Jiangsu Provincial Key Lab for the Chemistry and Utilization of Agro-Forest Biomass, Jiangsu Key Lab of Biomass-Based Green Fuels and Chemicals, Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, College of Chemical Engineering, Nanjing Forestry University, Nanjing 210037, China.
Molecules. 2020 Oct 10;25(20):4613. doi: 10.3390/molecules25204613.
Polyphenols are micronutrients that are widely present in human daily diets. Numerous studies have demonstrated their potential as antioxidants and anti-inflammatory agents, and for cancer prevention, heart protection and the treatment of neurodegenerative diseases. However, due to their vulnerability to environmental conditions and low bioavailability, their application in the food and medical fields is greatly limited. Nanoformulations, as excellent drug delivery systems, can overcome these limitations and maximize the pharmacological effects of polyphenols. In this review, we summarize the biological activities of polyphenols, together with systems for their delivery, including phospholipid complexes, lipid-based nanoparticles, protein-based nanoparticles, niosomes, polymers, micelles, emulsions and metal nanoparticles. The application of polyphenol nanoparticles in food and medicine is also discussed. Although loading into nanoparticles solves the main limitation to application of polyphenolic compounds, there are some concerns about their toxicological safety after entry into the human body. It is therefore necessary to conduct toxicity studies and residue analysis on the carrier.
多酚是广泛存在于人类日常饮食中的微量营养素。大量研究表明,它们具有抗氧化和抗炎作用,可预防癌症、保护心脏和治疗神经退行性疾病。然而,由于它们对环境条件的脆弱性和低生物利用度,其在食品和医疗领域的应用受到了极大限制。纳米制剂作为优秀的药物传递系统,可以克服这些限制,最大限度地发挥多酚的药理作用。在这篇综述中,我们总结了多酚的生物学活性,以及它们的传递系统,包括磷脂复合物、基于脂质的纳米粒子、基于蛋白质的纳米粒子、囊泡、聚合物、胶束、乳液和金属纳米粒子。还讨论了多酚纳米粒子在食品和医学中的应用。虽然将多酚载入纳米粒子中解决了多酚化合物应用的主要限制,但人们对它们进入人体后的毒理学安全性仍存在一些担忧。因此,有必要对载体进行毒性研究和残留分析。