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Supramolecular poly(acrylic acid)/F127 hydrogel with hydration-controlled nitric oxide release for enhancing wound healing

机译:超分子聚(丙烯酸)/ F127水凝胶,用于增强伤口愈合的水合控制的一氧化氮释放

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Topical nitric oxide (NO) delivery has been shown to accelerate wound healing. However, delivering NO to wounds at appropriate rates and doses requires new biomaterial-based strategies. Here, we describe the development of supramolecular interpolymer complex hydrogels comprising PEO-PPO-PEO (F127) micelles embedded in a poly(acrylic acid) (PAA) matrix, with S-nitrosoglutathione (GSNO) molecules dissolved in the hydrophilic domain. We show that PAA:F127/GSNO hydrogels start releasing NO upon hydration at rates controlled by their rates of water absorption. SAXS measurements indicate that the supramolecular structure of the hydrogels retains long-range order domains of F127 micelles. The PAA/F1227 hydrogels displayed dense morphologies and reduced rates of hydration. The NO release rates remain constant over the first 200 min, are directly correlated with the hydration rates of the PAA:F127/ GSNO hydrogels, and can be modulated in the range of 40 nmol/g h to 1.5 mu mol/g h by changing the PAA: F127 mass ratio. Long-term NO-release profiles over 5 days are governed by the first-order exponential decay of GSNO, with half-lives in the range of 0.5-3.4 days. A preliminary in vivo study on full-thickness excisional wounds in mice showed that topical NO release from the PAA:F127/GSNO hydrogels is triggered by exudate absorption and leads to increased angiogenesis and collagen fiber organization, as well as TGF-beta, IGF-1, SDF-1, and IL-10 gene expressions in the cicatricial tissue. In summary, these results suggest that hydration-controlled NO release from topical PAA:F127/GSNO hydrogels is a potential strategy for enhancing wound healing.
机译:局部一氧化氮(NO)递送已显示加速伤口愈合。然而,以适当的速率和剂量缠绕伤口需要新的生物材料的策略。这里,我们描述了嵌入聚(丙烯酸)(PAA)基质中的PEO-PPO-PEO(F127)胶束的超分子互聚合物络合物水凝胶的发展,其中S-亚硝基肺素(GSNO)分子溶解在亲水结构域中。我们展示了PAA:F127 / GSNO水凝胶在通过其吸水率控制的速率下释放不释放。 SAXS测量表明,水凝胶的超分子结构保留了F127胶束的远程顺序结构域。 PAA / F1227水凝胶显示致密的形态和降低的水合速度。在前200分钟内,无释放速率保持恒定,与PAA:F127 / GSNO水凝胶的水合速率直接相关,并且通过改变PAA,可以在40 nmol / GH的范围内调节至1.5μmol/ GH :F127质量比。长期没有释放型材超过5天的人数受GSNO一阶指数衰减的管辖,半衰期在0.5-3.4天的范围内。体内研究小鼠全厚的切除伤口的初步研究表明,通过渗出物吸收引发局部没有从PAA释放,并导致增加血管生成和胶原纤维组织,以及TGF-β,IGF- 1,SDF-1和CicaTricial组织中的IL-10基因表达。总之,这些结果表明,水合控制没有局部PAA的释放:F127 / GSNO水凝胶是增强伤口愈合的潜在策略。

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