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Engineering Approaches for the Detection and Control of Orthopaedic Biofilm Infections

机译:骨科生物膜感染的检测和控制的工程方法

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摘要

Artificial joints are subject to chronic infections associated with bacterial biofilms, which only can be eradicated by the traumatic removal of the implant followed by sustained intravenous antibiotic therapy. We have adopted an engineering approach to develop electrical–current-based approaches to bacterial eradication and microelectromechanical systems that could be embedded within the implanted joint to detect the presence of bacteria and to provide in situ treatment of the infection before a biofilm can form. In the former case we will examine the combined bactericidal effects of direct and indirect electrical fields in combination with antibiotic therapy. In the latter case, bacterial detection will occur by developing a microelectromechanical–systems-based biosensor that can “eavesdrop” on bacterial quorum–sensing-based communication systems. Treatment will be effected by the release of a cocktail of pharmaceutical reagents contained within integral reservoirs associated with the implant, including a molecular jamming signal that competitively binds to the bacteria’s quorum sensing receptors (which will “blind” the bacteria, preventing the production of toxins) and multiple high dose antibiotics to eradicate the planktonic bacteria. This approach is designed to take advantage of the relatively high susceptibility to antibiotics that planktonic bacteria display compared with biofilm envirovars. Here we report the development of a generic microelectromechanical systems biosensor that measures changes in internal viscosity in a base fluid triggered by a change in the external environment.
机译:人工关节易遭受与细菌生物膜有关的慢性感染,只有通过创伤性去除植入物然后进行持续的静脉内抗生素治疗才能根除。我们采用了一种工程方法来开发基于电流的细菌消灭方法和微机电系统,这些方法可以嵌入植入的关节中,以检测细菌的存在并在生物膜形成之前就地提供感染治疗。在前一种情况下,我们将结合抗生素疗法研究直接和间接电场的联合杀菌作用。在后一种情况下,通过开发基于微机电系统的生物传感器可以进行细菌检测,该传感器可以“侦听”基于细菌群体感应的通信系统。治疗将通过释放与植入物相关的整体储存器中包含的一系列药物试剂来实现,其中包括与细菌的群体感应受体竞争性结合的分子干扰信号(该信号会“遮蔽”细菌,从而阻止毒素的产生) )和多种高剂量抗生素以消除浮游细菌。这种方法旨在利用浮游细菌与生物膜环境相比对抗生素的较高敏感性。在这里,我们报告了一种通用的微机电系统生物传感器的开发,该传感器可测量由外部环境的变化触发的基础流体内部粘度的变化。

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