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应用引流膜可减少负压伤口治疗中体外模型中大孔型聚氨酯泡沫内成纤维细胞的侵入。

Application of a drainage film reduces fibroblast ingrowth into large-pored polyurethane foam during negative-pressure wound therapy in an in vitro model.

机构信息

Department of Dermatology, University Medical Center Jena, Jena, Germany.

出版信息

Wound Repair Regen. 2013 Sep-Oct;21(5):697-703. doi: 10.1111/wrr.12073. Epub 2013 Aug 12.

DOI:10.1111/wrr.12073
PMID:23937617
Abstract

Negative-pressure wound therapy (NPWT) is an advantageous treatment option in wound management to promote healing and reduce the risk of complications. NPWT is mainly carried out using open-cell polyurethane (PU) foams that stimulate granulation tissue formation. However, growth of wound bed tissue into foam material, leading to disruption of newly formed tissue upon dressing removal, has been observed. Consequently, it would be of clinical interest to preserve the positive effects of open-cell PU foams while avoiding cellular ingrowth. The study presented analyzed effects of NPWT using large-pored PU foam, fine-pored PU foam, and the combination of large-pored foam with drainage film on human dermal fibroblasts grown in a collagen matrix. The results showed no difference between the dressings in stimulating cellular migration during NPWT. However, when NPWT was applied using a large-pored PU foam, the fibroblasts continued to migrate into the dressing. This led to significant breaches in the cell layers upon removal of the samples after vacuum treatment. In contrast, cell migration stopped at the collagen matrix edge when fine-pored PU foam was used, as well as with the combination of PU foam and drainage film. In conclusion, placing a drainage film between collagen matrix and the large-pored PU foam dressing reduced the ingrowth of cells into the foam significantly. Moreover, positive effects on cellular migration were not affected, and the effect of the foam on tissue surface roughness in vitro was also reduced.

摘要

负压伤口治疗(NPWT)是一种有利于伤口管理的治疗选择,可促进愈合并降低并发症的风险。NPWT 主要使用开孔型聚氨酯(PU)泡沫来刺激肉芽组织形成。然而,已经观察到伤口床组织生长到泡沫材料中,导致在去除敷料时新形成的组织破裂。因此,在避免细胞内生长的同时保留开孔型 PU 泡沫的积极效果将具有临床意义。本研究分析了使用大孔 PU 泡沫、小孔 PU 泡沫和大孔泡沫与引流膜组合对在胶原基质中生长的人真皮成纤维细胞进行 NPWT 的效果。结果表明,在 NPWT 过程中,这些敷料在刺激细胞迁移方面没有差异。然而,当使用大孔 PU 泡沫进行 NPWT 时,纤维母细胞继续迁移到敷料中。这导致在真空处理后去除样品时细胞层出现明显的破裂。相比之下,当使用小孔 PU 泡沫时以及当使用 PU 泡沫和引流膜组合时,细胞迁移在胶原基质边缘停止。总之,在胶原基质和大孔 PU 泡沫敷料之间放置引流膜可显著减少细胞向内生长。此外,对细胞迁移的积极影响不受影响,并且泡沫对体外组织表面粗糙度的影响也降低。

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Application of a drainage film reduces fibroblast ingrowth into large-pored polyurethane foam during negative-pressure wound therapy in an in vitro model.应用引流膜可减少负压伤口治疗中体外模型中大孔型聚氨酯泡沫内成纤维细胞的侵入。
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