Evaluation of the Effect of Ketamine on Remifentanil-induced Hyperalgesia Using Filaments, an Algometer, and Interleukins: a Double-blind, Randomized Study
试验速览
- 阶段
- 3 期
- 状态
- 已完成
- 发起方
- 入组人数
- 60
- 试验地点
- 1
- 主要终点
- Pain 30 Minutes
研究概览
简要总结
The aim of this study was to determine if the addition of ketamine reduces remifentanil-induced hyperalgesia, improves its analgesic effect, inhibits IL(interleukin)-6 and IL-8 (inflammatory cytokines), and stimulates IL-10 (an anti-inflammatory cytokine).
详细描述
Opioids are very effective in pain relief, but they might lower pain threshold, making the patient more sensitive to a pain stimulus, a condition known as hyperalgesia [Angst; Clarck, 2006]. Opioid-induced hyperalgesia (OIH) is usually defined as a reduction in nociceptive thresholds in the peripheral field of the sensitized fibers [Koppert et al., 2003], and it is associated with increased pain and higher demand for postoperative analgesia [Guignard et al., 2000]. This phenomenon adversely impacts pain control, and has been suggested to occur in the peri-operative context, especially associated with the use of remifentanil, a short-acting opioid [Guignard et al., 2000].
Several mechanisms have been proposed to explain the hyperalgesia phenomenon, but the most important seems to be the activation of N-methyl-D-aspartate (NMDA) receptors [Célèrier et al., 2000]. Ketamine is a NMDA receptor antagonist that has been shown to reduce postoperative pain and the need for postoperative anesthetics and analgesics. Therefore, it is proposed that ketamine could prevent hyperalgesia, resulting in more effective and long-lasting postsurgical analgesia [Célèrier et al. 2000].
The results of studies of low dose of ketamine in the prevention of remifentanil-induced hyperalgesia are controversial. Joly et al. [2005] demonstrated a reduction in the consumption of opioids and in hyperalgesia assessed with monofilaments. However, Engelhardt et al [2008] showed no differences in pain scores or in postoperative opioid consumption.
In addition, some authors observed higher levels of proinflammatory cytokines, associated with increased pain in mice receiving chronic opioid (morphine) infusion [Johnston et al., 2004; Liang et al., 2008]. Also, administration of proinflammatory cytokine inhibitors reduced phosphorylation of NMDA receptors [Zhang et al., 2008]. However, no study has examined the relationship between the use of remifentanil, the most frequently implicated opioid in OIH [Guignard et al., 2000], ketamine (drug capable of inhibiting NMDA-receptors and cytokines) [Dale et al., 2012], and the inflammatory response.
The aim of this study was to determine if the addition of ketamine reduces remifentanil-induced hyperalgesia, improves its analgesic effect, inhibits IL-6 and IL-8 (inflammatory cytokines), and stimulates IL-10 (an anti-inflammatory cytokine) in patients submitted to laparoscopic cholecystectomy, a procedure with an usually neglected potential for postoperative pain and that has been poorly investigated in association with OIH.
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Parallel
- 主要目的
- Prevention
- 盲法
- Quadruple (Participant, Care Provider, Investigator, Outcomes Assessor)
入排标准
- 年龄范围
- 18 Years 至 78 Years(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •≥ 18 years old
- •both sexes
- •ASA physical status I or II
- •undergoing laparoscopic cholecystectomy
排除标准
- •chronic users of analgesics or had used opioids within 12 h of surgery
- •history of drug or alcohol abuse or psychiatric disorder
- •contraindications to self-administration of opioids (ie, unable to understand the patient-controlled analgesia [PCA] device)
- •contraindication for the use of ketamine, such as a psychiatric disorder, acute cardiovascular disorder, or unstable hypertension
研究组 & 干预措施
Ketamine
A cardioscope, a capnograph, a pulse oximeter, and a noninvasive blood pressure meter were used to monitor the patients. Propofol (2-4 mg/kg), remifentanil (1 μg/kg), and atracurium (0.5 mg/kg) were administered for intubation. Atracurium was titrated to maintain muscle relaxation. Anesthesia was maintained with remifentanil, 0.8% isoflurane, and 50% oxygen without nitrous oxide. Infusion of the solutions was continued until skin closure.
The patients in group ketamine received remifentanil (0.4 μg/kg/min) and ketamine (5 μg/kg/min).
Remifentanil was administered as necessary until skin closure. Neostigmine was used for antagonizing the neuromuscular block.
