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The Manufacturing Process of Kiwifruit Fruit Powder with High Dietary Fiber and Its Laxative Effect

机译:猕猴桃果粉具有高膳食纤维的制造过程及其泻药

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摘要

Kiwifruit is rich in vitamins, minerals, dietary fiber and other functional components, and it has long been used as a functional food to treat intestinal ailments such as constipation. The current research made full use of the kiwifruit, the juice was prepared by microencapsulation, and the dietary fiber in kiwifruit pomace was modified by enzymatic hydrolysis and grinding, then, the two were mixed to obtain an ultra-micro kiwifruit powder (UKP). In addition, the laxative effect of the UKP was verified by a diphenoxylate induced constipated mice model. The results demonstrated that compared with the raw samples, the retention rate of vitamin C, lutein and catechin in UKP were 83.3%, 81.9% and 88.3%, respectively, thus effectively avoiding the loss of functional components during the processing of kiwifruit. Moreover, α-amylase, protease and the ball milling process effectively reduced the size of dietary fiber in kiwifruit pomace, and its water-holding capacity (WHC), oil-holding capacity (OHC) and swelling capacity (SWC) were enhanced by 1.26, 1.65 and 1.10 times, respectively. Furthermore, to analyze the laxative effect of the UKP, a constipation mice model was established by diphenoxylate treatment (5 mg·kg−1, i.g.) for the last week, with or without UKP supplementation (2.4 g·kg−1 B.W. per day) for 4 weeks. The results demonstrated that UKP significantly increased feces condition (fecal output and dejecta moisture content, gut transit (the intestinal propulsion rates) and substance P (SP) levels in portal vein plasma, and it decreased the whole gut transit time and mucinogen granules secreted by goblet cell in constipated mice.
机译:Kiwifruit富含维生素,矿物质,膳食纤维和其他功能性成分,它已长期被用作功能性食物以治疗肠道疾病,如便秘。目前的研究充分利用了Kiwifruit,通过微胶囊制备果汁,通过酶水解和研磨来修饰Kiwifruit Pomace中的膳食纤维,然后将两者混合以获得超微微kiwifruit粉末(UKP)。此外,通过二苯氧基化诱导的便秘小鼠模型验证了UKP的泻药效果。结果表明,与原样相比,UKP中维生素C,叶黄素和儿茶素的保留率分别为83.3%,81.9%和88.3%,从而有效地避免了猕猴桃加工过程中的功能成分的损失。此外,α-淀粉酶,蛋白酶和球磨过程有效地降低了尿道焊料中膳食纤维的尺寸,其水保持能力(WHC),油控容量(OHC)和溶胀容量(SWC)得到1.26 ,分别为1.65和1.10次。此外,为了分析UKP的泻药作用,通过乌克西氧化物处理(5mg·kg-1,Ig)建立了便秘小鼠模型,或者没有UKP补充(每天2.4g·kg-1 bw )4周。结果表明,UKP的粪便状况显着增加(粪便输出和粪便水分含量,肠道转运(肠道推进率)和门静脉等离子体中的物质P(SP)水平,并且它降低了整个肠道过渡时间和粘膜原粒在便秘小鼠中的脚杯细胞。

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