A Non-Interventional Study to Develop a Pharmacokinetic - Pharmacodynamic Model for Individualized Propofol Dosing
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 26
- 试验地点
- 1
- 主要终点
- Change in propofol clearance and volume of distribution (for determination of effective concentration); Depth of anesthesia.
研究概览
简要总结
The U.S. National Health and Nutrition Examination Survey of 1994 indicated that 59% of American men and 49% of women have body mass indexes (BMIs) over 25. Extreme obesity, defined as a BMI of 40 or more, was found in 2% of the men and 4% of the women [http://www.cdc.gov/nchs/nhanes.htm\]. The newest survey in 2007 indicates an alarming increase in BMI; 63% of Americans are overweight, with 26% now in the obese category. With extreme obesity as high as 26-30% in adults, obesity percentages in children are also sharply on the rise. These alarming numbers pose a major clinical problem in terms of the safe and effective use of drugs in children.
Obesity may alter the disposition and/or clearance of drugs in the body as well as the response, which should be considered when using anesthetics in these patients. Total intravenous anesthesia (TIVA) with propofol is widely used in children, adolescents and adults undergoing surgery, because of rapid onset of action, ease of titration and rapid offset of action. While extensive research on optimal propofol dosing has been performed in non-obese adults, including in critically ill mechanically ventilated adult patients by the investigators' collaborators, there is no evidence on required dosages in morbidly obese adult or pediatric patients of this highly lipophilic agent. As a consequence, serious problems do arise due to under- and overdosing, increasing the risk of inadequate effects and adverse events, respectively. Crucial additional information is needed on the pharmacokinetics of drugs used in morbidly obese children to improve safety and efficacy.
This proposal will test a novel approach by identifying pharmacokinetic/pharmacodynamic (PK/PD) factors that are associated with response to therapy and adverse events. If successful, this study will provide proof of concept data for PK/PD model-based dosing strategy that can be implemented into daily clinical care to allow tailoring of dose to individual needs. Propofol is a versatile anesthetic agent which if dosed to individual needs based on a patient's characteristics and specific PK/PD parameters, will allow individualized dosing, thereby greatly reducing related toxicities. The prospective identification of predictive factors in these morbidly obese high-risk patients represents a new approach to an increasingly common clinical problem. The investigators expect that this study will generate the PK/PD data necessary to continue with a well powered prospective clinical trial.
详细描述
STUDY OBJECTIVES Hypothesis: The inter-patient variability in propofol effects in relation to clinical response and adverse events in morbidly obese adolescents is associated with identifiable pharmacokinetic factors.
Specific Aim 1: Determine to what extent body weight affects propofol pharmacokinetics (PK) and pharmacodynamics (PD) in morbidly obese adolescents.
Specific Aim 2: Develop a PK/PD model-based dosing algorithm for individualized propofol dosing in morbidly obese adolescents.
To address this hypothesis, we will conduct a clinical study evaluating the pharmacokinetics and pharmacodynamics of propofol in 20 morbidly obese subjects scheduled to undergo laparoscopic gastric banding or another elective procedure. Full PK/PD profiles will be obtained during surgery and the Bispectral index monitor will be used as a validated approach for PD monitoring, a measure of depth of anesthesia (5). The population nonlinear mixed effect modeling (NONMEM) approach will be used with extensive covariate analysis to account for observed inter- and intraindividual variability (6, 7). The potential covariates affecting propofol PK (and PD) we will explore include total body weight, lean body mass, Body Mass Index (BMI), Body Surface Area (BSA), height, age, gender, type of procedure, and duration of procedure.
In addition, in an exploratory fashion, we will evaluate propofol pharmacogenetics. CYP2B6 and UGT1A9 are highly polymorphic enzyme responsible for the metabolism of propofol (20, 21). Novel allelic forms of CYP2B6 (22) and UGT1A9 (23) were identified recently that potentially could explain some of the large between patient variability in clearance resulting in large differences in propofol blood concentrations and responses to standard doses.
研究设计
- 研究类型
- Observational
- 观察模型
- Case Only
- 时间视角
- Prospective
入排标准
- 年龄范围
- 5 Years 至 18 Years(Child, Adult)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Age 5 to 18 years of age;
- •Have a Body Mass Index (BMI) greater than 30;
- •Be scheduled for bariatric or other elective surgical procedure;
- •Will be administered propofol anesthesia as part of procedure and standard of care and subject is expected to be under anesthesia for at least 60 minutes;
- •Signed and dated IRB-approved Informed Consent or Parental Permission and Assent form, as applicable.
排除标准
- •Patients receiving investigational agent as part of another clinical study;
- •Patients with severe developmental delay, known neurological disorders;
- •Conditions where the placement of the sensor or process of assessment could interfere with the BIS monitoring;
- •Allergy to propofol / anaphylaxis to egg protein;
- •History of severe sleep apnea;
- •Anticipated difficult airway access;
- •Significant allergies and sensitivities to tape and/or adhesives.
结局指标
主要结局
Change in propofol clearance and volume of distribution (for determination of effective concentration); Depth of anesthesia.
时间窗: Samples will be analyzed within one month of collection
次要结局
- Population PK/PD model (NON-MEM) using patient demographic and clinical data.(one year)
