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Synthesis, Characterization, and Evaluation of Radical Scavenging Ability of Ellagic Acid-Loaded Nanogels

机译:鞣酸碱型纳米凝胶的自由基清除能力的合成,表征和评价

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摘要

Ellagic acid (EA), a potential antioxidant phytochemical has low aqueous solubility and bioavailability. In this paper, encapsulation of ellagic acid has been carried out into the biodegradable disulfide crosslinked poly (ethylene glycol) PEO-based nanogels synthesized via AGET (activator generated electron transfer) ATRP (atom transfer radical polymerization), and their radical scavenging ability was evaluated. The encapsulation of the EA was carried out at two drug loading percentages, that is, 10 and 20 wt.% of the nanogels. 1,1-Diphenyl-2-picryldrazyl (DPPH) assay was utilized in order to assess the radical scavenging ability of the ellagic acid-loaded nanogels. A drug-loading level of about 2.5 wt.% was achieved with encapsulation efficiency of about 25% at 10 wt.% of the EA w.r.t nanogels, which was found to increase to about 4.7 wt.% with decreased encapsulation efficiency of 23.5% as EA content was increased to 20wt.% of the nanogels. Ellagic acid loading was found to be accompanied with increase in the size of the nanogels from 144.6±39.52 nm for neat nanogels to 217.8±105.5 and 633±160.1 nm at 2.5 and 4.7 wt.% drug loading level. The nanogels were found to be capable of scavenging radicals and biocompatible on human cervical cancer cell lines (HeLa cells) at appropriate concentrations.
机译:鞣酸(EA),潜在的抗氧化植物化学物质具有低水溶性和生物利用度。在本文中,已经在可生物降解的二硫化物交联聚(乙二醇)对基于基于乙二醇的基于乙二醇的纳米凝胶中,通过Aget(活化剂产生的电子转移)ATRP(原子传递自由基聚合),评估其自由基清除能力。 EA的封装在两种药物加载百分比中进行,即10和20重量%的纳米凝胶。利用1,1-二苯基-2-PicryLazyl(DPPH)测定以评估鞣果酸纳米凝胶的自由基清除能力。约2.5重量%的药物负载水平,通过包封效率为约25%,10重量%,EA WRT纳米凝胶的百分比,该含量增加至约4.7重量%。%降低封装效率为23.5% EA含量增加到20wt。纳米凝胶的百分比。发现鞣花酸负荷伴随着纳米凝胶的尺寸增加,齐颗纳米凝胶为217.8±105.5和633±160.1nm,在2.5和4.7重量%。%药物负载水平。发现纳米凝胶能够以适当浓度在人宫颈癌细胞系(HeLa细胞)上清除自由基和生物相容性。

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