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首页> 外文期刊>Journal of the American College of Nutrition >New Frontiers in Fibers: Innovative and Emerging Research on the Gut Microbiome and Bone Health
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New Frontiers in Fibers: Innovative and Emerging Research on the Gut Microbiome and Bone Health

机译:纤维的新边疆:肠道微生物组和骨骼健康的创新和新兴研究

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摘要

The complex interactions between the diet, gut microbiome, and host characteristics that provide a functional benefit to the host are an area of great interest and current exploration in the nutrition and health science community. New technologies are available to assess mechanisms that may explain these functional benefits to the host. One emerging functional benefit from changes in the gut microbiome is increased calcium absorption, increased calcium retention, and improved indices of bone health. Prebiotic fibers enhance microbial fermentation in the gut, providing an ecological advantage to specific nonpathogenic bacteria that have the ability to modify an individual's metabolic potential. Fermentation of fibers also leads to increased production of short-chain fatty acids. These changes have been positively correlated with increased calcium absorption in humans and increased bone density and strength in animal models. Dietary fibers may offer an additional means to enhance calcium absorption with the possibility of stimulating the gut microbiome to ultimately influence bone health. This hot topic perspectives piece reviews innovative technologies that can be used to assess the impact of prebiotic fibers on the gastrointestinal tract (GIT) as well as the potential mechanisms that may explain their health effects on bone. Validated in vitro models used to measure alterations in the gut microbiome, as well as animal and clinical studies assessing the role of prebiotic fibers on calcium absorption and bone indices through alternations in the gut microbiome, are presented.
机译:为主持人提供功能益处的饮食,肠道微生物组和宿主特征之间的复杂相互作用是营养和健康科学界的巨大兴趣和目前探索的领域。可以评估新技术可以评估可能向主人解释这些功能效益的机制。从肠道微生物组的变化的一个新兴功能益处增加了钙吸收,钙潴留增加和改进的骨骼健康索引。益生元纤维增强肠道中的微生物发酵,为特定的非致病细菌提供了生态的优势,具有改变个体代谢潜力的能力。纤维的发酵还导致增加短链脂肪酸的产生。这些变化与人类的钙吸收增加以及动物模型中增加的骨密度和强度呈正相关。膳食纤维可以提供额外的方法,以提高钙吸收,以刺激肠道微生物组最终影响骨骼健康。这种热门话题透视措施介绍可用于评估益生元纤维对胃肠道(Git)的影响以及可能解释其对骨骼的健康影响的潜在机制的创新技术。鉴定了用于测量肠道微生物组的改变的体外模型,以及评估益生元纤维在通过肠道微生物组中的交替的钙吸收和骨头指数的作用的动物和临床研究。

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