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A Randomized, Dose-Ranging Trial of Propofol-Only and Dexmedetomidine-Propofol in Children Undergoing Magnetic Resonance Imaging

Status: Recruiting
Location: See location...
Intervention Type: Drug
Study Type: Interventional
Study Phase: Phase 4
SUMMARY

The most common imaging procedure requiring sedation/anesthesia for the pediatric population is magnetic resonance imaging (MRI). However, the optimal anesthetic/sedation plan has not been determined for these procedures. Historically, common medications have included the use of pentobarbital and propofol, but in 2015, publication in the New England Journal of Medicine highlighted the accumulating evidence for the possible neurotoxic effects of these types of anesthetics in animal models and a collection of epidemiologic studies in humans. Although these initial possibilities have since been proven as less of a concern, in the interim, data has shown that alternative sedative agents, such as dexmedetomidine, may not have the same neurotoxic effect and could possibly even provide neuroprotection. Dexmedetomidine also possesses other beneficial traits such as reducing risks of pulmonary atelectasis or upper airway collapse, typically found with the administration of propofol. A concern raised by previous studies has been the possibility that the addition of dexmedetomidine could increase recovery times, leading to disruptions in workflow. Although it has been shown that large doses of dexmedetomidine exposure may lead to longer PACU stays, it is uncertain whether a small dose of dexmedetomidine would have such a significant impact. Based on the investigators' pilot trial6, the investigators found that a bolus of 1 mcg/kg dose of dexmedetomidine with a bolus of titrated propofol of 2-3 mg/kg and an infusion of propofol of 100 mcg/kg/min provided adequate sedation for successful scans, reduced propofol (infusion) exposure by 60%, and did not significantly increase recovery times. Finally, there is a paucity in literature for studies examining a range of doses subsequently; often, a control group is compared to a single, self-selected dose of choice. Here, the investigators hope to provide a range of doses to minimize selection bias in our study design and determine the dose that would provide the optimal sedation for these scans and minimize excess anesthetic exposure.

Eligibility
Participation Requirements
Sex: All
Minimum Age: 1
Maximum Age: 12
Healthy Volunteers: f
View:

• Patients presenting as outpatients, scheduled to receive an anesthetic for MRI of brain, body (spine, chest, abdomen, and/or pelvis) and/or extremity (arm and/or leg).

• Patients must be a candidate for the sedation technique described in this study with a natural airway. This decision will be made by a staff member of the Department of Anesthesiology.

• Between 1 and 12 years of age.

• ASA status I, II, or III

Locations
United States
Massachusetts
Boston Children's Hospital
RECRUITING
Boston
Contact Information
Primary
Samuel Kim, BS
samuel.kim@childrens.harvard.edu
617-919-3692
Backup
Rachel Bernier, MPH
rachel.bernier@childrens.harvard.edu
857-218-5348
Time Frame
Start Date: 2026-06
Estimated Completion Date: 2028-03
Participants
Target number of participants: 105
Treatments
Active_comparator: Propofol Only (P)
1 mg/kg (max 25 kg) of IV lidocaine (standard of care) will be given. 2-4 mg/kg titrated bolus of propofol will be administered, which can be repeated 2x until a Ramsay Sedation Score of 5-6 is achieved. After that, 250 mcg/kg/min infusion of propofol will be initiated and can be titrated up to a maximum of 300 mcg/kg/min to maintain a Ramsay Sedation Score of 5-6. If not sedated after 5 more minutes, record a technique failure and continue sedation at anesthesiologist's discretion. Per standard of care, the propofol infusion may be decreased if the blood pressure decreases by more than 30% from lowest expected norms or if there is any indication of possible airway obstruction.
Active_comparator: Dexmedetomidine (high)-Propofol (DHP)
1 mcg/kg dexmedetomidine (DEX) bolus over 5-10 minutes will be delivered by fractionated doses or infusion. After the DEX bolus is complete, 1 mg/kg (max 25 mg) of IV lidocaine will be administered followed by a dose of 2-3 mg/kg titrated bolus of propofol (P), which can be repeated 2x until a Ramsay Sedation Score of 5-6 is achieved. After this, 150 mcg/kg/min infusion of P will be initiated. If the Ramsay Sedation score of 5-6 is not achieved within 2 minutes, 1-2 mg/kg bolus of P may be administered and P infusion will be increased to 200 mcg/kg/min. The P infusion can be titrated up to a maximum of 300 mcg/kg/min if needed to maintain a Ramsay Sedation Score of 5-6. If not sedated after 5 more minutes, record a technique failure and continue sedation at anesthesiologist's discretion. Per standard of care, the propofol infusion may be decreased if the blood pressure decreases by more than 30% from lowest expected norms or if there is any indication of possible airway obstruction.
Active_comparator: Dexmedetomidine (low)-Propofol (DLP)
0.5 mcg/kg dexmedetomidine (DEX) bolus over 5-10 minutes will be delivered by fractionated doses or infusion. After the DEX bolus is complete, 1 mg/kg (max 25 mg) of IV lidocaine will be administered followed by a dose of 2-3 mg/kg titrated bolus of propofol (P), which can be repeated 2x until a Ramsay Sedation Score of 5-6 is achieved. After this, 150 mcg/kg/min infusion of P will be initiated. If the Ramsay Sedation score of 5-6 is not achieved within 2 minutes, 1-2 mg/kg bolus of P may be administered and P infusion will be increased to 200 mcg/kg/min. The P infusion can be titrated up to a maximum of 300 mcg/kg/min if needed to maintain a Ramsay Sedation Score of 5-6. If not sedated after 5 more minutes, record a technique failure and continue sedation at anesthesiologist's discretion. Per standard of care, the propofol infusion may be decreased if the blood pressure decreases by more than 30% from lowest expected norms or if there is any indication of possible airway obstruction.
Related Therapeutic Areas
Sponsors
Leads: Boston Children's Hospital

This content was sourced from clinicaltrials.gov