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Insights on the Role of Antimicrobial Cuffed Endotracheal Tubes in Preventing Transtracheal Transmission of VAP Pathogens from an In Vitro Model of Microaspiration and Microbial Proliferation

机译:抗菌袖带式气管插管在预防VAP病原体经气管传播中的作用的见解该模型来自体外微吸和微生物增殖模型。

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摘要

We developed an in vitro model to evaluate the effect of different cuffed endotracheal tubes (ETTs) on transtracheal transmission of ventilator-associated pneumonia (VAP) pathogens along external surfaces of ETTs. The model independently assessed the relative contributions of microbial proliferation to the distal tip and microaspiration of contaminated secretions past the cuff by testing in three modes: microaspiration only, microbial proliferation only, and simultaneous microaspiration and microbial proliferation. We evaluated transmission of methicillin resistant Staphylococcus aureus (MRSA) or Pseudomonas aeruginosa (PA) in the presence of a standard ETT; a soft, tapered cuff ETT with subglottic suctioning; and a novel antimicrobial gendine (combination of gentian violet and chlorhexidine) ETT in the model. In the microaspiration only mode, when leakage past the cuff occurred quickly, no ETT prevented transmission. When microaspiration was delayed, the gendine ETT was able to completely disinfect the fluid above the cuff and thereby prevent transmission of pathogens. In microbial proliferation only mode, the gendine ETT was the sole ETT that prevented transmission. With both mechanisms simultaneously available, transmission was dependent on how long microaspiration was delayed. Potent antimicrobial ETTs, such as a gendine ETT, can make unique contributions to prevent VAP when microaspiration is gradual.
机译:我们开发了一种体外模型,以评估不同的袖带式气管插管(ETTs)对沿ETTs外表面呼吸机相关性肺炎(VAP)病原体经气管传播的影响。该模型通过以下三种模式进行测试,独立评估了微生物增殖对远端末端的相对贡献和经过袖带的污染分泌物的微抽吸:仅微抽吸,仅微生物增殖以及同时进行微抽吸和微生物增殖。我们评估了在标准ETT存在下耐甲氧西林的金黄色葡萄球菌(MRSA)或铜绿假单胞菌(PA)的传播。具有声门下抽吸功能的柔软锥形袖套ETT;模型中使用了一种新型抗菌素甘地丁(龙胆紫和洗必泰组合)。在仅微量抽吸模式下,当通过袖带的泄漏迅速发生时,没有ETT阻止传播。当微抽吸延迟时,金刚素ETT能够完全消毒袖带上方的液体,从而防止病原体传播。在仅微生物增殖模式下,根丁ETT是阻止传播的唯一ETT。在两种机制同时可用的情况下,传播取决于微抽吸的延迟时间。强效抗菌药物ETT(如甘迪丁ETT)在逐渐进行微量抽吸时可起到独特的预防VAP的作用。

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