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Completed

NCT Number: NCT02496650

Dexmedetomidine Addition to Benzodiazepines for Patients With Alcohol Withdrawal State in the ICU

The objective of this randomized controlled study was to evaluate whether DEX addition to benzodiazepine therapy is effective and safe for AWS patients in the intensive care unit (ICU). Eligible participants were randomly assigned to intervention (D) and control (C) groups. In the group D DEX infusion was started in doses 0,2-1,4 μg/kg/hr and titrated to achieve target sedation level; symptom-triggered BZD administration (diazepam 10mg bolus) were used wherever DEX infusion was not enough. In group K BZD boluses (diazepam 10mg) were used to achieve target sedation level and to control AWS symptoms (symptom-triggered administration). The primary efficacy outcomes were 24-hour diazepam consumption and cumulative diazepam dose required over the course of ICU stay, secondary outcomes were length of ICU stay, sedation and communication quality, haloperidol consumption.

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Key information

Age range

18 year–75 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 4

About this study

Ethical issues This study was approved by the Bogomolets National Medical University ethics committee and a written informed concern was obtained from the patient, the patient's family or a legal representative.

Study design This randomized, single-center, controlled study was conducted in the adult ICU at private hospital "Boris" in Kiyv (Ukraine). The inclusion criteria were: age 18 or older, signed informed concern, within 2 hours of ICU admission, diagnosed alcohol withdrawal syndrome or alcohol withdrawal delirium by DSM IV criteria (). The exclusion criteria were age younger than 18 or older than 75, history of use or withdrawal states of other psychoactive substances, general anesthesia during last 24 hours or known other sedatives use, severe neurologic disorder (traumatic brain injury, acute stroke, severe dementia), pregnancy or lactation, severe comorbidities (severe heart failure, acute myocardial infarction, heart rate <50/min, glomerular filtration rate < 30 ml/min, liver failure Child-Pugh class C), known allergy to the study medication.

After primary patient assessment the target sedation level was set individually and study treatment begun. Eligible participants were randomly assigned in a 1:1 ratio to the intervention (group D) and control groups using random assignment in block of four. In group D DEX infusion was started in doses 0,2-1,4 μg/kg/hr and titrated to achieve target sedation level; symptom-triggered BZD administration (diazepam 10mg bolus) were used wherever DEX infusion was not enough. In group K BZD boluses (diazepam 10mg) were used to achieve target sedation level and to control AWS symptoms (symptom-triggered administration). Antipsychotics (haloperidol 5mg boluses) were used as a rescue medication in both groups for severe agitation or hallucinations.

Study outcomes and statistical analysis The primary efficacy outcomes were 24-hour diazepam consumption after study begins and cumulative diazepam dose required over the course of ICU stay.

The secondary efficacy outcomes include:

  • length of ICU stay and intubation rates;
  • sedation quality: the time of target sedation (proportion of time in target sedation range (in most cases RASS score 0 to -2) to the total sedation time); the time of insufficient sedation (duration of ineffective sedation (in most cases RASS score ≥+2) to the total sedation time); the time of oversedation (duration of excessive sedation (in most cases RASS ≤-3) to the total sedation time); the number of rescue sedation boluses and sedation stops in 24 hours;
  • communication quality (from 0 to 10, were 0 - uncommunicative, 10 - patient communicates well) and ability to asses pain with Visual Analogue Scale (VAS);
  • haloperidol requirements and cumulative dose during ICU stay. Safety was estimate by monitoring vital sighs, ECG, laboratory tests (paO2, SaO2, blood sugar), and adverse events. Adverse events were evaluated if systolic blood pressure was lower than 90 mm Hg of higher than 160 mm Hg or heart rate was lower than 50/min or higher than 110/min; desaturation were estimated as SpO2 (or SaO2) lower than 90%; hypoglycemia was defined as serum glucose lower than 4 mmol/L and hyperglycemia as higher than 10 mmol/L. Intervention for bradycardia, tachycardia, hypertension and hypotension were titration or interruption of study agent or drug therapy.

Sedation was assessed using Richmond Agitation Sedation Scale (RASS) and AWS symptoms severity - with Clinical Institute Withdrawal Assessment of Alcohol Scale, Revised (CIWA-Ar). RASS was monitored every 2-6 hours and prior to rescue therapy, CIWA-Ar was assessed on the daily basis during sedation stops.

Randomization sequence was generated using a computer algorithm [www.random.org]. Both randomization and data analysis were conducted by independent blind member of research team.

A statistical analysis was performed using Statistics 6.0 and R software. Categorical data are presented as proportions; continuous data - as medians (InterQuartile Range, IQR 25-75%). Chi-square testing demonstrates that all variables under study are discrete. To assess significances two-tailed Mann-Whitney U test and Fisher exact test were used. A P-value of less than 0.05 defined as significant.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • age 18 or older,
  • signed informed concern,
  • within 2 hours of ICU admission,
  • diagnosed alcohol withdrawal syndrome or alcohol withdrawal delirium by DSM IV criteria

Exclusion criteria

  • younger than 18 or older than 75,
  • history of use or withdrawal states of other psychoactive substances,
  • general anesthesia during last 24 hours or known other sedatives use,
  • severe neurologic disorder (traumatic brain injury, acute stroke, severe dementia),
  • pregnancy or lactation,
  • severe comorbidities (severe heart failure, acute myocardial infarction, heart rate <50/min, glomerular filtration rate < 30 ml/min, liver failure Child-Pugh class C),
  • known allergy to the study medication.

Treatment and study plan

Dexmedetomidine

Drug

DEX infusion in doses 0,2-1,4 μg/kg/hr

Other names: Dexdor

Primary outcomes

  1. 24-hour diazepam consumption

    Time frame: 24 hours

    24-hour diazepam consumption was estimated after the study begins.

  2. Cumulative diazepam dose

    Time frame: 30 days

    Diazepam dose required over the course of ICU stay

Secondary outcomes

  1. Length of ICU stay

    Time frame: 30 days

  2. the time of target sedation

    Time frame: 24 hours

    proportion of time in target sedation range (in most cases RASS score 0 to -2) to the total sedation time

  3. the number of rescue sedation boluses

    Time frame: 24 hours

  4. the number of sedation stops

    Time frame: 24 hours

  5. Adverse events

    Time frame: 30 days

    hypotension, hypertension, tachycardia, bradicardia, desaturation

Sponsors and collaborators

Lead sponsor

Bogomolets National Medical University

Other

Registry information

Official study title

Dexmedetomidine Addition to Benzodiazepines for Patients With Alcohol Withdrawal Syndrome in the ICU: a Randomised Controlled Study

Important dates

Study start
2013
Primary completion
2015
Study completion
2015
First posted
Jul 14, 2015
Registry last updated
Jul 14, 2015

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.