首页> 外文期刊>Food and Nutrition Bulletin >Amylase-treated rice flour oral rehydration solution witn enhanced energy density, lI. In vivo studies of tolerance, energy intake, and rehydration efficacy in the initial treatment of dehydrated diarrhoeic children
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Amylase-treated rice flour oral rehydration solution witn enhanced energy density, lI. In vivo studies of tolerance, energy intake, and rehydration efficacy in the initial treatment of dehydrated diarrhoeic children

机译:淀粉酶处理的米粉口服补液提高了能量密度。脱水腹泻儿童初始治疗中的耐受性,能量摄入和补液功效的体内研究

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In a companion paper we described the feasibility of liquefying high concentrations of rice flour with amylase to produce enhanced oral rehydration solutions (ORS) with suitably lower viscosities to remain drinkable. This offers a means of orally rehydrating patients, while eliminating much or all of the caloric deficit imposed by conventional, dilute, glucose-based ORS. To explore whether humans would tolerate these solutions, 63 dehydrated diarrhoeic children were randomly assigned to one of threefour-hour oral treatments: ORS with 5% rice flour, 10% rice flour incubated with alpha-amylase, or 15% rice flour incubated with alpha-amylase. The sodium and potassium concentrations of the solution as well as the osmolality and viscosity were within the desired ranges. On average, the children consumed 70 + 26%, 90 ± 28%, and 80 ± 45% of the respective ORS, equivalent to intakes of 8 ± 4, 23 ± 9, and 33 ± 18 kcal/kg/4 hours, respectively. The mean increases in weight in four hours were 1.1%, 2.7%, and 1.6%, respectively. The concept of enhanced energy content of ORS based on amylase-treated rice flour appears to be ready for exploration in clinical field trials.
机译:在另一篇论文中,我们描述了用淀粉酶液化高浓度大米粉以生产粘度适当降低而仍可饮用的增强口服补液溶液(ORS)的可行性。这提供了一种给患者口服补液的方法,同时消除了常规的,稀疏的,基于葡萄糖的ORS造成的大部分或全部热量不足。为了研究人类是否会耐受这些溶液,将63名脱水腹泻儿童随机分配为三个四小时口服治疗中的一种:含5%米粉的ORS,含α-淀粉酶的10%米粉或含α-淀粉酶的15%米粉-淀粉酶。溶液的钠和钾浓度以及重量克分子渗透浓度和粘度均在所需范围内。这些孩子平均消耗各自ORS的70 + 26%,90±28%和80±45%,相当于分别摄入8±4、23±9和33±18 kcal / kg / 4小时。 。四小时内体重的平均增加分别为1.1%,2.7%和1.6%。基于淀粉酶处理的米粉提高ORS能量含量的概念似乎已准备好在临床田间试验中进行探索。

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