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Release of insulin from PLGA-alginate dressing stimulates regenerative healing of burn wounds in rats

机译:PLGA-藻酸盐敷料释放胰岛素可刺激大鼠烧伤创面的再生愈合

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摘要

Burn wound healing involves a complex set of overlapping processes in an environment conducive to ischemia, inflammation, and infection costing $7.5 billion/year in the US alone, in addition to the morbidity and mortality that occur when the burns are extensive. We previously showed that insulin, when topically applied to skin excision wounds, accelerates re-epithelialization, and stimulates angiogenesis. More recently, we developed an alginate sponge dressing (ASD) containing insulin encapsulated in PLGA microparticles that provides a sustained release of bioactive insulin for >20days in a moist and protective environment. We hypothesized that insulin-containing ASD accelerates burn healing and stimulates a more regenerative, less scarring, healing. Using a heat-induced burn injury in rats, we show that burns treated with dressings containing 0.04mg insulin/cm2, every three days for 9 days, have faster closure, faster rate of disintegration of dead tissue, and decreased oxidative stress.In addition, in insulin-treated wounds the pattern of neutrophil inflammatory response suggests faster clearing of the burn dead tissue. We also observe faster resolution of the pro-inflammatory macrophages. We also found that insulin stimulates collagen deposition and maturation with the fibers organized more like a basket weave (normal skin) than aligned and crosslinked (scar tissue). In summary , application of ASD-containing insulin-loaded PLGA particles on burns every three days stimulates faster and more regenerative healing. These results suggest insulin as a potential therapeutic agent in burn healing and, because of its long history of safe use in humans, insulin could become one of the treatments of choice when repair and regeneration are critical for proper tissue function.
机译:烧伤创面愈合涉及环境的一系列复杂过程,仅在美国,这种环境就导致局部缺血,炎症和感染,此外,烧伤广泛时的发病率和死亡率也高达75亿美元/年。我们以前的研究表明,将胰岛素局部应用于皮肤切除伤口后,可加速上皮再生并刺激血管生成。最近,我们开发了一种海藻酸钠海绵敷料(ASD),其中包含封装在PLGA微粒中的胰岛素,可在潮湿和保护性环境中提供> 20天的生物活性胰岛素持续释放。我们假设含胰岛素的ASD可以加速烧伤愈合,并刺激再生性,减少疤痕愈合。通过对大鼠进行热诱发的烧伤,我们发现,每三天用含0.04mg胰岛素/ cm2的敷料处理烧伤,持续9天,具有更快的闭合速度,更快的死组织崩解速度和减少的氧化应激。 ,在用胰岛素治疗的伤口中,中性粒细胞炎症反应的模式提示烧伤死组织的清除更快。我们还观察到促炎性巨噬细胞的更快分辨率。我们还发现,胰岛素可以刺激胶原蛋白的沉积和成熟,其纤维组织起来更像是篮子编织(正常皮肤),而不是对齐和交联的(瘢痕组织)。总之,每三天在烧伤上应用含ASD的载有胰岛素的PLGA颗粒可促进更快,更再生的愈合。这些结果表明胰岛素是烧伤愈合的潜在治疗剂,并且由于其长期在人类中安全使用的历史,当修复和再生对于组织正常功能至关重要时,胰岛素可能会成为一种选择的治疗方法。

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