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Perioperative statin therapy for improving outcomes during and after noncardiac vascular surgery
Robert D Sanders1, Amanda Nicholson, Sharon R Lewis
1Surgical Outcomes Research Centre & Department of Anaesthesia, University College London Hospital & Wellcome Departmentof Imaging Neuroscience, University College London, London, UK.
Insights
Short-term statin therapy before noncardiac vascular surgery did not significantly reduce mortality or complications. Further research is needed to clarify the benefits of perioperative statins in vascular surgery patients.
Area of Science:
- Cardiovascular Medicine
- Pharmacology
- Surgical Outcomes
Background:
- Patients undergoing vascular surgery have high cardiovascular risk due to atherosclerosis and comorbidities.
- Postoperative cardiovascular complications, including myocardial infarct (MI), are common in this population.
- Statins are used to lower cholesterol, but their perioperative benefits in noncardiac vascular surgery are unclear.
Purpose of the Study:
- To evaluate the impact of short-term statin therapy on patient outcomes after noncardiac vascular surgery.
- To assess effects on complications, pain, quality of life, and hospital stay.
- To determine if statin dosage influences these outcomes.
Main Methods:
- Systematic review of randomized controlled trials (RCTs) from multiple databases (Cochrane CENTRAL, MEDLINE, EMBASE, CINAHL, Web of Science).
- Included RCTs compared short-term statin therapy (initiated pre- or intra-operatively, continued ≥48 hours post-op) versus placebo/standard care or different statin doses.
- Data extraction and quality assessment by two independent reviewers; pooled risk ratios (RRs) with 95% confidence intervals (CIs) were calculated.
Main Results:
- Six RCTs were identified; five compared statins with placebo/standard care (178 participants).
- Statin use showed non-significant trends towards reduced all-cause mortality (RR 0.73, 95% CI 0.31-1.75) and non-fatal MI (RR 0.47, 95% CI 0.15-1.52).
- No significant differences were found in cardiovascular death, clinical muscle syndromes, or nausea; insufficient data existed for dose-response analysis.
Conclusions:
- Current evidence is insufficient to conclude whether perioperative statin use benefits or harms patients undergoing vascular surgery.
- The widespread use of statins may hinder future large RCTs needed to establish definitive effects on postoperative cardiovascular events.
- Participant-reported outcomes, such as pain and quality of life, require further investigation.
Background:
Patients undergoing vascular surgery are a high-risk population with widespread atherosclerosis, an adverse cardiovascular risk profile and often multiple co-morbidities. Postoperative cardiovascular complications, including myocardial infarct (MI), are common. Statins are the medical treatment of choice to reduce high cholesterol levels. Evidence is accumulating that patients taking statins at the time of surgery are protected against a range of perioperative complications, but the specific benefits for patients undergoing noncardiac vascular surgery are not clear.
Objectives:
We examined whether short-term statin therapy, commenced before or on the day of noncardiac vascular surgery and continuing for at least 48 hours afterwards, improves patient outcomes including the risk of complications, pain, quality of life and length of hospital stay. We also examined whether the effect of statin therapy on these outcomes changes depending on the dose of statin received.
Search Methods:
We searched the Cochrane Central Register of Controlled Trials (CENTRAL) (The Cochrane Library 2012, Issue 7), MEDLINE via Ovid SP (1966 to August 2012), EMBASE via Ovid SP (1966 to August 2012), CINAHL via EBSCO host (1966 to August 2012) and ISI Web of Science (1946 to July 2012) without any language restriction. We used a combination of free text search and controlled vocabulary search. The results were limited to randomized controlled clinical trials (RCTs). We conducted forwards and backwards citation of key articles and searched two clinical trial Websites for ongoing trials (www.clinicaltrials.gov and http://www.controlled-trials.com).
Selection Criteria:
We included RCTs that had compared short-term statin therapy, either commenced de novo or with existing users randomly assigned to different dosages, in adult participants undergoing elective and emergency noncardiac arterial surgery, including both open and endovascular procedures. We defined short-term as commencing before or on the day of surgery and continuing for at least 48 hours afterwards.
Data Collection And Analysis:
Two authors independently assessed trial quality and extracted data, including information on adverse events. We contacted study authors for additional information. We performed separate analyses for the comparisons of statin with placebo/no treatment and between different doses of statin. We presented results as pooled risk ratios (RRs) with 95% confidence intervals (CIs) based on random-effects models (inverse variance method). We employed the Chi(2) test and calculated the I(2) statistic to investigate study heterogeneity.
Main Results:
We identified six eligible studies in total. The six Included studies were generally of high quality, but the largest eligible study was excluded because of concerns about its validity. Study populations were statin naive, which led to a considerable loss of eligible participants.Five RCTs compared statin use with placebo or standard care. We pooled results from three studies, with a total of 178 participants, for mortality and non-fatal event outcomes. In the statin group, 7/105 (6.7%) participants died within 30 days of surgery, as did 10/73 (13.7%) participants in the control group. Only one death in each group was from cardiovascular causes, with an incidence of 0.95% in statin participants and 1.4% in control participants, respectively. All deaths occurred in a single study population, and so effect estimates were derived from one study only. The risk ratio (RR) of all-cause mortality in statin users showed a non-significant decrease in risk (RR 0.73, 95% CI 0.31 to 1.75). For cardiovascular death, the risk ratio was 1.05 (95% CI 0.07 to 16.20). Non-fatal MI within 30 days of surgery was reported in three studies and occurred in 4/105 (3.8%) participants in the statin group and 8/73 (11.0%) participants receiving placebo, for a non-significant decrease in risk (RR 0.47, 95% CI 0.15 to 1.52). Several studies reported muscle enzyme levels as safety measures, but only three (with a total of 188 participants) reported explicitly on clinical muscle syndromes, with seven events reported and no significant difference found between statin users and controls (RR 0.94, 95% CI 0.24 to 3.63). The only participant-reported outcome was nausea in one small study,with no significant difference in risk between groups.Two studies compared different doses of atorvastatin, with a total of 145 participants, but reported data were not sufficient to allow us to determine the effect of higher doses on any outcome.
Authors' Conclusions:
Evidence was insufficient to allow review authors to conclude that statin use resulted in either a reduction or an increase in any of the outcomes examined. The existing body of evidence leaves questions about the benefits of perioperative use of statins for vascular surgery unanswered. Widespread use of statins in the target population means that it may now be difficult for researchers to undertake the large RCTs needed to demonstrate any effect on the incidence of postoperative cardiovascular events. However, participant-reported outcomes have been neglected and warrant further study.
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