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临床试验/NCT06956053
NCT06956053尚未招募不适用

Personalized Optimization of Antibiotic Therapy in Pulmonary Sepsis Critically Ill Patients Through Application of Rapid Microbiological Diagnostic Technologies and Pharmacokinetic/Pharmacodynamic Modelling

Assistance Publique - Hôpitaux de Paris0 个研究点目标入组 658 人开始时间: 2025年5月30日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
尚未招募
入组人数
658
主要终点
Rate of treatment failure

研究概览

简要总结

Severe community-acquired and nosocomial pneumonia are associated with substantial morbidity and mortality. Early and appropriate antimicrobial therapy (AAT) is consistently the most effective intervention for reducing mortality. Cure is most likely when pharmacokinetic (PK) / pharmacodynamics (PD) targets associated with maximum antibiotic (ABX) activity are achieved. However, the process of optimizing antibiotic therapy for critically ill patients remains a complicated challenge.

A key issue is pathogen identification (ID) with subsequent antibiotic susceptibility testing (AST) results which allow for selection of AAT. Standard laboratory procedures typically require 2-3 days to provide ID and AST results. Optimal ABX dosing/dosing intervals depend in large part on PK properties in individual patients, and antibacterial effects on the infecting bacteria (PD). Alterations in the primary PK parameters, namely volume of distribution (Vd) and clearance (CL), are commonly observed, and are the most influential parameters in determining ABX dosing and exposure. ABX dosing/dosing intervals that do not account for these features are likely to lead to suboptimal ABX exposure and therapeutic failures. Because of 48-72-hours delays in ID/AST, initial treatment is frequently inappropriate in coverage, unnecessarily broad in spectrum, and/or suboptimal in dosing.

Methods for rapid bacterial growth, ID, AST and minimum inhibitory concentration (MIC) identification were developed and are capable of quantitative ID in 1-2 hours and major AST in 6-8 hours using clinical specimens. Rapid ID of the infecting pathogen and its individual AST could significantly impact the early selection of AAT and, combined with therapeutic drug monitoring data, could be used to calculate optimized dosing regimens that are personalized for the patient in order to achieve appropriate PK/PD targets.

Hypothesis: Application of these rapid ID/AST systems, together with prospective PK/PD monitoring of antibiotic plasma concentrations, will significantly shorten time from "sample to answer" for pathogen ID/AST, enhance personalized prescribing of antibiotics, optimize the time to targeted effective and AAT, and result in decreased treatment failure.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Diagnostic
盲法
None

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者
否

入选标准

  • •Patients hospitalized in ICU
  • •18 years of age or older
  • •With a pulmonary sepsis defined a s documented or suspected acute pulmonary infection (nosocomial and community-acquired pneumonia) and a SOFA score >
  • •Written Informed consent from the patient whenever possible or written ascent from next of kin whenever present at inclusion. When a patient would not be capable of consenting prior to randomization, his/her deferred consent will be gotten.

排除标准

  • •COVID-19 patients
  • •Severe anaphylactic beta-lactam allergy
  • •First measurements of prescribed antibiotic concentration (TDM) not possible within 24 hr after randomization
  • •Pregnancy or lactation
  • •Any decision of limitation of care
  • •Pre-existing medical condition with a life expectancy of less than 3 months
  • •Absence of affiliation to social security
  • •Patient under guardianship, curatorship and deprived of liberty

研究组 & 干预措施

Rapid ID/AST method

Experimental

干预措施: Rapid ID/AST method (Diagnostic Test)

Conventional microbiological methods

Active Comparator

干预措施: Conventional biological methods (Diagnostic Test)

结局指标

主要结局

Rate of treatment failure

时间窗: Up to 10 days after inclusion

It includes treatment failure that occurred early (≤72 hours) or late (\>72 hours), or at both times.

次要结局

  • Time to availability of pathogen(Up to 180 days)
  • All-Cause mortality(Up to 180 days)
  • Vasopressor free days(At day 90)
  • Ventilator free days(At day 28)
  • ICU length of stay(up to day 180)
  • Hospital length of stay(up to day 180)
  • Number of serious adverse events(up to day 180)
  • Time to achieve targeted optimized therapy(Up to 180 days)
  • Time to antibiotic switches(Up to 180 days)
  • Number of started, stopped, added or adjusted (escalation or de-escalation) antibiotics(Up to 180 days)
  • Time to Aantibiotic dose adjustments to achieve PK/PD targets(Up to 180 days)
  • All Cause Mortality(At day 180)
  • SOFA score assessment(Up to 28 days)
  • Organ-failure free days (SOFA<6)(Up to day 28)
  • Proportion of patients requiring invasive mechanical ventilation(At day 90)
  • All Cause Mortality(At day 90)
  • Proportion of patients requiring invasive mechanical ventilation(At day 7)
  • Proportion of patients requiring invasive mechanical ventilation(At day 14)
  • Proportion of patients requiring invasive mechanical ventilation(At day 28)
  • Vasopressor free days(At day 28)

研究者

申办方类型
Other
责任方
Sponsor

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