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Synthetic design of growth factor sequestering extracellular matrix mimetic hydrogel for promoting in vivo bone formation

机译:生长因子螯合细胞外基质模拟水凝胶促进体内骨形成的合成设计

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Synthetic scaffolds that possess an intrinsic capability to protect and sequester sensitive growth factors is a primary requisite for developing successful tissue engineering strategies. Growth factors such as recombinant human bone morphogenetic protein-2 (rhBMP-2) is highly susceptible to premature degradation and to provide a meaningful clinical outcome require high doses that can cause serious side effects. We discovered a unique strategy to stabilize and sequester rhBMP-2 by enhancing its molecular interactions with hyaluronic acid (HA), an extracellular matrix (ECM) component. We found that by tuning the initial protonation state of carboxylic acid residues of HA in a covalently crosslinked hydrogel modulate BMP-2 release at physiological pH by minimizing the electrostatic repulsion and maximizing the Van der Waals interactions. At neutral pH, BMP-2 release is primarily governed by Fickian diffusion, whereas at acidic pH both diffusion and electrostatic interactions between HA and BMP-2 become important as confirmed by molecular dynamics simulations. Our results were also validated in an in vivo rat ectopic model with rhBMP-2 loaded hydrogels, which demonstrated superior bone formation with acidic hydrogel as compared to the neutral counterpart. We believe this study provides new insight on growth factor stabilization and highlights the therapeutic potential of engineered matrices for rhBMP-2 delivery and may help to curtail the adverse side effects associated with the high dose of the growth factor. (C) 2018 Elsevier Ltd. All rights reserved.
机译:具有固定和敏感敏感生长因子的内在能力的合成支架是开发成功组织工程策略的主要必要条件。重组人骨形态发生蛋白-2(RHBMP-2)等生长因子高易受过早降解的影响,并且提供有意义的临床结果需要高剂量,这可能导致严重的副作用。我们发现了通过提高与透明质酸(HA)的分子相互作用,细胞外基质(ECM)组分来稳定和螯合RHBMP-2的独特策略。我们发现,通过最小化静电排斥并最大化范德华相互作用,通过调节在生理pH下调节BMP-2在生理pH下的BMP-2释放的初始质子化状态。在中性pH下,BMP-2释放主要受Fickian扩散的控制,而在HA和BMP-2之间的酸性pH下,HA和BMP-2之间的静电相互作用如通过分子动力学模拟的确认变得重要。我们的结果也验证了具有RHBMP-2负载水凝胶的体内大鼠异位模型,其与中性对应相比,用酸性水凝胶显示出优异的骨形成。我们认为本研究为生长因子稳定提供了新的洞察力,并突出了RHBMP-2递送的工程矩阵的治疗潜力,并且可能有助于减少与生长因子的高剂量相关的不利副作用。 (c)2018年elestvier有限公司保留所有权利。

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