4.7 Article

Nanotechnology as a Tool to Mitigate the Effects of Intestinal Microbiota on Metabolization of Anthocyanins

期刊

ANTIOXIDANTS
卷 11, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/antiox11030506

关键词

anthocyanins; antioxidant activity; biotransformation; controlled delivery; intestinal bacteria; metabolism; nanoencapsulation; phenolic compounds; oxidative stress; polysaccharide-based; protein-based; lipid-based

资金

  1. Brazilian National Council for Scientific and Technological Development (CNPq) [142374/2018-0, 2012/23970-2, 2013/07914-8, 2019/11816-8]
  2. SAo Paulo Research Foundation (FAPESP)

向作者/读者索取更多资源

Anthocyanins are important phenolic compounds responsible for pigment in plants. Regular intake of anthocyanins can reduce the risk of diseases in humans. However, molecular instability and digestion process can lead to low absorption and bioavailability of anthocyanins. Studies have been conducted to find alternatives to improve stability and protect against degradation by intestinal microbiota, including the use of nanotechnology systems.
Anthocyanins are an important group of phenolic compounds responsible for pigmentation in several plants. For humans, a regular intake is associated with a reduced risk of several diseases. However, molecular instability reduces the absorption and bioavailability of these compounds. Anthocyanins are degraded by external factors such as the presence of light, oxygen, temperature, and changes in pH ranges. In addition, the digestion process contributes to chemical degradation, mainly through the action of intestinal microbiota. The intestinal microbiota has a fundamental role in the biotransformation and metabolization of several dietary compounds, thus modifying the chemical structure, including anthocyanins. This biotransformation leads to low absorption of intact anthocyanins, and consequently, low bioavailability of these antioxidant compounds. Several studies have been conducted to seek alternatives to improve stability and protect against intestinal microbiota degradation. This comprehensive review aims to discuss the existing knowledge about the structure of anthocyanins while discussing human absorption, distribution, metabolism, and bioavailability after the oral consumption of anthocyanins. This review will highlight the use of nanotechnology systems to overcome anthocyanin biotransformation by the intestinal microbiota, pointing out the safety and effectiveness of nanostructures to maintain molecular stability.

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