Postoperative delirium (POD) is one of the most frequent complications after surgery in elderly patients, affecting between 20 and 40% of patients older than 60 after major surgery. This complication has huge consequences for the patients, families and society: increase of morbidity and mortality, prolonged length of stay, cognitive and functional decline leading to loss of autonomy, and important additional healthcare costs. Among numerous risk factors identified, perioperative inflammatory stress is a key element in delirium genesis: surgical trauma releases danger signals in systemic circulation, activating immune cells and leading to neuroinflammation. Melatonin is a neurohormone regulating circadian rhythm. But it also exhibits antioxidant and free radical scavenger properties, and regulates energy metabolism and immune function. It has already demonstrated a neuroprotective potential in various animal models. Its use against delirium is promising: it decreases delirium incidence in elderly patients hospitalized in medical ward, and several studies are now recruiting in ICU. The hypothesis of the trial is that in a high-risk population, perioperative melatonin can reduce the incidence of POD. The main objective is to evaluate the effect of perioperative melatonin administration on postoperative delirium incidence in the first 10 days after surgery, in elderly patients (over 70 years old) being hospitalized and scheduled for acute surgery of fractured lower limb (from femoral head to tibial plateau). This is a prospective, national multicentric (24 centers), phase III, superiority, comparative randomized (1:1) double-blinded clinical trial with two parallel arms: Experimental group: melatonin 4mg per os every night, starting the evening before surgery (or 2 hours before emergency surgery) and until day 5 after surgery. Control group: placebo of this drug with the same schedule, during the same period of time. The patients are aged 70 or older, hospitalized and scheduled for surgery of a severe fracture of a lower limb (from femoral head to tibial plateau).
Postoperative delirium (POD) is one of the most frequent complications after surgery in elderly patients, affecting between 20 and 40% of patients older than 60 after major surgery. This complication has huge consequences for the patients, families and society: increase of morbidity and mortality, prolonged length of stay, cognitive and functional decline leading to loss of autonomy, and important additional healthcare costs. Among numerous risk factors identified, perioperative inflammatory stress is a key element in delirium genesis: surgical trauma releases danger signals in systemic circulation, activating immune cells and leading to neuroinflammation. In the brain, especially in hippocampus, proinflammatory cytokines, immune cells recruitment and microglial activation alter synaptic plasticity and lead to acute cognitive dysfunction. Moreover, with aging, an increase in initial neuroinflammatory response and a decrease in subsequent resolution phase are observed. Melatonin is a neurohormone regulating circadian rhythm. But it also exhibits antioxidant and free radical scavenger properties, and regulates energy metabolism and immune function. It has already demonstrated a neuroprotective potential in various animal models. Its use against delirium is promising: it decreases delirium incidence in elderly patients hospitalized in medical ward, and several studies are now recruiting in ICU. Concerning the perioperative period, only two studies with conflicting results are available. The first one (Sultan, 2010), that has shown that melatonin decreases POD incidence, has strong methodological limitations (no calculated sample size, only 53 patients in melatonin group, all patients, even in the control group received melatonin if they developed POD, etc). In the second one (deJonghe, 2014), melatonin had no effect on POD incidence, but showed a reduction in the proportion of patients with POD exceeding 2 days. These conflicting results emphasize the need for a third RCT, with optimized methodology. The hypothesis of the trial is that in a high-risk population, perioperative melatonin can reduce the incidence of POD. The main objective is to evaluate the effect of perioperative melatonin administration on postoperative delirium incidence in the first 10 days after surgery, in elderly patients (over 70 years old) being hospitalized and scheduled for acute surgery of fractured lower limb (from femoral head to tibial plateau). This is a prospective, national multicentric (24 centers), phase III, superiority, comparative randomized (1:1) double-blinded clinical trial with two parallel arms: Experimental group: melatonin 4mg per os every night, starting the evening before surgery (or 2 hours before emergency surgery) and until day 5 after surgery. Control group: placebo of this drug with the same schedule, during the same period of time. The patients are aged 70 or older, hospitalized and scheduled for surgery of a severe fracture of a lower limb (from femoral head to tibial plateau). An ancillary study is also planned in this study with the hypothesise that : * Patients presenting post-operative delirium may exhibit significant perturbations of phenotypic and transcriptomic features of circulating leukocytes, of plasma levels of cytokines, and of oxidative stress level. * Administration of melatonin may prevent these perturbations. Ancillary study concerns Beaujon, Bichat and la Pitié centers.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
PREVENTION
Masking
QUADRUPLE
Enrollment
357
melatonin 4mg per os every night, starting the evening before surgery (or 2 hours before emergency surgery) and until day 5 after surgery.
