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首页> 外文期刊>International Journal of Molecular Sciences >Molecular Weight Dependent Glucose Lowering Effect of Low Molecular Weight Chitosan Oligosaccharide (GO2KA1) on Postprandial Blood Glucose Level in SD Rats Model
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Molecular Weight Dependent Glucose Lowering Effect of Low Molecular Weight Chitosan Oligosaccharide (GO2KA1) on Postprandial Blood Glucose Level in SD Rats Model

机译:低分子量壳聚糖寡糖(GO2KA1)对SD大鼠模型的分子量依赖性葡萄糖降低作用

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This research investigated the effect of enzymatically digested low molecular weight (MW) chitosan oligosaccharide on type 2 diabetes prevention. Three different chitosan oligosaccharide samples with varying MW were evaluated in vitro for inhibition of rat small intestinal α-glucosidase and porcine pancreatic α-amylase (GO2KA1; 1000 Da, GO2KA2; 1000–10,000 Da, GO2KA3; MW 10,000 Da). The in vitro results showed that all tested samples had similar rat α-glucosidase inhibitory and porcine α-amylase inhibitory activity. Based on these observations, we decided to further investigate the effect of all three samples at a dose of 0.1 g/kg, on reducing postprandial blood glucose levels in Sprague-Dawley (SD) rat model after sucrose loading test. In the animal trial, all tested samples had postprandial blood glucose reduction effect, when compared to control, however GO2KA1 supplementation had the strongest effect. The glucose peak (Cmax) for GO2KA1 and control was 152 mg/dL and 193 mg/dL, respectively. The area under the blood glucose-time curve (AUC) for GO2KA1 and control was 262 h mg/dL and 305 h mg/dL, respectively. Furthermore, the time of peak plasma concentration of blood glucose (Tmax) for GO2KA1 was significantly delayed (0.9 h) compared to control (0.5 h). These results suggest that GO2KA1 could have a beneficial effect for blood glucose management relevant to diabetes prevention in normal and pre-diabetic individuals. The suggested mechanism of action is via inhibition of the carbohydrate hydrolysis enzyme α-glucosidase and since GO2KA1 (MW 1000 Da) had higher in vivo effect, we hypothesize that it is more readily absorbed and might exert further biological effect once it is absorbed in the blood stream, relevant to blood glucose management.
机译:这项研究调查了酶消化的低分子量(MW)壳聚糖寡糖对2型糖尿病的预防作用。在体外评估了三种不同分子量的壳聚糖低聚糖样品对大鼠小肠α-葡萄糖苷酶和猪胰α-淀粉酶的抑制作用(GO2KA1; <1000 Da,GO2KA2; 1000–10,000 Da,GO2KA3; MW> 10,000 Da)。体外结果显示,所有测试样品均具有相似的大鼠α-葡萄糖苷酶抑制活性和猪α-淀粉酶抑制活性。基于这些观察,我们决定进一步研究蔗糖负荷试验后,在0.1 g / kg剂量下所有三个样品对降低Sprague-Dawley(SD)大鼠模型中餐后血糖水平的影响。在动物试验中,与对照相比,所有测试样品均具有餐后血糖降低作用,但是补充GO2KA1的作用最强。 GO2KA1和对照组的葡萄糖峰(C max )分别为152 mg / dL和193 mg / dL。 GO2KA1和对照组的血糖时间曲线下面积(AUC)分别为262 h mg / dL和305 h mg / dL。此外,与对照组(0.5 h)相比,GO2KA1的血糖峰值血药浓度(T sub )时间明显延迟(0.9 h)。这些结果表明,GO2KA1可能对正常和糖尿病前期个体中与糖尿病预防有关的血糖管理具有有益作用。建议的作用机理是通过抑制碳水化合物水解酶α-葡萄糖苷酶,并且由于GO2KA1(MW <1000 Da)具有更高的体内作用,因此我们推测它更容易吸收,一旦被吸收就可能发挥进一步的生物学作用。血流,与血糖管理有关。

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