Multiple Antioxidative and Bioactive Molecules of Oats ( L.) in Human Health.

Antioxidants (Basel)

Department of Biological Sciences, SungKyunKwan University, Suwon 16419, Gyunggi-Do, Korea.

Published: September 2021

AI Article Synopsis

  • * Key components in oats, including β-glucan and progladins, help to lower cholesterol, regulate blood sugar, and reduce inflammation, contributing to overall health and skin wellness.
  • * The review emphasizes the functional aspects of oats beyond nutrition, highlighting their potential in self-medication and future health developments, particularly for hormone-related issues in women.

Article Abstract

Oats ( L.) are rich in protein, fiber, calcium, vitamins (B, C, E, and K), amino acids, and antioxidants (beta-carotene, polyphenols, chlorophyll, and flavonoids). β-glucan and avenanthramides improve the immune system, eliminate harmful substances from the body, reduce blood cholesterol, and help with dietary weight loss by enhancing the lipid profile and breaking down fat in the body. β-glucan regulates insulin secretion, preventing diabetes. Progladins also lower cholesterol levels, suppress the accumulation of triglycerides, reduce blood sugar levels, suppress inflammation, and improve skin health. Saponin-based avanacosidase and functional substances of flavone glycoside improve the immune function, control inflammation, and prevent infiltration in the skin. Moreover, lignin and phytoestrogen prevent hormone-related cancer and improve the quality of life of postmenopausal women. Sprouted oats are rich in saponarin in detoxifying the liver. The literatures have been reviewed and the recent concepts and prospects have been summarized with figures and tables. This review discusses recent trends in research on the functionality of oats rather than their nutritional value with individual immunity for self-medication. The oat and its acting components have been revisited for the future prospect and development of human healthy and functional sources.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8471765PMC
http://dx.doi.org/10.3390/antiox10091454DOI Listing

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