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临床试验/NCT06576258
NCT06576258招募中不适用

The Clinical Impact of Cobas® Eplex Blood Culture Panels for the Diagnosis of Bacteremia and Fungemia

University Hospital, Antwerp2 个研究点 分布在 1 个国家目标入组 200 人开始时间: 2024年11月19日最近更新:
适应症

试验速览

阶段
不适用
状态
招募中
入组人数
200
试验地点
2
主要终点
The time to most effective antimicrobial treatment

研究概览

简要总结

A quality improvement study on the diagnostics and clinical management of bloodstream infection episodes. Patients of all ages and genders with positive blood cultures collected for standard patient care are included in the study. In the intervention group of patients, positive blood cultures will be analysed with the cobas® eplex (Roche) blood culture panels in addition to conventional, standard-of-care (SOC) culture methods. The control group will include patients with positive blood cultures analysed using conventional, standard-of-care (SOC) culture methods. The study aims to determine the effect of rapid molecular testing using the cobas® eplex blood culture panels (Roche) in the clinical management of bloodstream infections and more specifically the effect of the eplex result on the time to most effective/targeted antibiotic treatment. The primary objective is to investigate the difference in time to most effective antibiotic treatment between the control and intervention group. The secondary aims are to analyze the concordance of results and compare the user-friendliness, hands-on time and turnaround times of the eplex to the SOC culture methods as well as to compare the difference in the length of stay, antibiotic intensity score at 96h after Gram staining and patient outcome (30-day, all cause mortality and 30-day readmission) in the control and intervention group.

详细描述

Bloodstream infections (BSIs) impose a considerable burden on patients and healthcare systems due to the need for hospital admission, extended stays, additional diagnostic tests and specific treatments. Receiving inappropriate empirical antibiotic therapy can increase the risk of renal and hepatic toxicity, antibiotic resistance, opportunistic infections and mortality. Therefore, early identification of the causative pathogens and their resistance patterns is of utmost importance.

The gold standard for diagnosis of BSIs is through blood cultures. To detect bacteremia or fungemia, blood from patients is collected and incubated in blood culture bottles. When using conventional culture methods, a positive blood bottle is investigated using direct microscopic investigation, gram-staining, inoculation of selective and non-selective agars, MALDI-TOF identification, rapid antimicrobial susceptibility testing (AST) and standardized AST methods. These methods require several (manual) steps and days of turn-around-time. Following the collection of a blood culture, time to result depends on several factors such as the time needed for transporting the blood bottles and loading in the incubator, the growth rate of bacteria or fungi as well as the time to obtain the identification and AST result.

Rapid diagnostic tests to improve the time to appropriate antimicrobial therapy have been developed. Most tests involve organism identification and genotypic resistance profiles. Rapid molecular diagnostic testing, such as multiplex PCR methods, enable early identification of bacteria or fungi and their antimicrobial resistance genes (results within less than 2 hours after initiation of the test). This helps minimize the time needed to initiate effective antimicrobial therapy. Commercial diagnostic systems to accelerate the identification and detection of antibiotic resistance genes of causative pathogens in BSI have been developed. Examples include Cepheid® GeneXpert, BioFire® FilmArray®TM, and Roche eplex®. The system used in this study, the eplex system, is a random access multiplex PCR platform combining extraction of nucleic acids and rapid RT-PCR. Three Blood Culture Identification (BCID) panels are used to identify the disease-causing organisms: Gram-positive panel, Gram-negative panel and Fungal Pathogen panel. These panels are designed to detect 56 different organisms covering 95% of pathogens commonly associated with BSIs and 10 common antibiotic resistance genes.

The objective of this study is to assess the impact of rapid molecular testing on positive blood cultures with the cobas® eplex system (Roche) on antibiotic therapy and patient outcome.

In this study, we prospectively evaluate the performance of the eplex system for pathogen identification and detection of resistance markers compared to routine SOC for bloodstream infections. The potential impact of the eplex on time to optimization (inititiation, discontinuation, escalation or de-escalation) of antimicrobial therapy and patient outcome will be evaluated.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Diagnostic
盲法
None

入排标准

性别
All
接受健康志愿者

入选标准

  • Patients with onset of BSI at the emergency department or general wards
  • Patients hospitalized from blood draw (at least 24h)
  • For pediatric patient only BSI episodes caused by gram-negative organisms

排除标准

  • Patients deceased at the time of the positive blood culture
  • Patients in comfort care or with an estimated survival before sepsis of less than one month
  • Patients with positive blood culture bottles within the past 14 days
  • Patients for which the blood bottles are highly suspected of contaminants (bacterial species belonging to potential skin commensals or known environmental contaminants) and in the absence of any other site of infections.

结局指标

主要结局

The time to most effective antimicrobial treatment

时间窗: From hospital admission until 30 days after discharge of the patient

The difference in time to most effective/targeted antimicrobial treatment in the intervention group and control group. An antimicrobial therapy is defined as optimal when it is the narrowest spectrum agent with acceptable activity against the isolated pathogen based on the culture or eplex results, taking into account the toxicity of the antibiotic and the patient medical conditions.

次要结局

  • The impact of the eplex result on antibiotic intensity score at 96 hours after Gram staining(From hospital admission until 96 hours (day 4) after Gram staining)
  • Performance of the cobas eplex instrument(From positive blood culture until eplex (up to a few hours) and SOC culture results (up to two weeks) are available)
  • The impact of the eplex result on the time to first antibiotic optimization(From hospital admission until the time of first optimization of antimicrobial treatment for the bloodstream infection (up to one week after hospital admission)))
  • The impact of the eplex result on 30-day readmission(From hospitalization during the BSI episode until 30 days after discharge)
  • The impact of the eplex result on the hospital and ICU length-of-stay(From hospital admission until discharge in a single episode of hospitalization, assessed up to one year)
  • The impact of the eplex result on 30-day, all cause mortality(From the start of the BSI episode until 30 days after)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (2)

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