Wang Meng, Chen Xuanhong, Dong Leichao, Nan Xijun, Ji Wei, Wang Sai, Sun Wanting, Zhou Quancheng
Department of Food Science, School of Agricultural Engineering and Food Science, Shandong University of Technology, Zibo, 255049, China.
School of Agricultural Engineering and Food Science, Shandong University of Technology, Key Laboratory of Shandong Provincial Universities for Technologies Agricultural Products, Zibo, 255049, China.
J Food Sci. 2021 Apr;86(4):1273-1282. doi: 10.1111/1750-3841.15669. Epub 2021 Mar 24.
This study was designed to investigate the effects of ultrafine grinding on the physicochemical properties of pea dietary fiber (PDF) and the hypoglycemic effect of ultrafine grinding dietary fiber on diabetes mellitus (DM). So, the PDF was treated by ultrafine grinding technology, and its microstructure and physicochemical properties were determined. Then, the DM model was established, and the 4-week ultrafine grinded pea dietary fiber (UGPDF) diet intervention was conducted by using gavage and feeding. During this period, the blood glucose and body weight of the mice were measured, and an oral glucose tolerance test was measured on the last day. The biochemical blood indexes of the mice were determined, and the pancreas was stained with HE after dissecting. The results showed that after ultrafine grinding, the structure fragmentation, specific surface area increased, and UGPDF showed higher swelling ability as well as water and oil holding capacities. Simultaneously, UGPDF had a significant effect on reducing blood glucose and glycosylated hemoglobin in DM mice, improving the wasting state of mice and increasing the tolerance to glucose. Further, the results of the HE section showed that the pancreatic islet cells gradually returned to normal regular morphology. In biochemical blood indicators, UGPDF reduced TC and TG levels in the blood. This study provided a specific data basis for the following research on the hypoglycemic mechanism, and broadens the application field of PDF. PRACTICAL APPLICATION: The physicochemical properties of pea dietary fiber were improved by ultrafine grinding technology. Because of this, the application of pea dietary fiber in the field of hypoglycemic had a better effect, laying a foundation for the next research on hypoglycemic mechanism.
本研究旨在探讨超细粉碎对豌豆膳食纤维(PDF)理化性质的影响以及超细粉碎膳食纤维对糖尿病(DM)的降血糖作用。因此,采用超细粉碎技术处理PDF,并测定其微观结构和理化性质。然后,建立DM模型,通过灌胃和喂食进行为期4周的超细粉碎豌豆膳食纤维(UGPDF)饮食干预。在此期间,测量小鼠的血糖和体重,并在最后一天进行口服葡萄糖耐量试验。测定小鼠的血液生化指标,解剖后用苏木精-伊红(HE)对胰腺进行染色。结果表明,超细粉碎后,结构破碎,比表面积增加,UGPDF表现出更高的溶胀能力以及持水和持油能力。同时,UGPDF对降低DM小鼠的血糖和糖化血红蛋白有显著作用,改善小鼠的消瘦状态,提高对葡萄糖的耐受性。此外,HE切片结果显示胰岛细胞逐渐恢复正常规则形态。在血液生化指标方面,UGPDF降低了血液中的总胆固醇(TC)和甘油三酯(TG)水平。本研究为后续降血糖机制的研究提供了具体的数据依据,并拓宽了PDF的应用领域。实际应用:通过超细粉碎技术改善了豌豆膳食纤维的理化性质。因此,豌豆膳食纤维在降血糖领域的应用效果更好,为下一步降血糖机制的研究奠定了基础。