首页> 美国卫生研究院文献>Antioxidants >Nanoencapsulation of Anthocyanins from Red Cabbage (Brassica oleracea L. var. Capitata f. rubra) through Coacervation of Whey Protein Isolate and Apple High Methoxyl Pectin
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Nanoencapsulation of Anthocyanins from Red Cabbage (Brassica oleracea L. var. Capitata f. rubra) through Coacervation of Whey Protein Isolate and Apple High Methoxyl Pectin

机译:通过分离乳清蛋白和苹果高甲氧基果胶的凝聚对红甘蓝 (Brassica oleracea L. var. Capitata f. rubra) 花青素进行纳米包埋

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摘要

Encapsulation is a valuable strategy to protect and deliver anthocyanins (ACNs), phenolic compounds with outstanding antioxidant capacity but limited stability. In this study, coacervation was used to encapsulate an ACN-rich red cabbage extract (RCE). Two agri-food by-product polymers, whey protein isolate (WPI) and apple high-methoxyl pectin (HMP), were blended at pH 4.0 in a specific ratio to induce the formation of nanoparticles (NPs). The process optimisation yielded a monodispersed population (PDI < 0.200) of negatively charged (−17 mV) NPs with an average diameter of 380 nm. RCE concentration influenced size, charge, and antioxidant capacity in a dose-dependent manner. NPs were also sensitive to pH increases from 4 to 7, showing a progressive breakdown. The encapsulation efficiency was 30%, with the retention of ACNs within the polymeric matrix being influenced by their chemical structure: diacylated and/or C3-triglucoside forms were more efficiently encapsulated than monoacylated C3-diglucosides. In conclusion, we report a promising, simple, and sustainable method to produce monodispersed NPs for ACN encapsulation and delivery. Evidence of differential binding of ACNs to NPs, dependent on specific acylation/glycosylation patterns, indicates that care must be taken in the choice of the appropriate NP formulation for the encapsulation of phenolic compounds.
机译:包埋是保护和递送花青素 (ACN) 的一种有价值的策略,花青素 (ACN) 是酚类化合物,具有出色的抗氧化能力,但稳定性有限。在本研究中,凝聚用于包埋富含 ACN 的红甘蓝提取物 (RCE)。两种农业食品副产品聚合物,乳清分离蛋白 (WPI) 和苹果高甲氧基果胶 (HMP),在 pH 4.0 下以特定比例混合,以诱导纳米颗粒 (NP) 的形成。工艺优化产生了平均直径为 380 nm 的带负电荷 (-17 mV) NP 的单分散群体 (PDI < 0.200)。RCE 浓度以剂量依赖性方式影响大小、电荷和抗氧化能力。NPs 对 pH 值从 4 增加到 7 也很敏感,表现出进行性分解。包封效率为 30%,ACN 在聚合物基质中的保留受其化学结构的影响:二酰化和/或 C3-三葡萄糖苷形式比单酰化 C3-二葡萄糖苷更有效地包封。总之,我们报道了一种有前途、简单且可持续的方法来生产用于 ACN 封装和递送的单分散 NP。ACN 与 NP 的差异结合取决于特定的酰化/糖基化模式的证据表明,在选择合适的 NP 制剂来封装酚类化合物时必须小心。

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