Cardiac surgery improves the survival and quality of life of people with heart disease. Nonetheless, several complications continue to adversely affect outcomes following cardiac surgery. Kidney failure is a particularly important complication that is associated with increased death and duration of hospitalization. The most severe form of postoperative kidney failure, the need for dialysis, is uncommon at present. It is however likely to increase in the future. Patients undergoing cardiac surgery are getting older with more heart failure, diabetes, high blood pressure, and pre-existing kidney disease. Given that these are risk factors for postoperative kidney injury, dialysis rates will likely increase. Although multiple therapies have been tested, none have prevented postoperative kidney failure. N-acetylcysteine (NAC) is a drug that is commonly used to treat Tylenol overdoses. Over the past 2 years, it has also been used to prevent kidney damage after exposure to IV dye. There is good evidence that NAC will reduce kidney damage after IV dye exposure. There are strong reasons to believe that NAC may also prevent postoperative kidney failure. NAC is safe. Its major side-effects are allergic reactions, but serious reactions are rare. Since dialysis is uncommon, large studies are needed to determine if NAC prevents postoperative dialysis. In this situation, a pilot study is needed to determine if such a large trial is feasible. This proposal describes a pilot study. We will determine NAC's effects on creatinine clearance, a measure of how well the kidney works. Reduced creatinine clearance is closely related to dialysis and death after cardiac surgery. This biological marker allows us to determine NAC's effects on kidney function with a reduced sample size. If NAC improves creatinine clearance, it would suggest that NAC prevents postoperative dialysis, and would justify a larger study. A pilot study will help us estimate how many patients will be willing to participate in similar studies, vital for planning a future large study. Finally, our results will estimate how well NAC will reduce dialysis rates. This is needed for calculating the sample size for future studies.The study design is a randomized, double-blinded, placebo-controlled clinical trial among patients undergoing bypass surgery or heart valve surgery at the Toronto General Hospital (Toronto, ON). We will recruit 176 people who are at increased risk for developing kidney failure after surgery. Participants will receive either NAC or sugar solution during their operation. If participants have returned home within a month of surgery, they will be contacted at home on the 30th day after surgery to determine if they had any kidney-related problems since returning home. All participants will return to the Toronto General Hospital (TGH) during the 8th week after surgery for creatinine blood test and weight.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
PREVENTION
Masking
QUADRUPLE
Enrollment
176
Toronto General Hospital, UHN
Toronto, Ontario, Canada
Maximum percent decline in calculated creatinine clearance (Cockcroft-Gault formula) in first 72 hours following surgery.
Time frame: 72 hours following surgery
Maximum increase in serum creatinine concentration over first 72 hours following surgery.
Time frame: 72 hours following surgery
Increase in serum creatinine >= 0.5 mg/dL from baseline over first 72 hours following surgery (dichotomous outcome).
Time frame: 72 hours following surgery
Maximum percent decline in calculated creatinine clearance (Cockcroft-Gault formula) >= 25% in first 72 hours following surgery (dichotomous outcome).
Time frame: 72 hours following surgery
Percent change in calculated creatinine clearance (Cockcroft-Gault formula) at hospital discharge.
Time frame: hospital discharge
Maximum percent decline in calculated creatinine clearance (Cockcroft-Gault formula) at 8 weeks following surgery.
Time frame: 8 weeks followiing surgery
30-day need for renal replacement therapy
Time frame: 30 day inclusive
30-day all-cause mortality
Time frame: 30 day follow up
Length of stay in intensive care unit (postoperative)
Time frame: Duration of stay in the ICU
Length of stay in hospital (postoperative)
Time frame: Until discharge form hospital
24-hour fluid perioperative fluid balance
Time frame: 24 hours
24-hour urine output
Time frame: 24 hour
Adverse perioperative event
Time frame: Intra operative measure
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