Determination of Antihypergycemic Effect of Flaxseed (L. usititatissimum) Fractions on Streptozotocin-induced Diabetic Rats

Adugbe Abigail, Vongdip Nanman Godwin, Obot Blessing Uduakobong, Carol. D. Luka
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Abstract

Diabetes is a metabolic disorder characterized by persistent high blood glucose level.  Flaxseed is one of the functional foods used in the management of diabetes mellitus. The study aimed to evaluate the effects of different fractions of Flaxseed on albino diabetic rats, and diabetes was induced using streptozotocin. The fractions were obtained using solvents with increasing polarity, namely n-Hexane, Ethylacetate, Methanol, and Water. The presence of various phytochemicals, including alkaloids, flavonoids, tannins, saponins, balsam, carbohydrates, phenols, and resins, were identified. The phytochemical analysis revealed that the methanolic fraction contained the highest concentration of bioactive components, followed by the aqueous fraction.  Significant reductions in blood glucose levels were observed across the groups treated with the Flaxseed fractions. The methanolic fraction exhibited the highest antihyperglycemic property (5.90±0.536), followed by the aqueous fraction (8.73±0.536). The hexane fraction ranked next to the aqueous fraction (20.50±1.617), while the ethylacetate fraction had the least antihyperglycemic effect (23.60±0.731). However, the protein and albumin biomarkers showed significant increase across all treatment groups. The Flaxseed fractions also demonstrated antihyperlipidemic properties, with the methanolic fraction being the most potent. Additionally, the treatment groups exhibited improved kidney function biomarkers, serum enzyme levels, and electrolyte levels. Based on the results of this investigation, Flaxseed proves to be a potent antihyperglycemic and antihyperlipidemic food. Moreover, the methanolic fraction demonstrated the greatest ameliorative effect, followed by the aqueous fraction.
亚麻籽提取物对链脲佐菌素诱导的糖尿病大鼠降糖作用的研究
糖尿病是一种以持续高血糖为特征的代谢紊乱。亚麻籽是治疗糖尿病的功能性食品之一。研究亚麻籽不同组分对白化糖尿病大鼠的影响,并采用链脲佐菌素诱导糖尿病。馏分采用极性递增的溶剂,即正己烷、乙酸乙酯、甲醇和水。鉴定出各种植物化学物质,包括生物碱、类黄酮、单宁、皂苷、香脂、碳水化合物、酚类和树脂。植物化学分析表明,甲醇组分的生物活性成分含量最高,其次是水相组分。在用亚麻籽提取物治疗的各组中,血糖水平显著降低。甲醇部位的降糖效果最好(5.90±0.536),其次是水部位(8.73±0.536)。正己烷馏分的降糖效果仅次于水馏分(20.50±1.617),乙酸乙酯馏分的降糖效果最低(23.60±0.731)。然而,蛋白质和白蛋白生物标志物在所有治疗组中均显着增加。亚麻籽部分也显示出抗高脂血症的性质,与甲醇部分是最有效的。此外,治疗组表现出肾功能生物标志物、血清酶水平和电解质水平的改善。基于这项调查的结果,亚麻籽被证明是一种有效的抗高血糖和抗高血脂的食物。其中,甲醇馏分的改善效果最大,其次是水馏分。
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