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NCT Number: NCT01661907

Anesthesia-analgesia Methods and Postoperative Delirium

Postoperative delirium is a common complication in elderly patients after surgery. Its occurrence is associated with worse outcomes. The pathophysiology of delirium remains poorly understood. However, an universal phenomenon is that delirium frequently occurs in elderly patients after major complicated surgery, but is rarely seen after minor ambulatory surgery (such as cataract surgery). This indicates that stress response produced by surgery might have an important role in the pathogenesis of delirium. It has been reported that, when compared with general anesthesia and postoperative intravenous analgesia, neuraxial anesthesia and analgesia reduced the occurrence of postoperative complications and mortality in high risk patients. Combined epidural-general anesthesia is frequently used in clinical practice. This anesthetic method provides advantages of both epidural and general anesthesia, i.e. it blocks the afferent pathway of nociceptive stimulus by neuraxial blockade during and after surgery, and allows patients to endure long-duration surgery without any awareness. The investigators hypothesize that combined epidural-general anesthesia and postoperative epidural analgesia can decrease the incidence of delirium in elderly patients after major surgery when compared with general anesthesia alone and postoperative intravenous analgesia.

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Key information

Age range

60 year–90 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Department of Anesthesiology and Critical Care Medicine, Peking University First Hospital

Beijing, 100034, China

About this study

Delirium is an acutely occurred and transient mental syndrome characterized by global impairment of cognitive functions, reduced level of consciousness, abnormalities of attention, increased or decreased psychomotor activity, and disordered sleep-wake cycle. Postoperative delirium is a common complication in elderly patients after surgery. Dyer et al reviewed 80 primary studies and found that the mean incidence of postoperative delirium is about 36.8% (range 0%-73.5%) after surgery. It occurs in up to 80% of patients in the intensive care unit (ICU). Our recent studies found that delirium occurred in 51.0% of patients after cardiac surgery and in 44.5% of patients after non-cardiac surgery.

The occurrence of postoperative delirium is associated with worse outcomes. Studies showed that delirious patients have prolonged ICU stay, increased incidence of complications, prolonged hospitalization, high mortality rate, and increased health care costs. Delirium is also associated with increased risk of long-term cognitive decline and poor quality of life. A recent follow-up study (mean follow-up time 27.9 ± 3.1 months) by our research group found that, after adjusting factors such as age, occurrence of postoperative complications, and stage of cancer, etc, the occurrence of postoperative delirium still remained an independent predictor of long-term mortality.

The pathophysiology of delirium remains poorly understood. An universal phenomenon is that delirium frequently occurs in elderly patients after major complicated surgery, but is rarely seen after minor ambulatory surgery (such as cataract surgery). Studies also found that postoperative pain is an independent risk factor of delirium, whereas effective pain relief may help to reduce the incidence of delirium. Our recent studies showed that high serum cortisol level is an independent risk factor of postoperative delirium. In addition, inflammatory response may also contribute to the pathogenesis of delirium. Trauma, pain, cortisol secretion and inflammation are all important components of surgical stress response. The above results indicated that stress response produced by surgery might have an important role in the pathogenesis of delirium.

Previous studies demonstrated that, when compared with general anesthesia, neuraxial anesthesia attenuates the hypersecretion of cortisol, and decreases the intensity of inflammatory response more effectively after surgery. And epidural analgesia provides better postoperative pain relief than intravenous analgesia. It was also reported that, when compared with general anesthesia and intravenous analgesia, neuraxial anesthesia and analgesia reduces the occurrence of postoperative complications and mortality in high risk patients. Combined epidural-general anesthesia is frequently used in clinical practice, and is performed in about 1/4 of patients undergoing surgery in the applicant's hospital. Theoretically, this anesthetic method provides advantages of both epidural and general anesthesia, i.e. it blocks the afferent pathway of nociceptive stimulus by neuraxial blockade during and after surgery, and allow patients to endure long-duration complicated surgeries without any awareness. However, there is no evidence whether combined epidural-general anesthesia/postoperative epidural analgesia can decrease the incidence of postoperative delirium in elderly patients undergoing major surgery.

The objective of the study is to compare the effects of combined epidural-general anesthesia/postoperative epidural analgesia and general anesthesia/postoperative intravenous analgesia on the incidence of postoperative delirium in elderly patients undergoing major noncardiac surgery.

Who can participate

Healthy volunteers accepted: No

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

Inclusion criteria

  • elderly patients (age range 60-90 years);
  • scheduled to undergo noncardiac thoracic or abdominal surgery with an expected duration of 2 hours or longer. For those who undergo thoracoscopic or laparoscopic surgery, the expected length of incision must be 5 centimeters or more;
  • agree to receive patient-controlled postoperative analgesia.

Exclusion criteria

(patients who meet any of the following criteria will be excluded):

  • previous history of schizophrenia, epilepsy or Parkinson disease, or unable to complete preoperative assessment due to severe dementia, language barrier or end-stage disease;
  • history of myocardial infarction within 3 months before surgery;
  • any contraindication to epidural anesthesia and analgesia, including abnormal vertebral anatomy, previous spinal trauma or surgery, severe chronic back pain, coagulation disorder (prothrombin time or activated partial prothrombin time longer than 1.5 times of the upper limit of normal, or platelet count of less than 80 × 10^9/L), local infection near the site of puncture, and severe sepsis;
  • severe heart dysfunction (New York Heart Association functional classification 3 or above), hepatic insufficiency (Child-Pugh grades C), or renal insufficiency (serum creatinine of 442 μmol/L or above, with or without serum potassium of 6.5 mmol/L or above, or requirement of renal replacement therapy); or
  • any other conditions that were considered unsuitable for study participation.

