[ADMET Analysis of Amorphous β-Carotene and Its Usefulness Evaluation].

IF 0.3 4区 医学 Q4 PHARMACOLOGY & PHARMACY
Shinsaku Nakagawa
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引用次数: 0

Abstract

In recent years, functional foods have attracted increasing attention due to growing health consciousness. When functional food ingredients are poorly water-soluble, they largely fail to be absorbed due to their low solubility in the digestive tract, limiting their ability to exert their functions. To develop poorly water-soluble compounds into viable functional food ingredients, it is important to increase their gastrointestinal absorption so that they can fully exert their functions, and to ensure their safety and efficacy through ADMET research. β-Carotene exerts physiological activities including antioxidant effects, and functions as a source of vitamin A, but it is completely insoluble in water, so it is poorly absorbed from the digestive tract, rendering it difficult to use efficiently as a functional food ingredient. To overcome this problem, we are conducting research on drug delivery system to improve β-carotene solubility and thereby improve its digestive absorption by applying our unique amorphous solid dispersion production technology. To date, we have produced amorphous solid dispersions with dramatically improved water solubility by adding polymers and emulsifiers to β-carotene and kneading these mixtures under heat. The resultant amorphous solid dispersion showed unprecedentedly high gastrointestinal absorption, enhanced inhibition of allergic dermatitis, and enhanced amelioration of cognitive impairment. No major safety issues associated with long-term continuous administration were observed. In this paper, we introduce our efforts to effectively deliver poorly water-soluble compounds such as β-carotene in functional foods.

[无定形β-胡萝卜素的ADMET分析及其有效性评价]。
近年来,由于健康意识的增强,功能食品越来越受到人们的关注。当功能性食品成分的水溶性较差时,由于其在消化道中的溶解度较低,很大程度上无法被吸收,限制了其功能的发挥。为了将水溶性差的化合物开发成为可行的功能性食品成分,必须通过ADMET研究增加其胃肠道吸收,使其充分发挥其功能,并确保其安全性和有效性。β-胡萝卜素具有包括抗氧化作用在内的生理活性,并作为维生素a的来源,但它完全不溶于水,因此它很难被消化道吸收,因此很难有效地用作功能性食品成分。为了克服这一问题,我们正在研究利用我们独特的无定形固体分散体生产技术,提高β-胡萝卜素的溶解度,从而提高其消化吸收的给药系统。到目前为止,我们已经通过在β-胡萝卜素中加入聚合物和乳化剂并在加热下揉制这些混合物,生产出了具有显著改善水溶性的无定形固体分散体。由此产生的无定形固体分散体显示出前所未有的高胃肠道吸收,增强了对过敏性皮炎的抑制,并增强了对认知障碍的改善。没有观察到与长期持续给药相关的主要安全问题。在本文中,我们介绍了我们在功能性食品中有效递送β-胡萝卜素等低水溶性化合物的努力。
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
0.60
自引率
0.00%
发文量
169
审稿时长
1 months
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