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Analysis of Effective Interconnectivity of DegraPol-foams Designed for Negative Pressure Wound Therapy

机译:用于负压伤口治疗的DegraPol泡沫的有效互连性分析

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摘要

Many wounds heal slowly and are difficult to manage. Therefore Negative Pressure Wound Therapy (NPWT) was developed where polymer foams are applied and a defined negative pressure removes wound fluid, reduces bacterial burden and increases the formation of granulation tissue. Although NPWT is used successfully, its mechanisms are not well understood. In particular, different NPWT dressings were never compared. Here a poly-ester urethane Degrapol® (DP)-foam was produced and compared with commercially available dressings (polyurethane-based and polyvinyl-alcohol-based) in terms of apparent pore sizes, swelling and effective interconnectivity of foam pores. DP-foams contain relatively small interconnected pores; PU-foams showed large pore size and interconnectivity; whereas PVA-foams displayed heterogeneous and poorly interconnected pores. PVA-foams swelled by 40 %, whereas DP- and PU-foams remained almost without swelling. Effective interconnectivity was investigated by submitting fluorescent beads of 3, 20 and 45 μm diameter through the foams. DP- and PU-foams removed 70-90 % of all beads within 4 h, independent of the bead diameter or bead pre-adsorption with serum albumin. For PVA-foams albumin pre-adsorbed beads circulated longer, where 20 % of 3 μm and 10 % of 20 μm diameter beads circulated after 96 h. The studies indicate that efficient bead perfusion does not only depend on pore size and swelling capacity, but effective interconnectivity might also depend on chemical composition of the foam itself. In addition due to the efficient sieve-effect of the foams uptake of wound components in vivo might occur only for short time suggesting other mechanisms being decisive for success of NPWT.
机译:许多伤口愈合缓慢,难以处理。因此,开发了负压伤口疗法(NPWT),其中应用了聚合物泡沫,并且确定的负压去除了伤口液,减少了细菌负担并增加了肉芽组织的形成。尽管NPWT已成功使用,但其机理尚不十分清楚。特别是,从未比较过不同的NPWT敷料。此处生产了聚酯聚氨酯Degrapol ®(DP)泡沫,并将其与市售的敷料(基于聚氨酯和聚乙烯醇的敷料)的表观孔径,溶胀和有效互连性进行了比较泡沫毛孔。 DP泡沫包含相对较小的相互连接的细孔。聚氨酯泡沫具有较大的孔径和互连性。而PVA泡沫则显示出异质且互连不良的孔。 PVA泡沫膨胀了40%,而DP和PU泡沫几乎没有膨胀。通过使3、20和45μm直径的荧光珠穿过泡沫,研究了有效的互连性。 DP和PU泡沫在4小时内去除了70-90%的所有珠子,与珠子直径或血清白蛋白对珠子的预吸附无关。对于PVA泡沫,白蛋白预吸附的磁珠循环时间更长,其中96%直径的20%的3μm珠和10%的20μm磁珠循环。研究表明,有效的珠粒灌注不仅取决于孔径和溶胀能力,而且有效的互连性还取决于泡沫本身的化学组成。另外,由于泡沫的有效筛分作用,可能仅在短时间内发生体内伤口成分的吸收,这表明其他机制对于NPWT的成功具有决定性作用。

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