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Prebiotic Properties of Dates and Their Impact on Health
2025
Ahmad Alhomsi | Mukaddes Kılıç Bayraktar
The date palm (Phoenix dactylifera L.), primarily cultivated in desert regions like the Middle East, is a significant source of nutrition, rich in sugars, polysaccharides, and bioactive compounds such as carotenoids, flavonoids, phenolics, anthocyanins, and sterols. Notably, the polysaccharides in dates exhibit prebiotic properties, supporting beneficial gut microbiota. Research highlights that dates promote the growth of helpful bacteria, including Bifidobacterium and Lactobacillus, which enhance intestinal health, improve barrier function, and increase the production of short-chain fatty acids. Beyond gut health, dates offer additional benefits, including anti-inflammatory, antioxidant, cardiovascular, neuroprotective, and blood sugar-regulating effects. This review synthesizes recent findings on the prebiotic effects and broader health impacts of dates, suggesting their potential in dietary strategies for promoting health and preventing gastrointestinal disorders.
显示更多 [+] 显示较少 [-]Ameliorated Viability of Lactic Acid Bacteria in Fruit Juice Isolated from Indigenous Dahi with Prebiotics (Asparagus falcatus and Zingiber officinale)
2024
Fahmida Akter | Shamima Ahmed | Mohammad Mozibul Haque | Eaftekhar Ahmed Rana | Chaudhry Ahmed Shabbir | Ali Ahsan | Mohammad Shaokat Ali
Dahi is a fermented milk product containing probiotic lactic acid bacteria. This study aimed to isolate, identify, and characterize lactic acid-producing bacteria from native Dahi and evaluate their viability in orange juice using natural prebiotics. Dahi samples were obtained from local shops in Chattogram and Bogura, Bangladesh. Lactic acid-producing bacteria were isolated using MRS (de Mann Rogosa and Sharpe) medium. The isolated bacteria were identified through colony morphology, biochemical tests, and probiotic characteristics. Molecular identification was performed using polymerase chain reaction (PCR) targeting conserved 16S rDNA regions. Isolates of the genus Lactobacillus and Lactococcus lactis sp. Lactis were confirmed and used to develop probiotic orange juice. Prebiotics (Asparagus falcatus and Zingiber officinale) were added to the juice to support probiotic growth. The inoculated cell’s viability and the juice’s physicochemical parameters were evaluated during fermentation (48 hours) and storage (28 days). All fruit juice samples showed a mean number of viable cells of at least 1×105 CFU/mL during the 48-hour fermentation and 28-day storage in the refrigerator. Using natural prebiotics positively affected the survival of lactic acid bacteria, as demonstrated by bacterial colony growth on Petri dishes. Developing probiotic fruit juice enriched with prebiotics could be an effective alternative for individuals allergic or intolerant to milk-based products. Incorporating lactic acid bacteria from native Dahi into orange juice, combined with natural prebiotics, resulted in viable probiotic cells throughout fermentation and storage.
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