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南极冰藻多肽稳定的硒纳米粒子的合成、表征、生物活性及体外消化。

Synthesis, characterization, biological activity, and in vitro digestion of selenium nanoparticles stabilized by Antarctic ice microalgae polypeptide.

机构信息

School of Pharmacy, Guangdong Pharmaceutical University, China.

School of Pharmacy, Guangdong Pharmaceutical University, China; Guangdong Provincial Key Laboratory of Advanced Drug Delivery, Guangdong Provincial Engineering Center of Topical Precise Drug Delivery System, Guangdong Pharmaceutical University, China; Guangdong Dongshenglin Pharmaceutical Co., Ltd, China; Yunfu Traditional Chinese Medicine Hospital, China.

出版信息

Bioorg Chem. 2023 Dec;141:106884. doi: 10.1016/j.bioorg.2023.106884. Epub 2023 Sep 26.

Abstract

A new type of uniformly dispersed selenium nanoparticles (SeNPs) was prepared using Antarctic ice microalgae polypeptides (AIMP) as the stabilizer and dispersant. Different characterization techniques and tests show that the SeNPs are effectively combined with AIMP through physical adsorption and hydrogen bonding to form a more stable structure. Orange-red, zero-valence, amorphous, and spherical AIMP-SeNPs with a diameter of 52.07 ± 1.011 nm and a zeta potential of -41.41 ± 0.882 mV were successfully prepared under the optimal conditions. The AIMP-SeNPs had significantly higher DPPH, ABTS and hydroxyl radicals scavenging abilities compared with AIMP and NaSeO, and prevented the growth of both Gram-negative and Gram-positive bacteria by disrupting the integrity of cell walls, cell membranes and mitochondrial membranes. The AIMP-SeNPs had higher gastrointestinal stability compared with SeNPs. Thus, this research highlights the crucial role of AIMP as a biopolymer framework in the dispersion, stabilization, and size management of SeNPs and concludes that AIMP-SeNPs can be exploited as a potent antioxidant supplement and antibacterial substance in foods and medicine.

摘要

采用南极冰藻多肽(AIMP)作为稳定剂和分散剂,制备了一种新型的均匀分散硒纳米粒子(SeNPs)。不同的表征技术和测试表明,SeNPs 通过物理吸附和氢键与 AIMP 有效结合,形成更稳定的结构。在最佳条件下,成功制备出了直径为 52.07±1.011nm、Zeta 电位为-41.41±0.882mV 的橙红色、零价、非晶态、球形 AIMP-SeNPs。与 AIMP 和 NaSeO 相比,AIMP-SeNPs 具有更高的 DPPH、ABTS 和羟基自由基清除能力,通过破坏细胞壁、细胞膜和线粒体膜的完整性来阻止革兰氏阴性菌和革兰氏阳性菌的生长。AIMP-SeNPs 的胃肠道稳定性高于 SeNPs。因此,本研究强调了 AIMP 作为生物聚合物框架在分散、稳定和尺寸管理 SeNPs 中的关键作用,并得出结论,AIMP-SeNPs 可以作为一种有效的抗氧化补充剂和抗菌物质,应用于食品和医药领域。

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