Kokubo Eri, Sonoki Hirofumi, Aizawa Kenta, Takagi Hiroki, Takada Masayasu, Ito Ayako, Nakazato Yuki, Takeda Yasuhiro, Miyaji Kazuhiro
1 Health Care & Nutritional Science Institute, R&D Division, Morinaga Milk Industry Co., Ltd.
2 Research Institute, Nihon Shokuhin Kako Co., Ltd.
J Appl Glycosci (1999). 2022 Aug 22;69(3):57-63. doi: 10.5458/jag.jag.JAG-2021_0013. eCollection 2022.
Slowly digestible carbohydrates are needed for nutritional support in diabetic patients with malnutrition. They are a good source of energy and have the advantage that their consumption produces a low postprandial peak in blood glucose levels because they are slowly and completely digested in the small intestine. A high-amount isomaltomegalosaccharide containing carbohydrate (H-IMS), made from starch by dextrin dextranase, is a mixture of glucose polymers which has a continuous linear structure of α-1,6-glucosidic bonds and a small number of α-1,4-glucosidic bonds at the reducing ends. It has a broad degree of polymerization (DP) distribution with glucans of DP 10-30 as the major component. In our previous study, H-IMS has been shown to exhibit slow digestibility and not to raise postprandial blood glucose to such levels as that raised by dextrin . This marks it out as a potentially useful slowly digestible carbohydrate, and this study aimed to evaluate its digestibility. The amount of breath hydrogen emitted following oral administration of H-IMS was measured to determine whether any indigestible fraction passed through to and was fermented in the large intestine. Total carbohydrate in the feces was also measured. H-IMS, like glucose and dextrin, did not result in breath hydrogen excretion. Carbohydrate excretion with dietary H-IMS was no different from that of glucose or water. These results show that the H-IMS is completely digested and absorbed in the small intestine, indicating its potential as a slowly digestible carbohydrate in the diet of diabetic patients.
缓慢消化的碳水化合物对于营养不良的糖尿病患者的营养支持是必需的。它们是良好的能量来源,并且具有这样的优势:食用它们会使餐后血糖水平产生较低的峰值,因为它们在小肠中被缓慢且完全地消化。一种由糊精葡聚糖酶从淀粉制成的高含量异麦芽低聚糖碳水化合物(H - IMS),是葡萄糖聚合物的混合物,其具有α - 1,6 - 糖苷键的连续线性结构以及在还原端少量的α - 1,4 - 糖苷键。它具有广泛的聚合度(DP)分布,以DP为10 - 30的葡聚糖作为主要成分。在我们之前的研究中,已表明H - IMS具有缓慢消化性,并且不会使餐后血糖升高到像糊精那样的水平。这表明它是一种潜在有用的缓慢消化碳水化合物,本研究旨在评估其消化性。测量口服H - IMS后呼出的氢气量,以确定是否有任何不可消化部分进入大肠并在其中发酵。还测量了粪便中的总碳水化合物。H - IMS与葡萄糖和糊精一样,不会导致呼出氢气。膳食中H - IMS的碳水化合物排泄与葡萄糖或水的排泄没有差异。这些结果表明,H - IMS在小肠中被完全消化和吸收,表明其在糖尿病患者饮食中作为缓慢消化碳水化合物的潜力。