首页> 外文期刊>Journal of the American College of Nutrition >Starch-entrapped biopolymer microspheres as a novel approach to vary blood glucose profiles.
【24h】

Starch-entrapped biopolymer microspheres as a novel approach to vary blood glucose profiles.

机译:淀粉包埋的生物聚合物微球是改变血糖分布的新方法。

获取原文
获取原文并翻译 | 示例
           

摘要

BACKGROUND: With emerging knowledge of the impact of the metabolic quality of glycemic carbohydrates on human health, there is a need for novel carbohydrate ingredients that can be custom-made to deliver controlled amounts of glucose to the body and to test hypotheses on the postprandial metabolic consequences of carbohydrates. OBJECTIVE: The goal of the present study was to demonstrate the applicability and action of starch-entrapped biopolymer microspheres as customized, novel, slowly digestible carbohydrates to obtain desired glycemic responses. METHODS: Starch-entrapped microspheres were developed; and starch digestion and glucose release, subsequent to their cooking (100 degrees C, 20 min) in water, were initially monitored by measuring the rapidly digestible, slowly digestible, and resistant starch fractions using the in vitro Englyst assay. Glycemic and insulinemic responses after consumption of glucose and two different slowly digestible starch microsphere diets were compared using a crossover study in 10 healthy individuals. The mechanism of starch digestion in the microspheres was elucidated from scanning electron microscopic images of the in vitro digested microspheres. RESULTS: Factors such as biopolymer type and concentration, microsphere size, and starch type were manipulated to obtain starch materials with defined amounts of slowly digestible starch based on in vitro studies. Scanning electron microscopy showed that cooked starch entrapped in the dense biopolymer matrix is digested layer by layer from the outside to the inside of the microsphere. Glycemic and insulinemic responses to microsphere test diets were moderate as compared to a glucose diet, but more important, they showed extended glucose release. CONCLUSIONS: Starch-entrapped microspheres provide a useful tool to study the postprandial metabolic consequences of slowly digestible carbohydrates.
机译:背景:随着关于糖类碳水化合物代谢质量对人体健康影响的新兴知识的出现,需要可以定制的新型碳水化合物成分,以将受控量的葡萄糖输送至人体并测试餐后代谢的假设碳水化合物的后果。目的:本研究的目的是证明淀粉包埋的生物聚合物微球作为定制的,新颖的,易消化的碳水化合物,以获得所需的血糖反应的适用性和作用。方法:开发了淀粉包埋的微球。在水中煮熟(100摄氏度,20分钟)后,首先通过使用体外Englyst测定法测量快速消化,缓慢消化和抗性淀粉组分来监测淀粉的消化和葡萄糖释放。使用交叉研究在10名健康个体中比较了食用葡萄糖和两种不同的缓慢消化的淀粉微球饮食后的血糖和胰岛素反应。从体外消化的微球的扫描电子显微镜图像阐明了淀粉在微球中的消化机理。结果:基于体外研究,对诸如生物聚合物类型和浓度,微球尺寸和淀粉类型等因素进行了控制,以获得具有一定量的缓慢消化淀粉的淀粉材料。扫描电子显微镜显示,包埋在致密的生物聚合物基质中的煮熟的淀粉从微球的外部到内部被逐层消化。与葡萄糖饮食相比,对微球测试饮食的血糖反应和胰岛素反应是中等的,但更重要的是,它们显示出延长的葡萄糖释放。结论:淀粉包裹的微球为研究缓慢消化的碳水化合物的餐后代谢后果提供了有用的工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号