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Clinical Trials/NCT02542553
NCT02542553CompletedNot Applicable

Bilateral Bronchoalveolar Lavage Cultures for Diagnosing Ventilator-associated Pneumonia. Microbiologic Concordance and Impact on the Efficacy of Treatment Decisions.

Catholic University of the Sacred Heart0 sites79 target enrollmentStarted: February 1, 2013Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
79
Primary Endpoint
Rate of microbiologic concordance between the right- and left-lung samples

Study Overview

Brief Summary

The purpose of this study is to assess microbiologic concordance rates between right- and left-lung bronchoalveolar lavage cultures from patients with suspected ventilator-associated pneumonia, identify predictors of concordance, and evaluate the impact of discordant microbiology on clinicians' ability to prescribe appropriate antibiotic treatments, the investigators conducted a prospective observational study in the general intensive care unit of a large university hospital.

Detailed Description

Bronchoscopic sampling of lower respiratory tract secretions is widely used in intensive care units (ICUs) for the microbiological diagnosis of ventilator-associated pneumonia (VAP). However, the importance of selecting a specific lung segment for sampling is still a matter of debate.

Non-bronchoscopic blind mini-bronchoalveolar lavage (BAL) is currently used for the diagnosis of VAP with satisfactory sensitivity and specificity. In the presence of pneumonia, microbiologic concordance between the left and right lungs becomes crucial. If concordance is low, the reliability of blind sampling becomes questionable.

When the bacterial distribution in the right and left lungs of VAP patients has been investigated using bronchoscopic sampling techniques, rates of microbiological concordance between the two specimens have varied widely (from 53% to 92%). The factors potentially associated with concordant culture yields have never been explored, and it is unclear whether the use of guided, bilateral lung sampling would actually improve the appropriateness of the antibiotic regimens prescribed for patients with suspected VAP.

The primary objective of this study is to assess the frequency of microbiologic concordance between the right- and left-lung samples in ICU patients undergoing bronchoscopic BAL performed with two different fiberoptic bronchoscopes for the suspicion of VAP. Secondary objectives are to identify factors associated with such concordance and to evaluate the suitability of treatments prescribed based on unilateral vs. bilateral BAL cultures.

Study Design

Study Type
Interventional
Allocation
Na
Intervention Model
Single Group
Primary Purpose
Diagnostic
Masking
None

Eligibility Criteria

Ages
18 Years to — (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • •invasive mechanical ventilation of ≥ 48 hours
  • •clinically suspected pneumonia (simplified Clinical Pulmonary Infectious Score exceeded 6 or chest radiographs with a new or progressive pulmonary infiltrate in a patient with at least two of the following: purulent respiratory secretions, temperature >38°C or <36°C, white blood cell count >12,000/mm3 or <4,000/mm3)

Exclusion Criteria

  • •age <18 years
  • •pregnancy
  • •absence of informed consent
  • •an arterial oxygen partial pressure to inspired oxygen fraction ratio (PaO2:FiO2) of ≤150
  • •use of positive end-expiratory pressure (PEEP) >10 cmH2O
  • •active uncontrolled bronchospasm
  • •unstable angina or recent (<6 weeks) myocardial infarction
  • •unstable arrhythmia
  • •intracranial hypertension
  • •platelet count ≤20,000/mm3
  • •international normalized ratio (INR) or activated partial thromboplastin time (aPTT) ratio >1.5
  • •documented treatment-limitation orders in the patient's chart

Arms & Interventions

Bilateral BAL

Experimental

Bronchoscopies are performed in strict accordance with consensus guidelines. The left or right lung is examined with a flexible fiberoptic bronchoscope. If localized infiltrates are present on the chest radiograph, the tip of the scope is wedged into a subsegment of the area displaying the most marked opacity. In the presence of diffuse opacity or when no clear roentgenographic abnormalities are observed, the tip is positioned in the lingula or right middle lobe. Five 20-ml aliquots of sterile normal saline are then injected and reaspirated with a syringe. Bronchoscopy is then repeated in the same manner in the contralateral lung with a second, sterile bronchoscope of the same brand and model.

Intervention: Bilateral BAL (Procedure)

Outcomes

Primary Outcomes

Rate of microbiologic concordance between the right- and left-lung samples

Time Frame: After at least 48 hours of invasive mechanical ventilation

Pneumonia is microbiologically confirmed when the quantitative culture of one or both BAL specimens is positive at significant growth for at least one potential bacterial pathogen. Right and left BAL cultures are classified as concordant when both are positive for the same organism(s) or when neither show any growth. Cultures are classified as discordant when at least one of the microorganisms isolated from one specimen is not recovered from the contralateral specimen.

Secondary Outcomes

  • Possible association between purulent secretions and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between PaO2:FiO2 and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between PEEP and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between CPIS and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between type of humidification and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between duration of mechanical ventilation and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between duration of ICU stay and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between duration of hospital stay and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between immunosuppression and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between antibiotic treatment and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between radiological infiltrate and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between body temperature and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between procalcitonin and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between C-reactive protein and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)
  • Possible association between WBC count and microbiologic concordance between right- and left-lung BAL cultures(At an expected average of 48 hours after bronchoscopy)

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Giuseppe Bello

Medical doctor

Catholic University of the Sacred Heart

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