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可注射聚氨酯复合支架可延缓大鼠切除伤口的伤口收缩,并支持细胞浸润和重塑。

Injectable polyurethane composite scaffolds delay wound contraction and support cellular infiltration and remodeling in rat excisional wounds.

作者信息

Adolph Elizabeth J, Hafeman Andrea E, Davidson Jeffrey M, Nanney Lillian B, Guelcher Scott A

机构信息

Department of Chemical and Biomolecular Engineering, Vanderbilt University, Nashville, Tennessee.

出版信息

J Biomed Mater Res A. 2012 Feb;100(2):450-61. doi: 10.1002/jbm.a.33266. Epub 2011 Nov 21.

Abstract

Injectable scaffolds present compelling opportunities for wound repair and regeneration because of their ability to fill irregularly shaped defects and deliver biologics such as growth factors. In this study, we investigated the properties of injectable polyurethane (PUR) biocomposite scaffolds and their application in cutaneous wound repair using a rat excisional model. The scaffolds have a minimal reaction exotherm and clinically relevant working and setting times. Moreover, the biocomposites have mechanical and thermal properties consistent with rubbery elastomers. In the rat excisional wound model, injection of settable biocomposite scaffolds stented the wounds at early time points, resulting in a regenerative rather than a scarring phenotype at later time points. Measurements of wound length and thickness revealed that the treated wounds were less contracted at day 7 compared to blank wounds. Analysis of cell proliferation and apoptosis showed that the scaffolds were biocompatible and supported tissue ingrowth. Myofibroblast formation and collagen fiber organization provided evidence that the scaffolds have a positive effect on extracellular matrix remodeling by disrupting the formation of an aligned matrix under elevated tension. In summary, we have developed an injectable biodegradable PUR biocomposite scaffold that enhances cutaneous wound healing in a rat model.

摘要

可注射支架因能够填充不规则形状的缺损并递送生长因子等生物制剂,为伤口修复和再生提供了极具吸引力的机会。在本研究中,我们使用大鼠切除模型研究了可注射聚氨酯(PUR)生物复合支架的特性及其在皮肤伤口修复中的应用。这些支架具有最小的反应放热以及与临床相关的工作和凝固时间。此外,生物复合材料具有与橡胶状弹性体一致的机械和热性能。在大鼠切除伤口模型中,注射可凝固的生物复合支架在早期使伤口支架化,在后期导致再生而非瘢痕形成的表型。伤口长度和厚度的测量显示,与空白伤口相比,治疗后的伤口在第7天收缩程度较小。细胞增殖和凋亡分析表明,支架具有生物相容性并支持组织向内生长。肌成纤维细胞的形成和胶原纤维的组织提供了证据,表明支架通过在张力升高的情况下破坏排列基质的形成,对细胞外基质重塑具有积极作用。总之,我们开发了一种可注射的可生物降解PUR生物复合支架,其可促进大鼠模型中的皮肤伤口愈合。

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