placebo of this drug with the same schedule, during the same period of time.
hôpital Beaujon
Clichy-sous-Bois, France
Postoperative delirium incidence
The Confusion Assessment Method (CAM) score, for patients hospitalized in surgery, or CAM-ICU score, for patients hospitalized in ICU will be applied daily during the first 10 days after surgery or end of hospital stay if shorter
Time frame: 10 days after surgery
Number of days CAM positive
CAM will be applied daily during the first 10 days. the minimum 0 and maximum 4 values, and higher scores mean a worse outcome.
Time frame: 10 days after surgery
Incidence of postoperative sedative or antipsychotic drugs administration from
Daily review of the medical chart and prescriptions looking for any sedative or antipsychotic drug administration
Time frame: 10 days after surgery
Incidence of postoperative physical restrain prescription
Daily review of the medical chart and prescriptions looking for physical restraint prescription.
Time frame: 10 days after surgery
Incidence of postoperative falls
Daily review of the medical chart and prescriptions looking for falls, whichever the gravity
Time frame: 10 days after surgery
Mini Mental State Examination
Cognitive testing interview at bedside using the widely used French validated translation of the Mini Mental State Examination. the minimum 0 and maximum 30 values, and higher scores mean a better outcome.
Time frame: 10 days (or end of hospital stay if shorter)
Duration of hospital stay
Daily review of the medical file
Time frame: 30 days after surgery
30 days postoperative mortality
Phone call (or visit for those who had not left the hospital) to the patient or caregivers
Time frame: 30 days after surgery
30 days postoperative patient autonomy
Phone call (or visit for those who had not left the hospital) to the patient or caregivers and evaluation by the Katz Index of activities of daily living. The minimum and maximum values are respectively 0 and 6, and higher scores mean a better outcome.
Time frame: 30 days after surgery
30 days postoperative Quality of life
evaluated by EQ5D5L (standardized instrument for measuring generic health status : MOBILITY, SELF-CARE, USUAL ACTIVITIES, PAIN/DISCOMFORT and ANXIETY/ DEPRESSION),) Questionnaire. the minimum 5 and maximum 125 values, and higher scores mean a better outcome.
Time frame: 30 days after surgery
30 days postoperative QALYs (quality-adjusted life year)
QALYs (quality-adjusted life year) are the utility weights for the 30 day period x30/365. the minimum and maximum values are respectively 0 and1, and higher scores mean a better outcome.
Time frame: 30 days after surgery
Total hospital costs at 30 days
calculated as the cumulative costs of all admissions (in- and outpatient, home care, rehabilitation) over a 30 day period
Time frame: 30 days after surgery
Incremental cost effectiveness
The incremental cost effectiveness ratio is the difference in total costs divided by the difference in the incidence rate of delirium between the two arms
Time frame: 30 days after surgery
cost utility ratios
the incremental cost utility ratio is the difference in total costs divided by the difference in QALYs (quality-adjusted life year)
Time frame: 30 days after surgery
Occurrence of side effects
During the follow-up, daily interview of the patient and review of the medical chart will be performed, looking for side effects of melatonin.
Time frame: 30 days after surgery
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