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Impact of negative‐pressure wound therapy on bacterial behaviour and bioburden in a contaminated full‐thickness wound

生物负载 负压伤口治疗 医学 金黄色葡萄球菌 伤口愈合 海绵 微生物学 外科 细菌 病理 生物 替代医学 遗传学 植物
作者
Zhirui Li,Qingwen Yu,Song Wang,Guoqi Wang,Tongtong Li,Peifu Tang,Daohong Liu
出处
期刊:International Wound Journal [Wiley]
卷期号:16 (5): 1214-1221 被引量:18
标识
DOI:10.1111/iwj.13197
摘要

Abstract The use of negative‐pressure wound therapy (NPWT) has displayed significant clinical benefits in the healing of infected wounds. However, the effects of NPWT on bacterial colonisation and infection of traumatic wounds has been controversial. The aim of this study is to evaluate the impact of NPWT treatment in rabbits with a contaminated full‐thickness wound on bacterial behaviour, including colony morphology, spatial distribution, fissional proliferation, and bacterial bioburden. Full‐thickness wounds were created on the back of rabbits, and were inoculated with bioluminescent Staphylococcus aureus . The wounds were treated with sterile gauze dressings and NPWT with continuous negative pressure (−125 mm Hg). Wound samples were harvested on days 0 (6 hours after bacterial inoculation), 2, 4, 6, and 8 at the centre of wound beds before irrigation. Scanning electron microscopy and transmission electron microscopy (TEM) analyses were performed to determine the characteristic bacteriology. Laser scanning confocal microscopy was performed to obtain bioluminescent images, which were used to observe spatial distribution of the GFP‐labelled S. aureus within the tissue and quantify the bacterial bioburden. NPWT resulted in sparse amounts of scattered bacteria on the wound surface or as sparsely spaced single colonies within the tissue. Wound bioburden on day 8 in the NPWT and gauze groups was 34.6 ± 5.5% and 141.9 ± 15.4% of the baseline values (N = 6), respectively ( P < .0001). TEM showed a lack of S. aureus active fission within NPWT‐treated tissue. NPWT can impact S. aureus colony morphology and spatial distribution both on the surface and within wound tissue, and reduce S. aureus as early as 48 hours after therapy initiation. Additionally, NPWT inhibits bacterial fissional proliferation in microcolonies.
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