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伤口覆盖材料的评估。

Evaluation of wound-covering materials.

作者信息

Schwope A D, Wise D L, Sell K W, Dressler D P, Skornick W A

出版信息

J Biomed Mater Res. 1977 Jul;11(4):489-502. doi: 10.1002/jbm.820110405.

DOI:10.1002/jbm.820110405
PMID:326788
Abstract

Physical and in vivo (burned rat model) evaluations as wound coverings were performed for 1) a freeze-dried collagen/poly (epsilon-caprolactone) (PCL) film laminate, 2) a freeze-dried PCL "foam"/PCL film laminate, and 3) a heat-dried collagen/PCL film laminate. Porcine skin and cadaver skin were also evaluated in vivo for the purpose of comparison. Water-vapor transmission rates and Young's moduli were measured. The degree of adherence of the coverings to the wound were measured. Grafts which became significantly adherent (greater than 150 dyne/cm2) to the wound within 1 day were most successful in promoting the formation of a viable tissue bed which appeared ready to accept further grafting. The force required to remove the PCL foam laminate from a full-thickness excision wound was found to increase from 170 dyne/cm2 on the first day postgraft to 1500 dyne/cm2 by the tenth day. The force required to remove freeze-dried collagen laminate remained constant at 200 dyne/cm2 over the 10 day test period. For the heat-dried collagen laminate, a force of only 50 dyne/cm2 was required on day 1, increasing to 200 dyne/cm2 on day 6. Insensible water-loss rates of animals grafted with the laminates were found to be similar to those from animals with human cadaver skin grafts and less than that from animals with porcine skin grafts. When moistened, the laminates prepared using the freeze-dried materials were flexible and somewhat transparent permitting observation of the wound.

摘要

作为伤口覆盖物,对以下材料进行了物理和体内(烧伤大鼠模型)评估:1)冻干胶原蛋白/聚(ε-己内酯)(PCL)薄膜层压板;2)冻干PCL“泡沫”/PCL薄膜层压板;3)热干燥胶原蛋白/PCL薄膜层压板。为了进行比较,还对猪皮和尸体皮肤进行了体内评估。测量了水蒸气透过率和杨氏模量。测量了覆盖物与伤口的粘附程度。在1天内与伤口显著粘附(大于150达因/平方厘米)的移植物在促进形成有活力的组织床方面最成功,该组织床似乎准备好接受进一步的移植。发现从全层切除伤口移除PCL泡沫层压板所需的力从移植后第一天的170达因/平方厘米增加到第十天的1500达因/平方厘米。在10天的测试期内,移除冻干胶原蛋白层压板所需的力保持恒定在200达因/平方厘米。对于热干燥胶原蛋白层压板,第一天仅需50达因/平方厘米的力,到第六天增加到200达因/平方厘米。发现移植了层压板的动物的不显性失水量与移植了人尸体皮肤的动物相似,且低于移植了猪皮的动物。当湿润时,使用冻干材料制备的层压板是柔性的且有点透明,允许观察伤口。

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Evaluation of wound-covering materials.伤口覆盖材料的评估。
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