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Albumin Hydrogels Formed by Electrostatically Triggered Self-Assembly and Their Drug Delivery Capability

机译:静电触发的自组装形成的白蛋白水凝胶及其药物传递能力

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摘要

Biological hydrogels are fundamentally biocompatible and have intrinsic similarities to extracellular matrices in medical applications and drug delivery systems. Herein wc demonstrate the ability to form drug-eluting protein hydrogels using a novel mechanism that involves the electrostatically triggered partial denaturation and self-assembly of the protein via changes in pH. Partial denaturation increases the protein's solvent exposed hydrophobic surface area, which then drives self-assembly of the protein into a hydrogel within 10 min at 37 °C. We describe the properties of an albumin hydrogel formed by this mechanism. Intrinsic drug binding properties of albumin to all-trans retinoic acid (atRA) are conserved through the partial denaturation process, as confirmed by fluorescence quenching. atRA released from the hydrogel inhibited smooth muscle cell migration as per an in vitro scratch wound assay. Atomistic molecular dynamics and potential of mean force calculations show the preservation and potential creation of new atRA binding sites with a binding energy of -41 kJ/mol. The resulting hydrogel is also biocompatible and exhibits rapid postgelation degradation after its implantation in vivo. This interdisciplinary work provides a new tool for the development of biocompatible protein hydrogel drug delivery systems.
机译:生物水凝胶从根本上说具有生物相容性,在医学应用和药物输送系统中与细胞外基质具有内在的相似性。本文证明了使用新型机制形成药物洗脱蛋白水凝胶的能力,该机制涉及通过pH值的变化引发蛋白质的静电触发部分变性和自组装。部分变性会增加蛋白质暴露在溶剂中的疏水表面积,然后在37°C的10分钟内驱动蛋白质自组装成水凝胶。我们描述了通过这种机制形成的白蛋白水凝胶的性质。白蛋白与全反式维甲酸(atRA)的内在药物结合特性通过部分变性过程得以保留,这一点已通过荧光猝灭证实。根据体外刮伤试验,从水凝胶释放的atRA抑制了平滑肌细胞迁移。原子分子动力学和平均力计算的潜力表明,结合能为-41 kJ / mol的新atRA结合位点得以保留和潜在创造。所得的水凝胶也是生物相容的,并且在体内植入后显示出快速的后凝胶降解。这项跨学科的工作为开发生物相容性蛋白水凝胶药物递送系统提供了新工具。

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