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Sustained and controlled release of lipophilic drugs from a self-assembling amphiphilic peptide hydrogel

机译:自组装的两亲肽水凝胶持续控制脂溶性药物的释放

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摘要

Materials which undergo self-assembly to form supermolecular structures can provide alternative strategies to drug loading problems in controlled release application. RADA 16 is a simple and versatile self-assembling peptide with a designed structure formed of two distinct surfaces, one hydrophilic and one hydrophobic that are positioned such a well-ordered fashion allowing precise assembly into a predetermined organization. A “smart” architecture in nanostructures can represent a good opportunity to use RADA16 as a carrier system for hydrophobic drugs solving problems of drugs delivery. In this work, we have investigated the diffusion properties of Pindolol, Quinine and Timolol Maleate from RADA16 in PBS and in BSS-PLUS at 37 °C. A sustained, controlled, reproducible and efficient drug release has been detected for all the systems, which has allow to understand the dependence of release kinetics on the physicochemical characteristics of RADA16 structural and chemical properties of the selected drugs and the nature of solvents used. For the analysis various physicochemical characterization techniques were used in order to investigate the state of the peptide before and after the drugs were added. Not only does RADA16 optimise drug performance, but it can also provide a solution for drug delivery issues associated with lipophilic drugs.
机译:自组装形成超分子结构的材料可以为控释应用中的载药问题提供替代策略。 RADA 16是一种简单而通用的自组装肽,其设计结构由两个不同的表面形成,一个亲水性表面和一个疏水性表面以一种有序排列的方式定位,从而可以精确组装成预定的结构。纳米结构中的“智能”架构可以为将RADA16用作疏水性药物的载体系统提供一个很好的机会,从而解决药物输送的问题。在这项工作中,我们研究了RADA16中的品脱洛尔,奎宁和马来酸Timolol在37°C下在PBS和BSS-PLUS中的扩散特性。已为所有系统检测到持续,可控制,可重现和有效的药物释放,这使您能够了解释放动力学对所选药物RADA16的理化特性,结构和化学性质以及所用溶剂性质的依赖性。为了进行分析,使用了各种物理化学表征技术以研究在添加药物之前和之后肽的状态。 RADA16不仅可以优化药物性能,而且还可以为与亲脂性药物相关的药物输送问题提供解决方案。

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