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使用新型含银水凝胶敷料控制伤口生物负载。

Controlling wound bioburden with a novel silver-containing Hydrofiber dressing.

作者信息

Jones Samantha A, Bowler Philip G, Walker Michael, Parsons David

机构信息

ConvaTec GDC, First Avenue, Deeside Industrial Park, Deeside, Flintshire CH5 2NU, United Kingdom.

出版信息

Wound Repair Regen. 2004 May-Jun;12(3):288-94. doi: 10.1111/j.1067-1927.2004.012304.x.

Abstract

Clinicians now recognize that both aerobic and anaerobic microorganisms have the ability to degrade or damage host tissue at a wound site through the production of a variety of enzymes and toxins. Silver-containing dressings offer one method for controlling this polymicrobial wound bioburden, and research efforts are currently ongoing to determine their efficacy against aerobic, anaerobic, and antibiotic-resistant microorganisms. The current study aimed to determine the antimicrobial activity of a new silver-containing Hydrofiber dressing (AQUACEL Ag) on both aerobic and anaerobic microorganisms, using the zone-of-inhibition method. This method provides a measure of the ability of the dressing to make available a sufficient concentration of silver to have an antimicrobial effect. To some extent this test mimics the clinical use of the dressing and predicts its microbicidal activity at the wound-dressing interface. The results show that the silver-containing dressing makes silver available at a dressing-agar interface at a concentration that is effective against a broad range of aerobic, anaerobic, and antibiotic-resistant microorganisms. In the context of wound healing, the results showing antimicrobial activity against antibiotic-resistant microorganisms are particularly important, as the control and eradication of these organisms is a major concern within the health care profession.

摘要

临床医生现在认识到,需氧和厌氧微生物都有能力通过产生多种酶和毒素来降解或损害伤口部位的宿主组织。含银敷料提供了一种控制这种多微生物伤口生物负荷的方法,目前正在进行研究以确定其对需氧菌、厌氧菌和耐抗生素微生物的疗效。本研究旨在使用抑菌圈法测定一种新型含银水凝胶敷料(AQUACEL Ag)对需氧和厌氧微生物的抗菌活性。该方法提供了一种衡量敷料使足够浓度的银发挥抗菌作用能力的方法。在某种程度上,该测试模拟了敷料的临床使用情况,并预测了其在伤口-敷料界面的杀菌活性。结果表明,含银敷料在敷料-琼脂界面使银以有效对抗多种需氧菌、厌氧菌和耐抗生素微生物的浓度释放出来。在伤口愈合的背景下,显示出对耐抗生素微生物具有抗菌活性的结果尤为重要,因为控制和根除这些微生物是医疗行业的主要关注点。

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