The role of bacterial colonization of ventilator circuit in development of ventilator associated pneumonia in ICU of Medical Center Hospital in Tripoli, Libya

Asma Elkammoshi, Abir Ben Ashur, Hamida El Magrahi, Aya Abdulatif, Malak Almarouq
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引用次数: 3

Abstract

Introduction: In mechanically ventilated patients, ventilator-associated pneumonia (VAP) is a major cause of prolonged hospitalization with increased morbidity and mortality. There is a lack of studies on the relationship between bacterial colonization of the ventilator circuit (VC) and VAP. This study aimed to investigate the role of bacterial colonization of VC in the development of VAP and identify antibiotic susceptibility trends for isolated strains. Methods: A prospective study of the bacterial culture has been performed between February 2021 to March 2021 on a total of 100 mechanically ventilated patients, (n =50) samples have been obtained from patient's lower respiratory tract (LRT) and (n =50) were taken from mechanical ventilator equipment VC. Paired samples of bacteria isolated from VC and LRT, where VC was colonized before LRT. Results: A total of 58 samples were cultured positively, while 42 specimens showed negative bacterial growth. However, there was no substantial difference in comparing between the bacterial colonization of the ventilator system and the patient samples. Most isolated organisms were gram-negative bacteria which were found in the ventilator circuit with 26 (68.4%), and 14 (70%) in patient’s LRT. Gram-positive was detected in 12 (31.6%) and 6 (30%) of the ventilator circuit, and patient's LRT, respectively. The predominant bacterial type was Acinetobacter baumannii organism at the VC with 10 (26.3%) and LRT at 4 (20%) followed by Klebsiella pneumoniae (8 (21.1%) in VC and 4 (20%) in LRT). Moreover, A. baumannii showed a full resistance to amoxicillin and the first generation of cephalosporins, while the other bacterial types were resistant to the most antibiotics used in this research. Conclusions: Bacterial colonization of ventilator circuit VC is a significant cause of VAP development in mechanically ventilated patients. Preventive strategies for the early detection and decontamination of contaminated VC can play a crucial role in ventilator-associated pneumonia prevention.
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利比亚的黎波里医疗中心医院ICU中呼吸机回路细菌定植在呼吸机相关性肺炎发展中的作用
简介:在机械通气患者中,呼吸机相关性肺炎(VAP)是延长住院时间的主要原因,发病率和死亡率增加。关于呼吸机回路(VC)细菌定植与VAP之间关系的研究尚缺乏。本研究旨在探讨VC定殖在VAP发展中的作用,并确定分离菌株的抗生素敏感性趋势。方法:于2021年2月至2021年3月对100例机械通气患者进行细菌培养的前瞻性研究,从患者下呼吸道(LRT)采集样本(n =50),从机械呼吸设备VC采集样本(n =50)。从VC和LRT中分离的成对细菌样本,其中VC在LRT之前定植。结果:阳性培养58份,阴性培养42份。然而,在比较呼吸机系统的细菌定植和患者样本之间没有实质性的差异。革兰氏阴性菌多见于呼吸机回路,26株(68.4%),下呼吸道14株(70%)。在呼吸机回路和患者LRT中分别检测到革兰氏阳性12例(31.6%)和6例(30%)。主要细菌类型为鲍曼不动杆菌(vvc) 10株(26.3%),LRT 4株(20%),其次为肺炎克雷伯菌(vvc 8株(21.1%),LRT 4株(20%))。此外,鲍曼不动杆菌对阿莫西林和第一代头孢菌素具有完全耐药性,而其他细菌类型对本研究中使用的大多数抗生素均具有耐药性。结论:呼吸机回路VC的细菌定植是机械通气患者发生VAP的重要原因。早期发现和净化被污染VC的预防策略可在呼吸机相关性肺炎预防中发挥关键作用。
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