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Synthesis of an erodible biomimetic hydrogel for drug delivery using native chemical ligation

机译:使用天然化学连接合成可侵蚀的仿生水凝胶,用于药物输送

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摘要

Hydrogels are hydrophilic, three dimensional polymers that imbibe large quantities of water while remaining insoluble in aqueous solutions due to chemical or physical cross-linking. The polymers swell in water or biological fluids, immobilizing the bioactive agent, leading to drug release in a well-defined specific manner. Thus the hydrogels’ elastic properties, swellability and biocompatibility make them excellent formulations for drug delivery. Currently, many drug potencies and therapeutic effects are limited or otherwise reduced because of the partial degradation that occurs before the administered drug reaches the desired site of action. On the other hand, sustained release medications release drugs continually, rather than providing relief of symptoms and protection solely when necessary. In fact, it would be much better if drugs could be administered in a manner that precisely matches physiological needs at desired times and at the desired site (site specific targeting). There is therefore an unmet need to develop controlled drug delivery systems especially for delivery of peptide and protein bound drugs. The purpose of this project is to produce hydrogels for structural drug delivery and time-dependent sustained release of drugs (bioactive agents). We use an innovative polymerisation strategy based on native chemical ligation (NCL) to covalently cross-link polymers to form hydrogels. When mixed in aqueous solution, four armed (polyethylene glycol) amine (PEG-4A) end functionalised with thioester and four branched Nterminal cysteine peptide dendrimers spontaneously conjugated to produce biomimetic hydrogels. These hydrogels showed superior resistance to shear stress compared to an equivalent PEG macromonomer system and were shown to be proteolytically degradable with concomitant release of a model payload molecule. This is the first report of a peptide dendrimers/PEG macromonomer approach to hydrogel production and opens up the prospect of facile hydrogel synthesis together with tailored payload release.
机译:水凝胶是亲水的三维聚合物,可吸收大量的水,同时由于化学或物理交联而不溶于水溶液。聚合物在水或生物流体中溶胀,固定了生物活性剂,导致以明确的特定方式释放药物。因此,水凝胶的弹性,可溶胀性和生物相容性使其成为用于药物输送的极佳配方。当前,由于在所施用的药物到达所需作用部位之前发生部分降解,许多药物的功效和治疗效果受到限制或降低。另一方面,持续释放药物持续释放药物,而不是仅在必要时缓解症状和提供保护。实际上,如果能以在所需时间和所需部位精确匹配生理需求的方式(部位特异性靶向)给药,效果会更好。因此,存在对开发受控的药物递送系统,特别是用于递送肽和蛋白质结合的药物的未满足的需求。该项目的目的是生产用于结构化药物递送和时间依赖性药物(生物活性剂)持续释放的水凝胶。我们使用基于天然化学连接(NCL)的创新聚合策略来共价交联聚合物以形成水凝胶。当在水溶液中混合时,有四个末端的(聚乙二醇)胺(PEG-4A)被硫酯官能化,并且四个分支的N末端半胱氨酸肽树状聚合物自发地共轭以生成仿生水凝胶。与等效的PEG大分子单体体系相比,这些水凝胶对剪切应力具有出色的抵抗力,并且在伴随模型有效负载分子的释放时,可以被蛋白水解降解。这是肽树状聚合物/ PEG大分子单体生产水凝胶方法的首次报道,并为方便的水凝胶合成以及量身定制的有效负载释放开辟了前景。

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  • 作者

    Fernandes Wren Austin;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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