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Factors affecting use of ballistics gelatin in laboratory studies of bacterial contamination in projectile wounds

机译:影响弹道明胶在弹丸伤口细菌污染的实验室研究中使用的因素

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Background Ballistics gelatin is a common tissue surrogate used in bacterial contamination models for projectile wounds. Although these studies have demonstrated that bacteria are transferred from the surface of the gelatin to the wound track by a projectile, quantifiable results have been inconsistent and not repeatable in successive tests. Methods In this study, five areas of a typical contamination model in which bacterial recovery or survival are affected were identified for optimization. The first was a contaminated “skin” surrogate, where the novel use of vacuum filtration of a bacterial culture and buffer onto filter paper was employed. The other possibly problematic areas of the bacterial distribution model included the determination of bacterial survival when the contamination model is dried, survival in solid and molten gelatin, and the effect of high-intensity lights used for recording high-speed video. Results Vacuum filtration of bacteria and buffer resulted in a consistent bacterial distribution and recovery. The use of phosphate buffer M9 (pH?7) aided in neutralizing the ballistics gelatin and improving bacterial survival in solid gelatin. Additionally, the use of high-intensity lights to record high-speed video and the use of a 42°C water bath to melt the gelatin were found to be bactericidal for gram-positive and gram-negative bacteria. Conclusions Multiple areas of a typical contamination model in which bacterial survival may be impeded were identified, and methods were proposed to improve survival in each area. These methods may be used to optimize the results of bacterial contamination models for medical applications, such as understanding the progression of infection in penetrating wounds and to identify possible sources of contamination for forensic purposes.
机译:背景技术弹道明胶是弹丸伤口细菌污染模型中常用的组织替代物。尽管这些研究表明细菌通过射弹从明胶表面转移到创面,但可量化的结果却不一致,在后续的测试中不可重复。方法在本研究中,确定了影响细菌恢复或存活的典型污染模型的五个区域,以进行优化。第一种是受污染的“皮肤”替代物,其中采用了将细菌培养物和缓冲液真空过滤到滤纸上的新方法。细菌分布模型的其他可能存在问题的领域包括确定污染模型干燥后的细菌存活率,固体和熔融明胶中的存活率以及用于记录高速视频的高强度光的影响。结果细菌和缓冲液的真空过滤导致一致的细菌分布和回收。磷酸盐缓冲液M9(pH?7)的使用有助于中和防弹明胶并改善固体明胶中的细菌存活率。此外,发现使用高强度光来记录高速视频,以及使用42°C的水浴融化明胶对革兰氏阳性和革兰氏阴性细菌具有杀菌作用。 。结论确定了典型污染模型中可能阻碍细菌存活的多个区域,并提出了改善每个区域存活的方法。这些方法可用于优化用于医疗应用的细菌污染模型的结果,例如了解穿透性伤口中感染的进程,并为法医目的识别可能的污染源。

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