首页> 外文期刊>RSC Advances >Branched polyethyleneimine-assisted 3-carboxybenzoboroxole improved Wulff-type boronic acid functionalized magnetic nanoparticles for the specific capture of cis-diol-containing flavonoids under neutral conditions
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Branched polyethyleneimine-assisted 3-carboxybenzoboroxole improved Wulff-type boronic acid functionalized magnetic nanoparticles for the specific capture of cis-diol-containing flavonoids under neutral conditions

机译:支链聚乙烯亚胺辅助的3-羧基苯并硼唑改进了Wulff型硼酸官能化的磁性纳米粒子,用于在中性条件下特异性捕获含顺式二醇的类黄酮

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Flavonoids have shown a variety of biological activities such as antimicrobial, antibacterial, antifungal, antiviral, antiinflammatory, antitumor, antiatherogenic, and antihyperglycemic activities. A lot of important flavonoids contain cis -diols such as rutin (Ru), quercetin (Qu), luteolin (Lu), myricetin (Myr) and baicalein (Ba) and so on. It is necessary to establish a simple, low-cost and efficient purification method for cis -diol-containing flavonoids from plant extracts. Boronate affinity materials are able to reversibly bind the cis -diols via boronic acids by forming a five- or six-membered boronic cyclic ester in aqueous media. However, conventional boronate affinity materials have to be used in alkaline media, which can lead to the oxidation of cis -diols in compounds. In this study, the polyethyleneimine (PEI)-assisted 3-carboxybenzoboroxole-functionalized magnetic nanoparticles (MNPs) were prepared to achieve efficient capture of cis -diol-containing flavonoids under neutral conditions. Branched PEI was applied as a scaffold to amplify the number of boronic acid moieties, while 3-carboxybenzoboroxole, exhibiting high affinity and excellent water solubility toward flavonoids, was used as an affinity ligand. The prepared boronate affinity MNPs exhibited high binding capacity and fast binding kinetics (equilibrium in 3 min) under neutral conditions. In addition, the obtained boronate affinity MNPs exhibited high binding affinity ( K _(d) ≈ 10 ~(?4) M), low binding pH (pH ≥ 6.0) and tolerance of the interference to abundant sugars.
机译:类黄酮已显示出多种生物学活性,例如抗微生物,抗菌,抗真菌,抗病毒,抗炎,抗肿瘤,抗动脉粥样硬化和抗高血糖活性。许多重要的类黄酮都含有顺式二醇,如芦丁(Ru),槲皮素(Qu),木犀草素(Lu),杨梅素(Myr)和黄ical素(Ba)等。有必要建立一种简单,低成本,有效的从植物提取物中提取含顺式二醇类黄酮的方法。硼酸酯亲和材料能够通过在水性介质中形成五元或六元硼环酯而经由硼酸可逆地结合顺式二醇。但是,常规的硼酸酯亲和材料必须用于碱性介质中,这可能导致化合物中的顺式-二醇氧化。在这项研究中,聚乙烯亚胺(PEI)辅助的3-羧基苯并硼恶唑官能化的磁性纳米粒子(MNPs)的制备可在中性条件下有效捕获含顺式二醇的类黄酮。支链PEI被用作支架以扩增硼酸部分的数目,而表现出高亲和力和对黄酮类的优异水溶性的3-羧基苯并硼唑被用作亲和配体。制备的硼酸酯亲和性MNP在中性条件下显示出高结合能力和快速结合动力学(在3分钟内达到平衡)。另外,获得的硼酸酯亲和性MNP表现出高结合亲和性(K_(d)≈10〜(Δ4)M),低结合pH(pH≥6.0)和对丰富糖的干扰的耐受性。

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