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Completed

NCT Number: NCT02732795

Sleep Apnea and Obesity Affects on Morphine Pharmacokinetics

Adenotonsillectomy (AT) is one of the most common pediatric surgeries performed, and is estimated to comprise 530,000 procedures in children under 15 years of age. Historically, the leading cause for these procedures was recurrent infections; however, more recently surgical indications include sleep disordered breathing and obstructive sleep apnea (OSAS). Pre-operative polysomnography (PSG) is recommended for all children with suspected OSAS prior to undergoing AT, although it is unclear whether sleep disordered breathing characteristics predict post-operative outcomes or complications.

Obesity has become an epidemic in the pediatric population. More recently, an increased population of obese children are presenting for AT with upper airway obstruction with or without tonsillar hypertrophy, which is similar to the adult etiology of OSAS. Obesity is a multisystem disease, causing fatty liver and cardiac disease, defects in glucose metabolism, insulin resistance, leptin resistance, and creates a state of chronic inflammation. Markers for inflammation, including tumor necrosis factor (TNF)-α, C-reactive protein (CRP), leptin, interleukin (IL)-6 and IL-10, are abnormal in obese patients and have also been linked to more severe OSAS disease in children even after controlling for BMI.

In pediatrics, medication dosing is based on an actual body-weight calculation, however, recent reports suggest that this dosing method is over-dosing patients with obesity. Therefore, increased respiratory complications after surgery may be related to inappropriate intra-operative opioid dosing.

Specific Aim 1 (SA1): To compare morphine pharmacokinetics in normal children <=12 years of age, non-obese children with severe OSAS, and obese children with severe OSAS. The investigators hypothesize that obesity independently enhances morphine pharmacokinetics.

Specific Aim 2 (SA2): To determine whether biomarkers related to obesity, chronic inflammation, and OSAS predict changes to morphine pharmacokinetics. The investigators hypothesize that inflammatory and obesity-related biomarkers are elevated in overweight children with OSAS, more so in obese children with OSA, compared to lean children with OSAS. In addition, the investigators hypothesizes that leptin independently is linked to altered morphine pharmacokinetics.

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Key information

Age range

5 year–12 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Bloomberg Children's Hospital

Baltimore, Maryland, 21287, United States

Who can participate

Healthy volunteers accepted: Yes

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

Inclusion criteria

  • Child presenting for surgery that will require opioids
  • Age between 5 -12 years of age

OSAS group:

  • Pre-operative polysomnography study conducted prior to day of surgery

Obese:

  • Body weight >95th percentile for age.

Exclusion criteria

  • Emergency procedures involving AT, including tonsillar bleeding
  • Patients allergic to morphine
  • Patients with comorbidities altering opioid metabolism (i.e. liver disease)
  • Patients with chronic inflammatory, rheumatologic, or other confounding co-morbid diseases (i.e. Crohns disease, ulcerative colitis, sickle cell, Sjogren's, etc.)

Treatment and study plan

Morphine pharmacokinetic evaluation

Other

Each group received morphine and blood drawn to evaluate morphine PK

Primary outcomes

  1. Plasma Morphine Area Under the Curve (AUC)

    Time frame: Through study completion, up to 24 hours after study initiation

    To determine changes in morphine AUC due to obesity and OSAS

  2. Maximum Plasma Morphine Concentration (Cmax)

    Time frame: Through study completion, up to 24 hours after study initiation

    To determine changes in morphine Cmax due to obesity and OSAS

  3. Time to Maximum Plasma Morphine Concentration (Tmax)

    Time frame: Through study completion, up to 24 hours after study initiation

    To determine changes in morphine Tmax due to obesity and OSAS

  4. Half Life of Plasma Morphine Concentration (T1/2)

    Time frame: Through study completion, up to 24 hours after study initiation

    To determine changes in morphine T1/2 due to obesity and OSAS

  5. Plasma Morphine Clearance (Cl)

    Time frame: Through study completion, up to 24 hours after study initiation

    To determine changes in morphine Cl due to obesity and OSAS

  6. Plasma Morphine Volume of Distribution (Vd)

    Time frame: Through study completion, up to 24 hours after study initiation

    To determine changes in morphine Vd due to obesity and OSAS

  7. Plasma Morphine 3-glucuronide (M3G) Maximum Plasma Concentration (Cmax)

    Time frame: Through study completion, up to 24 hours after study initiation

    To determine changes in M3G Cmax due to obesity and OSAS

  8. Time to Maximum Morphine 3-glucuronide (M3G) Concentration (Tmax)

    Time frame: Through study completion, up to 24 hours after study initiation

    To determine changes in M3G Tmax due to obesity and OSAS

  9. Morphine 3-glucuronide (M3G) to Morphine ratio

    Time frame: Through study completion, up to 24 hours after study initiation

    To determine changes in metabolism of morphine due to obesity and OSAS

  10. Morphine 3-glucuronide (M3G) to Morphine 6-glucuronide (M6G) ratio

    Time frame: Through study completion, up to 24 hours after study initiation

    To determine changes in metabolism of morphine due to obesity and OSAS

Secondary outcomes

  1. Biomarker concentrations

    Time frame: Through study completion, up to 24 hours after study initiation

    To determine whether inflammatory biomarkers correlate to the severity of sleep apnea. Biomarkers that will be studied include IL 1,6,10, CRP, TNF-alpha, leptin, and insulin.

Sponsors and collaborators

Lead sponsor

Johns Hopkins University

Other

Registry information

Official study title

Effects of Obstructive Sleep Apnea Syndrome and Obesity on Morphine Pharmacokinetics in Children

Important dates

Study start
2015
Primary completion
2018
Study completion
2018
First posted
Apr 11, 2016
Registry last updated
Sep 9, 2019

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.

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