质含量的增加,这有利于粉末复水并减少结块。所有FCM变体均表现出低水活性(0.196 - 0.226),表明具有良好的货架稳定性潜力。复配特性表明,添加ADP的FCM粉末比对照具有更高的堆积密度和紧实堆积密度,但颗粒密度和孔隙率更低。加入ADP减少了粉末中的间隙空气并增加了封闭空气,这可能会将氧化风险降至最低并提高包装效率。加入ADP导致亮度(L*)显著降低,红色度(a*)和黄色度(b*)增加,在较高ADP水平下色素和酚类含量更高。这些变化反映了与ADP相关的天然色素和褐变反应,从而产生更浓郁且视觉上更独特的产品。在添加ADP的样品中益生菌存活率更高, 和 在肠道条件下表现出抗性。FCM15D + L配方表现出强大的抗糖尿病作用,α -淀粉酶活性的IC值为111.43 μg/mL,α -葡萄糖苷酶活性的IC值为77.21 μg/mL,尽管低于对照FCM(分别为8.37和10.74 μg/mL)。对Caco - 2细胞的细胞毒性在非ADP样品中最强(FCM的IC:82.22 μg/mL),表明ADP和 可能由于蛋白水解活性而降低抗增殖作用。总之,该研究表明富含ADP的FCM是一种有前景的功能食品,具有增强的益生菌活力、抗糖尿病潜力和理想的物理特性。这项工作突出了骆驼奶和枣协同作用在体外对抗某些非传染性疾病的潜力,暗示了在功能食品应用方面的潜力。