干预措施: Ketamine (Drug)
Saline
A cardioscope, a capnograph, a pulse oximeter, and a noninvasive blood pressure meter were used to monitor the patients. Propofol (2-4 mg/kg), 1 μg/kg remifentanil, and atracurium (0.5 mg/kg) were administered for intubation. Atracurium was titrated to maintain muscle relaxation. Anesthesia was maintained with remifentanil, 0.8% isoflurane, and 50% oxygen without nitrous oxide. Infusion of the solutions was continued until skin closure.
The patients in group saline received remifentanil (0.4 μg/kg/min) and saline solution.
Remifentanil was administered as necessary until skin closure. Neostigmine was used for antagonizing the neuromuscular block.
干预措施: Saline (Drug)
结局指标
主要结局
Pain 30 Minutes
时间窗: 30 minutes
The scale measure pain after 30 minutes (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
Pain 60 Minutes
时间窗: 60 minutes
The scale measure pain after 60 minutes (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
Pain 150 Minutes
时间窗: 150 minutes
The scale measure pain after 150 minutes (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
Pain 180 Minutes
时间窗: 180 minutes
The scale measure pain after 180 minutes (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
Pain 210 Minutes
时间窗: 210 minutes
The scale measure pain after 210 minutes (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
Pain 240 Minutes
时间窗: 240 minutes
The scale measure pain after 240 minutes (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
Pain 6 Hours
时间窗: 6 hours
The scale measure pain after 6 hours (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
Pain 90 Minutes
时间窗: 90 minutes
The scale measure pain after 90 minutes (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
Pain 120 Minutes
时间窗: 120 minutes
The scale measure pain after 120 minutes (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
Pain 18 Hours
时间窗: 18 hours
The scale measure pain after 18 hours (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
Pain 24 Hours
时间窗: 24 hours
The scale measure pain after 24 hours (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
Pain 12 Hours
时间窗: 12 hours
The scale measure pain after 12 hours (0 - without pain and 10 worst pain possible). The individual can choose any number between 0 - 10.
次要结局
- Time to First Morphine Supplementation(24 hours)
- Morphine Consumption Within 24 h(24 hours)
- Hyperalgesia in the Postoperative Period as Measured With Monofilaments in Thenar Eminence(24 hours after procedure)
- Hyperalgesia in the Preoperative Period as Measured With Monofilaments in Thenar Eminence(Before the procedure (Baseline))
- Hyperalgesia in the Preoperative Period as Measured With Algometer in Thenar Eminence(Baseline (before the procedure))
- Hyperalgesia in the Postoperative Period as Measured With Algometer in Thenar Eminence(24 h after the procedure)
- Serum Level of Interleukin (IL)-10 Before the Procedure(Baseline (Before the procedure))
- Hyperalgesia in the Preoperative Period as Measured With Monofilaments in the Periumbilical Region(Before the procedure (Baseline))
- Hyperalgesia in the Postoperative Period as Measured With Monofilaments in the Periumbilical Region(24h after the procedure)
- Hyperalgesia in the Preoperative Period as Measured With Algometer in the Periumbilical Region(Baseline (before the surgery))
- Hyperalgesia in the Postoperative Period as Measured With Algometer in the Periumbilical Region(24 h after the procedure)
- Allodynia as Detected With a Soft Brush in the Thenar Eminence Before the Procedure(Before the procedure (Baseline))
- Allodynia as Detected With a Soft Brush in the Periumbilical Region Before the Procedure(Before the procedure (Baseline))
- Extension of Hyperalgesia(24 hours after the procedure)
- Allodynia as Detected With a Soft Brush in the Periumbilical Region 24 h After the Procedure(24 h after the procedure)
- Allodynia as Detected With a Soft Brush in the Thenar Eminence 24 h After the Procedure(24 h after the procedure)
- Serum Level of Interleukin (IL)-6 Before the Procedure(Baseline (Before the procedure))
- Serum Level of Interleukin (IL)-8 Before the Procedure(Baseline (Before the procedure))
- Serum Level of Interleukin (IL)-10 5h After the Procedure(5h after the procedure)
- Serum Level of Interleukin (IL)-6 5 h After the Procedure(5 h after the procedure)
- Serum Level of Interleukin (IL)-6 24 h After the Procedure(24 h after the procedure)
- Serum Level of Interleukin (IL)-8 5 h After the Procedure(5 h after the procedure)
- Serum Level of Interleukin (IL)-10 24 h After the Procedure(24 h after the procedure)
- Serum Level of Interleukin (IL)-8 24 h After the Procedure(24 h after the procedure)
研究者
Plínio da Cunha Leal
Master's degree
Federal University of São Paulo
