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Synthesis and characterization of a hyaluronic acid-based hydrogel with antioxidative and thermosensitive properties

机译:抗氧化和热敏性能的透明质酸基水凝胶的合成与表征

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Peripheral arterial disease (PAD) is initiated by progressive atherosclerotic blockages of the arteries supplying the lower extremities. The most common presentation of PAD is claudication (leg pain and severe walking limitation), with many patients progressing to limb threatening ischemia and amputation. Biomaterial approaches are just beginning to be explored in the therapy of PAD with different materials now being evaluated for the delivery of cells or growth factors in animal models of PAD. A biomaterial matrix optimized for minimally invasive injection in the ischemic leg muscles of patients with PAD is urgently needed. There are several important requirements for optimal delivery, retention, and performance of a biomaterial matrix in the mechanically, histologically, and biochemically dynamic intramuscular environment of the PAD leg. Ideally, the material should have mechanical properties matching those of the recipient muscle, undergo minimal swelling, and should introduce properties that can ameliorate the mechanisms operating in PAD like oxidative stress and damage. Here we have developed an injectable, antioxidative, and thermosensitive hydrogel system based on hyaluronic acid (HA). We first synthesized a unique crosslinker of disulfide-modified poloxamer F127 diacrylate. This crosslinker led to the creation of a thermosensitive HA hydrogel with minimal swelling and muscle-matching mechanical properties. We introduced unique disulfide groups into hydrogels which functioned as an effective reactive oxygen species scavenger, exhibited hydrogen peroxide (H _(2) O _(2) )-responsive degradation, and protected cells against H _(2) O _(2) -induced damage. Our antioxidative thermosensitive HA hydrogel system holds great potential for the treatment of the ischemic legs of patients with PAD.
机译:外周动脉疾病(垫)由供应下肢的动脉的渐进式动脉粥样硬化障碍引发。垫的最常见呈现是跛行(腿部疼痛和严重的行走限制),许多患者进展到肢体威胁性缺血和截肢。生物材料方法刚刚开始在垫子的治疗中探讨,现在正在评估垫中动物模型中细胞或生长因子的不同材料。迫切需要针对垫患者缺血腿部肌肉进行优化的生物材料基质,是迫切需要的。在机械,组织学和生物化学动态肌肉内环境的机械,组织学和生物化学肌肉内环境中最佳递送,保留和性能有几个重要要求。理想情况下,该材料应具有与接受者肌肉的机械性能匹配,经过最小的肿胀,并且应该引入可以改善在焊盘上运行的机制如氧化应激和损坏的性能。在这里,我们开发了基于透明质酸(HA)的可注射的抗氧化和热敏水凝胶系统。我们首先合成了二硫化二硫化磷酸二硫代硫代二硫代二甲酸酯的独特交联剂。该交联剂导致产生热敏性HA水凝胶,具有最小的溶胀和肌肉匹配的机械性能。我们将独特的二硫键介绍到用作有效反应性氧物质清除剂的水凝胶中,表现出过氧化氢(H _(2)o _(2)) - 反应降解,并反对H _(2)O _(2)的保护细胞引起的伤害。我们的抗氧化热敏性HA水凝胶系统具有巨大的潜力,用于治疗垫患者缺血腿。

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