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Biodegradable Polymer Hydrogels Based in Sorbitol and Citric Acid for Controlled Release of Bioactive Substances from Plants (Polyphenols)

机译:基于山梨糖醇和柠檬酸的可生物降解的聚合物水凝胶,用于来自植物的生物活性物质(多酚)

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Background: Polyphenols are secondary metabolites of plants which are generally associated with the protection against ultraviolet radiation and aggression by pathogens. Epidemiological studies suggest that long term consumption of diets rich in plant polyphenols offer protection against different diseases with positive effects in the context of human health. Objective: The objective of this work was to develop biodegradable polymer hydrogels (HGs) based in sorbitol and citric acid for controlled release of bioactive substances from plants (specifically strictinin). Method: HGs were synthesized at two relation sorbitol:citric acid (1:1 and 1:2) and characterized by ATRFTIR. In addition, it was determined its water absorption capacity by tea bag method. Hydrolysis of strictinin was studied at different pH and release of strictinin was monitored by UV-vis. Antimicrobial activity of strictinin in solution and in the HGs was tested against E. coli and S. aureus. Results: HGs can be synthesized from sorbitol and citric acid by free-solvent synthesis. These HGs can be used for the release of strictinin at acid pH without changes in its chemical structure; at alkaline pH, hydrolysis processes affect its strictinin chemical structure. Diffusion of strictinin is slower in HG 1:1 than HG 1:2, being the released quantity by diffusion in both cases are the same. In addition, only 29.8 % of strictinin can be release by diffusion and, in consequence, the remaining strictinin must be released by other mechanism. Conclusion: Results evidence that E. coli and S. aureus are sensitive to low strictinin concentrations (2.43 mgL~(-1)) released from HGs.
机译:背景:多酚是植物的次级代谢物,其通常与紫外线辐射和通过病原体的侵略保护相关。流行病学研究表明,富含植物多酚富含饮食的长期消费为人类健康背景下具有积极影响的不同疾病提供保护。目的:这项工作的目的是在山梨糖醇和柠檬酸中开发可生物降解的聚合物水凝胶(HGS),用于来自植物的生物活性物质(特别是术语)的生物活性物质的控制释放。方法:Hgs在两种关系山梨糖醇中合成:柠檬酸(1:1和1:2),其特征在于Atrftir。此外,通过茶袋法确定了吸水能力。在不同的pH下研究了STRECTININ的水解,通过UV-Vis监测术后释放术。在溶液中和HGS中的抗菌活性对E. Coli和Aureus进行了测试。结果:通过自由溶剂合成,可以从山梨糖醇和柠檬酸合成HGS。这些HGS可用于酸pH释放酸胰素,而无需改变其化学结构;在碱性pH值下,水解过程影响其狭窄的化学结构。施工素的扩散在Hg 1:1中较慢,而不是Hg 1:2,两种情况下的扩散是相同的释放量。此外,只有29.8%的术术可以通过扩散释放,因此,必须通过其他机制释放剩余的狭窄素。结论:结果证据表明,大肠杆菌和金黄色葡萄球菌对Hgs释放的低铅素浓度(2.43mgl〜(-1))敏感。

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