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In-Vitro Antioxidant Hypoglycemic Activity and Identification of Bioactive Compounds in Phenol-Rich Extract from the Marine Red Algae Gracilaria edulis (Gmelin) Silva

机译:海水中红藻Gracilaria edulis(Gmelin)Silva富含酚的提取物中的体外抗氧化剂降血糖活性和生物活性化合物的鉴定

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摘要

Obesity and diabetes are major metabolic disorders which are prevalent worldwide. Algae has played an important role in managing these disorders. In this study, , a marine red algae, was investigated for antioxidant and hypoglycemic potential using in vitro models. De-polysaccharide methanol extract of was sequentially partitioned with hexane, chloroform, ethyl acetate, and antioxidants, and hypoglycemic potentials were evaluated using multiple methods. High antioxidant potential was observed in the ethyl acetate fraction in terms of ferric reducing antioxidant power, iron chelating, and DPPH and ABTS radical scavenging activities, while the crude methanol extract exhibited potent oxygen radical-absorbance capacity. Potent α-amylase inhibitory activity was observed in the ethyl acetate fraction, while the ethyl acetate fraction was effective against α-glucosidase inhibition. Glucose diffusion was inhibited by the ethyl acetate fraction at 180 min, and the highest antiglycation activity was observed in both chloroform and ethyl acetate fractions. Additionally, gas chromatography-mass spectrometry analysis of the ethyl acetate fraction revealed the presence of several potent anti-diabetic compounds. In conclusion, exhibited promising antidiabetic potential via multiple mechanisms. The ethyl acetate fraction exhibited the strongest hypoglycemic and antiglycation potential among the four fractions, and hence the isolation of active compounds is required to develop leads for new drugs to treat diabetes.
机译:肥胖和糖尿病是世界范围内普遍存在的主要代谢疾病。藻类在控制这些疾病中发挥了重要作用。在这项研究中,使用体外模型对海洋红藻的抗氧化剂和降血糖潜力进行了研究。依次用己烷,氯仿,乙酸乙酯和抗氧化剂对的脱多糖甲醇提取物进行分配,并使用多种方法评估降血糖潜力。观察到在乙酸乙酯级分中具有高的抗氧化潜力,就其三价铁的还原抗氧化能力,铁螯合以及DPPH和ABTS自由基清除活性而言,而粗甲醇提取物具有强大的氧自由基吸收能力。在乙酸乙酯级分中观察到强的α-淀粉酶抑制活性,而乙酸乙酯级分对α-葡萄糖苷酶抑制有效。在180分钟时,乙酸乙酯级分抑制了葡萄糖的扩散,在氯仿和乙酸乙酯级分中均观察到最高的抗糖化活性。另外,乙酸乙酯部分的气相色谱-质谱分析表明存在几种有效的抗糖尿病化合物。总之,通过多种机制显示出有希望的抗糖尿病潜力。乙酸乙酯级分在这四个级分中表现出最强的降血糖和抗糖基化潜力,因此需要分离活性化合物才能开发出治疗糖尿病的新药。

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