Nano-targeted delivery system: a promising strategy of anthocyanin encapsulation for treating intestinal inflammation.

IF 7.3 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY
Hao Zhong, Xin Luo, Abdullah, Xiaofeng Liu, Muhammad Hussain, Rongfa Guan
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引用次数: 0

Abstract

Anthocyanins are natural flavonoids derived from plants, widely recognized for their health-promoting effects, specifically to treat inflammatory bowel disease (Crohn's disease and ulcerative colitis). However, certain limitations are associated with their use, including instability, low solubility and permeability, poor gastrointestinal digestion, and low bioavailability. In this review, nano-carriers (e.g., liposome, polymersome, exosome, halloysite nanotubes, dendrimer, and nano-niosome, etc.) were summarized as anthocyanins delivery vehicles to treat inflammatory bowel disease. Recent progress on emerging strategies involved surface functionalization, responsive release, magnetic orientation, and self-assembly aggregation to address intestinal inflammation through nano-carriers and potential mechanisms were discussed. Anthocyanins, water-soluble pigments linked by glycoside bonds have attracted attention to alleviate intestinal inflammation related diseases. Anthocyanins can address intestinal inflammation by exerting their health beneficial effects such as anti-oxidative, anti-inflammatory, regulating the intestinal flora, and promoting apoptosis. Moreover, nano-carriers were discussed as oral delivery system for maximized bioefficacy of anthocyanins and to address concerns related to their low solubility and permeability, poor gastrointestinal metabolism, and low bioavailability were discussed. A future perspective is proposed concerning anthocyanin-loaded nano-carriers, different strategies to improve their efficacy, and developing functional food to treat intestinal inflammation.

纳米靶向递送系统:花青素包埋治疗肠道炎症的一种有前景的策略。
花青素是从植物中提取的天然类黄酮,被广泛认为具有促进健康的作用,特别是治疗炎症性肠病(克罗恩病和溃疡性结肠炎)。然而,它们的使用有一定的局限性,包括不稳定性、低溶解度和渗透性、胃肠道消化不良和低生物利用度。本文综述了纳米载体(如脂质体、聚合体、外泌体、高岭土纳米管、树状大分子、纳米niosome等)作为花青素递送载体治疗炎症性肠病的研究进展。讨论了纳米载体对肠道炎症的表面功能化、响应释放、磁性取向和自组装聚集等新策略的最新进展及其潜在机制。花青素是一种由糖苷键连接的水溶性色素,已引起人们对肠道炎症相关疾病的关注。花青素可通过发挥其抗氧化、抗炎、调节肠道菌群、促进细胞凋亡等有益健康的作用来治疗肠道炎症。此外,还讨论了纳米载体作为口服给药系统,以最大限度地提高花青素的生物功效,并讨论了其溶解度和渗透性低、胃肠道代谢不良和生物利用度低的问题。未来的研究方向是花青素纳米载体、提高其功效的不同策略以及开发治疗肠道炎症的功能性食品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
22.60
自引率
4.90%
发文量
600
审稿时长
7.5 months
期刊介绍: Critical Reviews in Food Science and Nutrition serves as an authoritative outlet for critical perspectives on contemporary technology, food science, and human nutrition. With a specific focus on issues of national significance, particularly for food scientists, nutritionists, and health professionals, the journal delves into nutrition, functional foods, food safety, and food science and technology. Research areas span diverse topics such as diet and disease, antioxidants, allergenicity, microbiological concerns, flavor chemistry, nutrient roles and bioavailability, pesticides, toxic chemicals and regulation, risk assessment, food safety, and emerging food products, ingredients, and technologies.
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