Impact of Chronic Kidney Disease on Outcomes of Myocardial Revascularization in Patients With Diabetes.
The optimal coronary revascularization strategy in patients with stable ischemic heart disease (SIHD) who have type 2 diabetes (T2DM) and chronic kidney disease (CKD) remains unclear.
This patient-level pooled analysis sought to compare outcomes of 3 large, federally-funded randomized trials in SIHD patients with T2DM and CKD (COURAGE [Clinical Outcomes Utilizing Revascularization and Aggressive Drug Evaluation], BARI 2D [Bypass Angioplasty Revascularization Investigation 2 Diabetes], and FREEDOM [Future Revascularization Evaluation in Patients with Diabetes Mellitus: Optimal Management of Multi-vessel Disease]).
The primary endpoint was the composite of major adverse cardiovascular or cerebrovascular events (MACCE) including all-cause death, myocardial infarction (MI), or stroke adjusted for trial and randomization strategy.
Of the 4,953 patients with available estimated glomerular filtration rate (eGFR) at baseline, 1,058 had CKD (21.4%). CKD patients were more likely to be older, be female, and have a history of heart failure. CKD subjects were more likely to experience a MACCE (adjusted hazard ratio [HR]: 1.48; 95% confidence interval [CI]: 1.28 to 1.71; p = 0.0001) during a median 4.5-year follow-up. Both mild (eGFR 45 to 60 ml/min/1.73 m2) and moderate to severe (eGFR <45 ml/min/1.73 m2) CKD predicted MACCE (adjusted HRs: 1.25 and 2.26, respectively). For patients without CKD, coronary artery bypass graft (CABG) surgery combined with optimal medical therapy (OMT) was associated with lower MACCE rates compared with percutaneous coronary intervention (PCI) + OMT (adjusted HR: 0.69; 95% CI: 0.55 to 0.86; p = 0.001). For the comparison of CABG + OMT versus PCI + OMT in the CKD group, there was only a statistically significant difference in subsequent revascularization rates (HR: 0.25; 95% CI: 0.15 to 0.41; p = 0.0001) but not in MACCE rates.
Among SIHD patients with T2DM and no CKD, CABG + OMT significantly reduced MACCE compared with PCI + OMT. In subjects with CKD, there was a nonsignificant trend toward a better MACCE outcome with CABG and a significant reduction in subsequent revascularization.
Farkouh ME
,Sidhu MS
,Brooks MM
,Vlachos H
,Boden WE
,Frye RL
,Hartigan P
,Siami FS
,Bittner VA
,Chaitman BR
,Mancini GBJ
,Fuster V
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Influence of LDL-Cholesterol Lowering on Cardiovascular Outcomes in Patients With Diabetes Mellitus Undergoing Coronary Revascularization.
Elevated low-density lipoprotein cholesterol (LDL-C) is associated with increased cardiovascular events, especially in high-risk populations.
This study sought to evaluate the influence of LDL-C on the incidence of cardiovascular events either following a coronary revascularization procedure (percutaneous coronary intervention [PCI] or coronary artery bypass grafting [CABG]) or optimal medical therapy alone in patients with established coronary heart disease and type 2 diabetes (T2DM).
Patient-level pooled analysis of 3 randomized clinical trials was undertaken. Patients with T2DM were categorized according to the levels of LDL-C at 1 year following randomization. The primary endpoint was major adverse cardiac or cerebrovascular events ([MACCE] the composite of all-cause mortality, nonfatal myocardial infarction, and nonfatal stroke).
A total of 4,050 patients were followed for a median of 3.9 years after the index 1-year assessment. Patients whose 1-year LDL-C remained ≥100 mg/dl experienced higher 4-year cumulative risk of MACCE (17.2% vs. 13.3% vs. 13.1% for LDL-C between 70 and <100 mg/dl and LDL-C <70 mg/dl, respectively; p = 0.016). When compared with optimal medical therapy alone, patients with PCI experienced a MACCE reduction only if 1-year LDL-C was <70 mg/dl (hazard ratio: 0.61; 95% confidence interval: 0.40 to 0.91; p = 0.016), whereas CABG was associated with improved outcomes across all 1-year LDL-C strata. In patients with 1-year LDL-C ≥70 mg/dl, patients undergoing CABG had significantly lower MACCE rates as compared with PCI.
In patients with coronary heart disease with T2DM, lower LDL-C at 1 year is associated with improved long-term MACCE outcome in those eligible for either PCI or CABG. When compared with optimal medical therapy alone, PCI was associated with MACCE reductions only in those who achieved an LDL-C <70 mg/dl.
Farkouh ME
,Godoy LC
,Brooks MM
,Mancini GBJ
,Vlachos H
,Bittner VA
,Chaitman BR
,Siami FS
,Hartigan PM
,Frye RL
,Boden WE
,Fuster V
... -
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Effect of Chronic Kidney Disease in Women Undergoing Percutaneous Coronary Intervention With Drug-Eluting Stents: A Patient-Level Pooled Analysis of Randomized Controlled Trials.
This study sought to evaluate: 1) the effect of impaired renal function on long-term clinical outcomes in women undergoing percutaneous coronary intervention (PCI) with drug-eluting stent (DES); and 2) the safety and efficacy of new-generation compared with early-generation DES in women with chronic kidney disease (CKD).
The prevalence and effect of CKD in women undergoing PCI with DES is unclear.
