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作为伤口敷料的超薄聚己内酯薄膜的体内评估

In vivo evaluation of an ultra-thin polycaprolactone film as a wound dressing.

作者信息

Ng Kee Woei, Achuth Hosur N, Moochhala Shabbir, Lim Thiam Chye, Hutmacher Dietmar W

机构信息

Department of Surgery, National University of Singapore, Singapore 117576.

出版信息

J Biomater Sci Polym Ed. 2007;18(7):925-38. doi: 10.1163/156856207781367693.

Abstract

The use of ultra-thin films as dressings for cutaneous wounds could prove advantageous in terms of better conformity to wound topography and improved vapour transmission. For this purpose, ultra-thin poly(epsilon-caprolactone) (PCL) films of 5-15 microm thickness were fabricated via a biaxial stretching technique. To evaluate their in vivo biocompatibility and feasibility as an external wound dressing, PCL films were applied over full and partial-thickness wounds in rat and pig models. Different groups of PCL films were used: untreated, NaOH-treated, untreated with fibrin, NaOH-treated with perforations, and NaOH-treated with fibrin and S-nitrosoglutathione. Wounds with no external dressings were used as controls. Wound contraction rate, histology and biomechanical analyses were carried out. Wounds re-epithelialized completely at a comparable rate. Formation of a neo-dermal layer and re-epithelialization were observed in all the wounds. A lower level of fibrosis was observed when PCL films were used, compared to the control wounds. Ultimate tensile strength of the regenerated tissue in rats reached 50-60% of that in native rat skin. Results indicated that biaxially-stretched PCL films did not induce inflammatory reactions when used in vivo as a wound dressing and supported the normal wound healing process in full and partial-thickness wounds.

摘要

使用超薄膜作为皮肤伤口敷料可能在更好地贴合伤口形貌和改善水汽传输方面具有优势。为此,通过双轴拉伸技术制备了厚度为5 - 15微米的超薄聚(ε-己内酯)(PCL)薄膜。为了评估其作为外部伤口敷料的体内生物相容性和可行性,将PCL薄膜应用于大鼠和猪模型的全层和部分厚度伤口。使用了不同组的PCL薄膜:未处理的、NaOH处理的、未用纤维蛋白处理的、有穿孔的NaOH处理的以及用纤维蛋白和S-亚硝基谷胱甘肽处理的NaOH处理的。未使用外部敷料的伤口用作对照。进行了伤口收缩率、组织学和生物力学分析。伤口以可比的速率完全重新上皮化。在所有伤口中均观察到新真皮层的形成和重新上皮化。与对照伤口相比,使用PCL薄膜时观察到较低水平的纤维化。大鼠再生组织的极限拉伸强度达到天然大鼠皮肤的50 - 60%。结果表明,双轴拉伸的PCL薄膜在体内用作伤口敷料时不会引发炎症反应,并支持全层和部分厚度伤口的正常伤口愈合过程。

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