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Safuan, Sabreena
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Prebiotic Activity of Plants from Cucurbitaceae Family and In Vitro Fermentation by Gut Microbiota Ab Azid, Saffanah Mohd; Wichienchot, Santad; Wan Ishak, Wan Rosli; Safuan, Sabreena
Jurnal Gizi dan Pangan Vol. 19 No. Supp.2 (2024)
Publisher : The Food and Nutrition Society of Indonesia in collaboration with the Department of Community Nutrition, IPB University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25182/jgp.2024.19.Supp.2.342-351

Abstract

This study aims to examine the effect of Freeze-Dried Pumpkin Powder (FDPP), Freeze-Dried Winter Melon Powder (FDWMP), Freeze-Dried Rock Melon Powder (FDRMP), inulin, and D glucose on prebiotic activity score by in vitro fermentation. We also elucidate the changes in bacterial populations through batch culture fermentation using fecal samples from 5 healthy volunteers and In vitro fecal fermentation using batch culture and analyses of Short-Chain Fatty Acids (SCFAs). The growth of Bifidobacterium has significantly increased from 0 (8.90±0.05 log10 cells/mL) and 72h (8.83±0.14 log10 cells/mL) for D glucose and FDWMP (8.75±0.07 log10 cells/mL (0h) and 8.87±0.12 log10 cells/mL (72h)). However, the increase in population was not significant for inulin (9.15±0.06 log10 cells/mL), FDPP (9.04±0.12 log10 cells/mL), and FDRMP (8.67±0.08 log10 cells/mL). The number of Lactobacili significantly increased at 6h for FDPP (9.11±0.07 log10 cells/mL) and 24h for FDWMP (8.88±0.07 log10 cells/mL) and FDRMP (8.80±0.09 log10 cells/mL). Acetic acid was detected in all samples, and the concentration increased in all vessels at any given time except for the FDWMP fermentation, which decreased after 0h and increased after 6h. Overall, FDWMP has increased the probiotic growth of L. plantarum TISTR 1465 and exhibit the highest prebiotic index. As a result, it is suggested that the FDWMP be potentially used as a healthy raw material in developing varieties of functional prebiotic food products.
Protective Effects of the Polyphenolic-Rich Fraction of Cornsilk against Oxidative Stress in Streptozotocin-Induced Diabetic Rats Hamzah, Nurraihana; Safuan, Sabreena; Wan Ishak, Wan Rosli
Jurnal Gizi dan Pangan Vol. 18 No. 1 (2023)
Publisher : The Food and Nutrition Society of Indonesia in collaboration with the Department of Community Nutrition, IPB University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25182/jgp.2023.18.1.41-50

Abstract

Diabetes Mellitus (DM) has become a significant public health problem worldwide and primarily correlated to hyperglycaemia and abnormal lipid and antioxidant levels. Fruit and vegetable wastes are rich in phenolic compounds thus suitable for antioxidant sources. Cornsilk (CS), a maize cultivar waste, also contains phenolic compounds. The current study investigated the anti-hyperglycemic and antioxidative properties of the Phenolic-Rich Fraction of Cornsilk (PRF-CS) in Streptozotocin (STZ)-induced diabetic rats. Five groups of 30 male Sprague Dawley rats were employed in this study. A sample size of six rats each is placed in five groups: Normal-Control (NC), Diabetic-Control (DC), Diabetic-PRF-CS treated 100 mg/kg (DPRF100) and 200 mg/kg (DPRF200), and Diabetic-Metformin Treated (Dmet) groups. The PRF-CS was administered at 100 and 200 mg/kg doses for 28 consecutive days to the diabetic rats. Treatment with both doses of PRF-CS (DPRF100 and DPRF200) significantly decreased the blood glucose levels of the rats (p<0.05). Additionally, the PRF-treated rats demonstrated significantly decreased (p<0.05) lipid peroxidation (3.60±0.23 and 3.31±0.56 µmol/g, respectively). The hepatic antioxidant enzyme activities of Superoxide Dismutase (SOD) (169.35±4.75 and 175.30±3.69 U/mg, respectively), Catalase (CAT) (1457.51±152.74 and 2011.99±396.96 U/mg), and Glutathione Peroxidase (GSH-Px) (63.43±2.99 and 78.47±4.51 U/mg) were also elevated in contrast to the DC group. Furthermore, the PRF-CS administration improved the histological alterations in the liver tissues of the DPRF100 and DPRF200 rats. In conclusion, PRF-CS treatment exhibited protective effects in the diabetic rat model by decreasing oxidative stress and preserving liver integrity.