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用于伤口愈合和分层真皮重建的电纺聚己内酯/明胶纳米纤维支架的评估

Evaluation of electrospun PCL/gelatin nanofibrous scaffold for wound healing and layered dermal reconstitution.

作者信息

Chong E J, Phan T T, Lim I J, Zhang Y Z, Bay B H, Ramakrishna S, Lim C T

机构信息

Nanoscience and Nanotechnology Initiative, National University of Singapore, 9 Engineering Drive 1, Singapore 117576, Singapore.

出版信息

Acta Biomater. 2007 May;3(3):321-30. doi: 10.1016/j.actbio.2007.01.002. Epub 2007 Feb 26.

Abstract

The current design requirement for a tissue engineering skin substitute is that of a biodegradable scaffold through which fibroblasts can migrate and populate. This artificial "dermal layer" needs to adhere to and integrate with the wound, which is not always successful for the current artificial dermal analogues available. The high cost of these artificial dermal analogues also makes their application prohibitive both to surgeons and patients. We propose a cost-effective composite consisting of a nanofibrous scaffold directly electrospun onto a polyurethane dressing (Tegaderm, 3M Medical) - which we call the Tegaderm-nanofiber (TG-NF) construct - for dermal wound healing. Cell culture is performed on both sides of the nanofibrous scaffold and tested for fibroblast adhesion and proliferation. It is hoped that these studies will result in a fibroblast-populated three-dimensional dermal analogue that is feasible for layered applications to build up thickness of dermis prior to re-epithelialization. Results obtained in this study suggest that both the TG-NF construct and dual-sided fibroblast-populated nanofiber construct achieved significant cell adhesion, growth and proliferation. This is a successful first step for the nanofiber construct in establishing itself as a suitable three-dimensional scaffold for autogenous fibroblast populations, and providing great potential in the treatment of dermal wounds through layered application.

摘要

目前组织工程皮肤替代物的设计要求是具备一种可生物降解的支架,成纤维细胞能够通过该支架迁移并聚集。这种人工“真皮层”需要与伤口粘附并融合,但对于现有的人工真皮类似物来说,这并非总能成功实现。这些人工真皮类似物的高昂成本也使得外科医生和患者都难以应用。我们提出一种具有成本效益的复合材料,它由直接电纺到聚氨酯敷料(泰德皮肤贴,3M医疗公司)上的纳米纤维支架组成——我们将其称为泰德皮肤贴-纳米纤维(TG-NF)构建体——用于真皮伤口愈合。在纳米纤维支架的两面进行细胞培养,并测试成纤维细胞的粘附和增殖情况。希望这些研究能够产生一种含有成纤维细胞的三维真皮类似物,该类似物在重新上皮化之前用于分层应用以增厚真皮厚度是可行的。本研究获得的结果表明,TG-NF构建体和双面含有成纤维细胞的纳米纤维构建体都实现了显著的细胞粘附、生长和增殖。这是纳米纤维构建体成功迈出的第一步,使其自身成为适合自体成纤维细胞群体生长的三维支架,并通过分层应用在治疗真皮伤口方面具有巨大潜力。

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