In Vitro Utilization Characteristics of Maltobionic Acid and Its Effects on Bowel Movements in Healthy Subjects.

IF 1.2 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Journal of applied glycoscience Pub Date : 2020-02-20 eCollection Date: 2020-01-01 DOI:10.5458/jag.jag.JAG-2019_0013
Ken Fukami, Daiki Suehiro, Motoko Ohnishi
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引用次数: 4

Abstract

We examined the in vitro digestibility of maltobionic acid, obtained from enzymatic oxidation of maltose, its utilization by intestinal bacteria, and its biological effects on the bowel movements in healthy subjects. We found that maltobionic acid is not digested in vitro by saliva, gastric juice, or pancreatic juice. Moreover, it is digested only to a small extent by small intestinal enzymes. Among the 24 strains of intestinal bacteria, maltobionic acid was selectively utilized by Bifidobacterium dentium and Bi. adolescentis. We also evaluated the influence of long-term ingestion of maltobionic acid calcium salt on bowel movements in healthy Japanese women by a randomized, double-blind, placebo-controlled, crossover trial. Thirty-four subjects completed the study, and no adverse events related to the test food were observed. Ten subjects were excluded prior to the efficacy analysis because of conflict with the control criteria; the remaining 24 subjects were analyzed. Intake of test food containing 4 g maltobionic acid for 4 weeks caused a significant increase in the stool frequency, significant improvement in stool form scale and CAS-MT total scores as compared with the placebo group. These results suggest that maltobionic acid is an indigestible carbohydrate and is a promising therapeutic agent for improving the intestinal environment.

Abstract Image

Abstract Image

麦芽糖仿生酸的体外利用特性及其对健康人肠道运动的影响。
我们研究了麦芽糖酶氧化法获得的麦芽糖仿生酸的体外消化率、肠道细菌对其的利用以及对健康受试者肠道运动的生物学影响。我们发现麦芽糖仿生酸在体外不能被唾液、胃液或胰液消化。此外,它仅被小肠酶少量消化。在24株肠道细菌中,牙双歧杆菌和双歧杆菌对麦芽糖bionic酸有选择性利用。adolescentis。我们还通过一项随机、双盲、安慰剂对照的交叉试验评估了长期摄入麦芽糖酸钙盐对健康日本女性肠道运动的影响。34名受试者完成了研究,没有观察到与测试食物相关的不良事件。10例受试者因与对照标准冲突而在疗效分析前被排除;对其余24名受试者进行分析。与安慰剂组相比,连续4周摄入含有4克麦乐菌酸的测试食物,大便频率显著增加,大便形态量表和CAS-MT总分显著改善。这些结果表明,麦芽糖酸是一种不易消化的碳水化合物,是一种很有前景的改善肠道环境的治疗剂。
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来源期刊
Journal of applied glycoscience
Journal of applied glycoscience BIOCHEMISTRY & MOLECULAR BIOLOGY-
自引率
9.10%
发文量
13
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