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用于烧伤创面处理的交联浸银皮肤

Cross-linked silver-impregnated skin for burn wound management.

作者信息

Ersek R A, Denton D R

机构信息

University of Texas Health Science Center, San Antonio.

出版信息

J Burn Care Rehabil. 1988 Sep-Oct;9(5):476-81. doi: 10.1097/00004630-198809000-00006.

Abstract

Biological skin is effective in restoring the missing water vapor barrier and promoting healing in burn wounds. Its effectiveness in wound management has been limited, however, by its inherently limited antibacterial properties and the fact that it is sometimes rejected before healing is complete, even reversing previous beneficial effects. Limited availability and storage difficulties have posed further problems. Impregnation of biological skin with silver ions has been proven to provide a potent bactericidal effect directly at the wound surface. We hypothesized that aldehyde cross-linking of silver-impregnated skin would mask the histocompatibility sites from the recipient's immune system. This has been demonstrated previously with aldehyde cross-linking of allografts and xenografts, prolonging retention sufficiently to permit complete wound healing. Commercially available skin was treated with an aldehyde compound and impregnated with silver. Initial studies of this cross-linked skin for treatment of burn wounds showed average retention to be between 117 and 161 days, far exceeding that of any untreated skin. It was subsequently found that the aldehyde cross-linking permitted impregnation with higher concentrations of silver than had previously been possible--2,600 to 2,830 ppm as compared to an average of 1,020 to 1,350 ppm in previously available silver-impregnated skin. This results in a more potent, immediate antibacterial effect at the wound surface and an extended period of time-release antibacterial action before the silver is exhausted. The antibacterial properties of this aldehyde cross-linked silver-impregnated skin are effective in decontaminating even grossly infected wounds and in protecting against contamination of clean wounds from adjacent infected areas or external sources.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

生物皮肤在修复缺失的水汽屏障和促进烧伤创面愈合方面是有效的。然而,其在伤口处理中的有效性受到其固有的有限抗菌性能以及有时在愈合完成前就被排斥的限制,甚至会逆转先前的有益效果。有限的可用性和储存困难带来了进一步的问题。已证明用银离子浸渍生物皮肤可直接在伤口表面提供强大的杀菌作用。我们假设用醛交联浸渍银的皮肤会掩盖组织相容性位点,使其免受受体免疫系统的影响。此前在同种异体移植和异种移植的醛交联中已证明这一点,其保留时间延长到足以允许伤口完全愈合。用醛化合物处理市售皮肤并浸渍银。对这种交联皮肤治疗烧伤创面的初步研究表明,其平均保留时间在117至161天之间,远远超过任何未处理皮肤。随后发现,醛交联允许比以前更高浓度的银浸渍——2600至2830 ppm,而之前市售浸渍银皮肤的平均浓度为1020至1350 ppm。这在伤口表面产生更强大、即时的抗菌作用,并在银耗尽前延长缓释抗菌作用的时间。这种醛交联浸渍银的皮肤的抗菌性能在净化严重感染的伤口以及防止清洁伤口受到来自相邻感染区域或外部来源的污染方面是有效的。(摘要截短于250字)

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