Treatment and study plan

Combined Epi-GA/PCEA

Procedure

An epidural catheter will be placed before the induction of general anesthesia. General anesthesia will be induced and maintained as in the control group, with the addition of epidural anesthesia which will be maintained with the use of 0.375%-0.5% ropivacaine during surgery. Patient-controlled epidural analgesia will be provided after surgery.

GA/PCIA

Procedure

General anesthesia will be induced with midazolam, propofol, sufentanil and rocuronium. Anesthesia will be maintained with either intravenous (propofol), inhalational (sevoflurane with or without nitrous oxide), or combined intravenous-inhalational anesthetics. Additional opioids (remifentanil, sufentanil, fentanyl, or morphine) and muscle relaxant (rocuronium, atracurium, or cisatracurium) will be administered when deemed necessary by the attending anesthesiologists. Patient-controlled intravenous analgesia will be provided after surgery.

Primary outcomes

  1. Incidence of postoperative delirium

    Time frame: During the first 7 days after surgery.

    Patients will be visited twice daily during the first seven days after surgery (between 08:00 h and 10:00 h, and between 18:00 h and 20:00 h). Delirium will be assessed with the Confusion Assessment Method for the Intensive Care Unit (CAM-ICU). The incidence is calculated as percentage of patients who develope any episode of delirium during that period.

Secondary outcomes

  1. Intensive care unit (ICU) admission after surgery

    Time frame: During the day of surgery.

    The proportion of patients admitted to the ICU after surgery

  2. APACHE II score at ICU admission

    Time frame: Within 24 hours after surgery.

    For patients admitted to the ICU after surgery, the worst Acute Physiology and Chronic Health Evaluation II (APACHE II) score within 24 h will be recorded.

  3. The percentage of ICU admission with endotracheal intubation

    Time frame: During the day of surgery.

    The percentage of ICU admission with endotracheal intubation.

  4. The duration of Mechanical Ventilation in ICU

    Time frame: Up to 30 days after surgery.

    For patients admitted to the ICU after surgery, the duration of mechanical ventilation (for those with endotracheal tubes) will be recorded.

  5. The Length of ICU stay

    Time frame: Up to 30 days after surgery.

    For patients admitted to the ICU after surgery, the length of ICU stay will be recorded.

  6. Time to the first onset of delirium

    Time frame: Up to 7 days after surgery.

    Patients will be visited twice daily during the first seven days after surgery (between 08:00 h and 10:00 h, and between 18:00 h and 20:00 h). Delirium will be assessed with the Confusion Assessment Method for the Intensive Care Unit (CAM-ICU).

  7. Time to fluid/food intake

    Time frame: Up to 30 days after surgery.

    Patients will be followed-up until 30 days after surgery and time to fluid and food intake after surgery will be recorded.

  8. Length of stay in hospital after surgery

    Time frame: Up to 30 days after surgery.

    Patients will be followed-up until 30 days after surgery.

  9. All-cause 30-day mortality

    Time frame: Within the first 30 days after surgery.

    All-cause 30-day mortality

  10. Non-delirium complications within 30 days after surgery surgery

    Time frame: Within the first 30 days after surgery.

    Defined as newly occurred medical conditions other than delirium that are harmful to patients' postoperative recovery and required therapeutic intervention (i.e., grade II or higher on the Clavien-Dindo classification).

  11. The intensity of postoperative pain

    Time frame: During the first 3 postoperative days.

    The intensity of postoperative pain both at rest and with movement will be evaluated twice daily at the same time of delirium assessment (between 08:00 h and 10:00 h, and between 18:00 h and 20:00 h) with the numeric rating scale (NRS, an 11-point scale where 0=no pain and 10=the worst pain).

Other outcomes

  1. Serum cortisol concentration (substudy)

    Time frame: Blood samples will be collected from selected patients before surgery, and in the morning of the 1st and 3rd day after surgery.

    Serum cortisol concentration (substudy)

  2. Serum IL-6 concentration (substudy)

    Time frame: Blood samples will be collected from selected patients before surgery, and in the morning of the 1st and 3rd day after surgery.

    Serum IL-6 concentration (substudy)

  3. Serum IL-8 concentration (substudy)

    Time frame: Blood samples will be collected from selected patients before surgery, and in the morning of the 1st and 3rd day after surgery.

    Serum IL-8 concentration (substudy)

Sponsors and collaborators

Lead sponsor

Peking University First Hospital

Other

Collaborators

  • Beijing Hospital
  • Beijing Shijitan Hospital, Capital Medical University
  • Peking University People's Hospital
  • Peking University Third Hospital

Registry information

Official study title

Effects of Two Different Anesthesia-analgesia Methods on the Incidence of Postoperative Delirium: a Multicenter, Randomized Controlled Trial

Important dates

Study start
2011
Primary completion
2015
Study completion
2015
First posted
Aug 10, 2012
Registry last updated
Jul 8, 2020

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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