Whole grain cereals: the potential roles of functional components in human health
Huiqin Guo, Haili Wu, Amin Sajid, Zhuoyu Li
Critical Reviews in Food Science and Nutrition
Abstract
Whole grain cereals have been the basis of human diet since ancient times. Due to rich in a variety of unique bioactive ingredients, they play an important role in human health. This review highlights the contents and distribution of primary functional components and their health effects in commonly consumed whole grain cereals, especially dietary fiber, protein, polyphenols, and alkaloids. In general, cereals exert positive effects in the following ways: 1) Restoring intestinal flora diversity and increasing intestinal short-chain fatty acids. 2) Regulating plasma glucose and lipid metabolism, thereby the improvement of obesity, cardiovascular and cerebrovascular diseases, diabetes, and other chronic metabolic diseases. 3) Exhibiting antioxidant activity by scavenging free radicals. 4) Preventing gastrointestinal cancer <i>via</i> the regulation of classical signaling pathways. In summary, this review provides a scientific basis for the formulation of whole-grain cereals-related dietary guidelines, and guides people to form scientific dietary habits, so as to promote the development and utilization of whole-grain cereals.
Extracted Claims
6 claims extracted from this paper into the knowledge graph
whole grain cereals regulate plasma glucose and lipid metabolism
“Regulating plasma glucose and lipid metabolism, thereby the improvement of obesity, cardiovascular and cerebrovascular diseases, diabetes, and other chronic metabolic diseases.”
whole grain cereals improve obesity, cardiovascular and cerebrovascular diseases, diabetes, and other chronic metabolic diseases
“Regulating plasma glucose and lipid metabolism, thereby the improvement of obesity, cardiovascular and cerebrovascular diseases, diabetes, and other chronic metabolic diseases.”
whole grain cereals prevent gastrointestinal cancer via regulation of classical signaling pathways
“Preventing gastrointestinal cancer <i>via</i> the regulation of classical signaling pathways.”