首页> 外文期刊>International Journal of Pharmaceutics >Sustained prolonged topical delivery of bioactive human insulin for potential treatment of cutaneous wounds.
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Sustained prolonged topical delivery of bioactive human insulin for potential treatment of cutaneous wounds.

机译:持续延长生物活性人胰岛素的局部局部给药,可用于皮肤伤口的潜在治疗。

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摘要

Skin damaged by heat, radiation, or chemical exposure is difficult to treat and slow to heal. Indeed full restoration of the tissue is difficult to obtain. Sub-dermal insulin injection was recently shown to stimulate wound healing of the skin by accelerating wound closure, stimulating angiogenesis and inducing a regenerative process of healing. We have developed a topical delivery vehicle that is capable of releasing therapeutic levels of bioactive insulin for several weeks with the potential to stimulate and sustain healing. By encapsulating the crystalline form of insulin within poly(d,l-lactide-co-glycolide) microspheres, we succeeded in stabilizing and then releasing bioactive insulin for up to 25 days. To measure bioactivity we used Rat L6 myofibroblasts, stimulated them with this slow release insulin and determined activation of the receptors on the cell surface by quantifying AKT phosphorylation. There was only a minor and gradual decrease in AKT phosphorylation over time. To determine whether the slow release insulin could stimulate keratinocyte migration, wounding was simulated by scratching confluent cultures of human keratinocytes (HaCaT). Coverage of the scratch "wounds" was significantly faster in the presence of insulin released from microspheres than in the insulin-free control. Extended and sustained topical delivery of active insulin from a stable protein crystal-based reservoir shows promise in promoting tissue healing.
机译:受热,辐射或化学暴露损害的皮肤难以治疗且愈合缓慢。实际上,很难获得组织的完全恢复。最近显示,皮下胰岛素注射通过加速伤口闭合,刺激血管生成和诱导愈合的再生过程来刺激皮肤的伤口愈合。我们已经开发了一种局部给药载体,该载体能够在数周内释放治疗水平的生物活性胰岛素,并具有刺激和维持愈合的潜力。通过将胰岛素的结晶形式封装在聚(d,l-丙交酯-共-乙交酯)微球中,我们成功稳定并释放了生物活性胰岛素长达25天。为了测量生物活性,我们使用了大鼠L6肌成纤维细胞,用这种缓慢释放的胰岛素刺激它们,并通过定量AKT磷酸化来确定细胞表面受体的活化。随着时间的推移,AKT磷酸化只有轻微的逐渐降低。为了确定缓释胰岛素是否可以刺激角质形成细胞迁移,通过刮擦人类角质形成细胞的融合培养物(HaCaT)来模拟伤口。在存在从微球释放的胰岛素的情况下,刮擦“伤口”的覆盖速度明显快于无胰岛素的对照。从稳定的基于蛋白质晶体的储库中延长和持续局部递送活性胰岛素显示出促进组织愈合的希望。

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