Environmental hygiene strategies to decrease the burden of antibiotic-resistant organisms in Intensive Care Unit SINKs (ICU SINK)
Environmental hygiene strategies to decrease the burden of antibiotic-resistant organisms in Intensive Care Unit SINKs (ICU SINK)
批准号:
10237927
负责人:
Carey-Ann Dawn Burnham
金额:
$48.66万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
未结题
起止时间:
2020-09-01 至 2025-06-30
中文摘要
项目总结
由抗生素耐药生物(ARO)引起的感染是全球公共卫生的主要威胁,
医疗保健相关感染(HAI)的重要原因。ARO尤其威胁要
重症监护病房(ICU)中免疫功能低下的患者,在那里免疫系统减弱
癌症化疗和抗生素暴露会增加由于芳香烃引起的HAIS的风险。一种潜力
ARO的传播来源是医院环境。ARO可以在ICU中的物体和表面上存活
时间间隔延长,从而形成固定的水库,用于持续向易受感染的患者传播ARO。
要制定和优化感染预防策略,关键是要了解医院与医院之间的联系
环境和人类免疫缺陷病毒,并优化环境卫生干预策略,以预防因以下原因引起的人类免疫缺陷病毒感染
阿罗斯。
为了表征ICU中ARO负担最大的环境区域,我们小组培养,
从ICU表面收集的1,109个潜在的芳香烃中鉴定并创建了一个生物质谱库,
患者粪便样本和入院患者的临床血流感染(BSI)分离株
骨髓移植(BMT)ICU我们初步的微生物选择性培养技术和全基因组
测序(WGS)数据表明,从水槽排水沟中分离出的ARO与
临床分离的BSI。这提出了一种假设,即水槽排水管中的ARO在ICU之间转移
环境和患者(或反之亦然),环境可能是ARO传播的宿主。
基于这些初步数据,我们的目标是确定在ICU环境中发现的ARO之间的联系
和HAIS患者,并设计和测试干预措施,以减轻ICU中ARO的负担
环境。
在这个项目中,我们将利用抗菌素敏感性测试和WGS纵向确定
ARO的存在和在医院环境中的传播,并确定了
这些菌株对那些在骨髓移植ICU患者中引起BSI的菌株。此外,我们将实施和衡量
以漂白剂和过氧化氢为基础的环境卫生干预对空气中二氧化氯浓度的影响
ICU水槽排水口有AROS。这些具体目标的完成将使我们能够广泛地描述
AROS在环境表面和患者之间的传播动力学,并评估
以水槽表面和排水沟为重点的环境卫生干预。
英文摘要
PROJECT SUMMARY
Infections due to antibiotic resistant organisms (ARO) are a major threat to public health worldwide and
a significant cause of healthcare-associated infections (HAI). AROs are especially threatening to
immunocompromised patients in intensive care units (ICUs), where a weakened immune system combined
with cancer chemotherapy and antibiotic exposures results in increased risk for HAIs due to AROs. A potential
source of ARO transmission is the hospital environment. AROs can survive on objects and surfaces in the ICU
for prolonged time intervals, resulting in fixed reservoirs for ongoing ARO transmission to vulnerable patients.
To create and optimize infection prevention strategies, it is crucial to understand the link between the hospital
environment and HAIs, and to optimize environmental hygiene intervention strategies to prevent HAIs due to
AROs.
To characterize the environmental areas with the greatest ARO burden in the ICU, our group cultured,
identified, and created a biospecimen repository of 1,109 potential AROs from collected from ICU surfaces,
patient fecal samples, and clinical bloodstream infection (BSI) isolates from patients admitted to the bone
marrow transplant (BMT) ICU. Our preliminary selective microbiologic culture techniques and whole genome
sequencing (WGS) data indicate that there is a genetic link between AROs isolated from sink drains and
clinical BSI isolates. This raises the hypothesis that AROs in sink drains are being transferred between the ICU
environment and patients (or vice-versa), and that the environment may be a reservoir for ARO transmission.
Based on these preliminary data, our goal is to define the link between AROs found in the ICU environment
and patients with HAIs, and to design and test interventions to reduce the burden of AROs in the ICU
environment.
In this project, we will utilize antimicrobial susceptibility testing and WGS to longitudinally determine the
presence and transmission of AROs across the hospital environment, and determine the genetic link between
these strains to those causing BSIs in patients in a BMT ICU. Further, we will implement and measure the
impact of a bleach and hydrogen peroxide-based environmental hygiene intervention on the concentration of
AROs present in ICU sink drains. Completion of these specific aims will allow us to extensively characterize
the transmission dynamics of AROs across environmental surfaces and patients, and to evaluate an
environmental hygiene intervention that focuses on sink surfaces and drains.
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会议论文
Environmental hygiene strategies to decrease the burden of antibiotic-resistant organisms in Intensive Care Unit SINKs (ICU SINK)
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批准号:10436892
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项目类别:
-
资助金额:$48.07万
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财政年份:2020
-
负责人:Carey-Ann Dawn Burnham
-
依托单位:
Environmental hygiene strategies to decrease the burden of antibiotic-resistant organisms in Intensive Care Unit SINKs (ICU SINK)
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批准号:10641736
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项目类别:
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资助金额:$48.19万
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财政年份:2020
-
负责人:Carey-Ann Dawn Burnham
-
依托单位:
Environmental hygiene strategies to decrease the burden of antibiotic-resistant organisms in Intensive Care Unit SINKs (ICU SINK)
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批准号:10034201
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项目类别:
-
资助金额:$50.0万
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财政年份:2020
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负责人:Carey-Ann Dawn Burnham
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依托单位:
海外基金