We pooled patient-level data for women enrolled in 26 randomized trials. The study population was categorized by creatinine clearance (CrCl) <45 ml/min, 45 to 59 ml/min, and ≥60 ml/min. The primary endpoint was the 3-year rate of major adverse cardiovascular events (MACE). Participants for whom baseline creatinine was missing were excluded from the analysis.
Of 4,217 women included in the pooled cohort treated with DES and for whom serum creatinine was available, 603 (14%) had a CrCl <45 ml/min, 811 (19%) had a CrCl 45 to 59 ml/min, and 2,803 (66%) had a CrCl ≥60 ml/min. A significant stepwise gradient in risk for MACE was observed with worsening renal function (26.6% vs. 15.8% vs. 12.9%; p < 0.01). Following multivariable adjustment, CrCl <45 ml/min was independently associated with a higher risk of MACE (adjusted hazard ratio: 1.56; 95% confidence interval: 1.23 to 1.98) and all-cause mortality (adjusted hazard ratio: 2.67; 95% confidence interval: 1.85 to 3.85). Compared with older-generation DES, the use of newer-generation DES was associated with a reduction in the risk of cardiac death, myocardial infarction, or stent thrombosis in women with CKD. The effect of new-generation DES on outcomes was uniform, between women with or without CKD, without evidence of interaction.
Among women undergoing PCI with DES, CKD is a common comorbidity associated with a strong and independent risk for MACE that is durable over 3 years. The benefits of newer-generation DES are uniform in women with or without CKD.
Baber U
,Giustino G
,Sartori S
,Aquino M
,Stefanini GG
,Steg PG
,Windecker S
,Leon MB
,Wijns W
,Serruys PW
,Valgimigli M
,Stone GW
,Dangas GD
,Morice MC
,Camenzind E
,Weisz G
,Smits PC
,Kandzari D
,Von Birgelen C
,Mastoris I
,Galatius S
,Jeger RV
,Kimura T
,Mikhail GW
,Itchhaporia D
,Mehta L
,Ortega R
,Kim HS
,Kastrati A
,Chieffo A
,Mehran R
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HMG CoA reductase inhibitors (statins) for people with chronic kidney disease not requiring dialysis.
Cardiovascular disease is the most frequent cause of death in people with early stages of chronic kidney disease (CKD), and the absolute risk of cardiovascular events is similar to people with coronary artery disease. This is an update of a review first published in 2009 and updated in 2014, which included 50 studies (45,285 participants).
To evaluate the benefits and harms of statins compared with placebo, no treatment, standard care or another statin in adults with CKD not requiring dialysis.
We searched the Cochrane Kidney and Transplant Register of Studies up to 4 October 2023. Studies in the Register are identified through searches of CENTRAL, MEDLINE, EMBASE, conference proceedings, the International Clinical Trials Registry Platform (ICTRP) Search Portal and ClinicalTrials.gov. An updated search will be undertaken every three months.
Randomised controlled trials (RCTs) and quasi-RCTs that compared the effects of statins with placebo, no treatment, standard care, or other statins, on death, cardiovascular events, kidney function, toxicity, and lipid levels in adults with CKD (estimated glomerular filtration rate (eGFR) 90 to 15 mL/min/1.73 m2) were included.
Two or more authors independently extracted data and assessed the study risk of bias. Treatment effects were expressed as mean difference (MD) for continuous outcomes and risk ratios (RR) for dichotomous benefits and harms with 95% confidence intervals (CI). The risk of bias was assessed using the Cochrane risk of bias tool, and the certainty of the evidence using the Grading of Recommendations Assessment, Development and Evaluation (GRADE) approach.
We included 63 studies (50,725 randomised participants); of these, 53 studies (42,752 participants) compared statins with placebo or no treatment. The median duration of follow-up was 12 months (range 2 to 64.8 months), the median dosage of statin was equivalent to 20 mg/day of simvastatin, and participants had a median eGFR of 55 mL/min/1.73 m2. Ten studies (7973 participants) compared two different statin regimens. We were able to meta-analyse 43 studies (41,273 participants). Most studies had limited reporting and hence exhibited unclear risk of bias in most domains. Compared with placebo or standard of care, statins prevent major cardiovascular events (14 studies, 36,156 participants: RR 0.72, 95% CI 0.66 to 0.79; I2 = 39%; high certainty evidence), death (13 studies, 34,978 participants: RR 0.83, 95% CI 0.73 to 0.96; I² = 53%; high certainty evidence), cardiovascular death (8 studies, 19,112 participants: RR 0.77, 95% CI 0.69 to 0.87; I² = 0%; high certainty evidence) and myocardial infarction (10 studies, 9475 participants: RR 0.55, 95% CI 0.42 to 0.73; I² = 0%; moderate certainty evidence). There were too few events to determine if statins made a difference in hospitalisation due to heart failure. Statins probably make little or no difference to stroke (7 studies, 9115 participants: RR 0.64, 95% CI 0.37 to 1.08; I² = 39%; moderate certainty evidence) and kidney failure (3 studies, 6704 participants: RR 0.98, 95% CI 0.91 to 1.05; I² = 0%; moderate certainty evidence) in people with CKD not requiring dialysis. Potential harms from statins were limited by a lack of systematic reporting. Statins compared to placebo may have little or no effect on elevated liver enzymes (7 studies, 7991 participants: RR 0.76, 95% CI 0.39 to 1.50; I² = 0%; low certainty evidence), withdrawal due to adverse events (13 studies, 4219 participants: RR 1.16, 95% CI 0.84 to 1.60; I² = 37%; low certainty evidence), and cancer (2 studies, 5581 participants: RR 1.03, 95% CI 0.82 to 1.30; I² = 0%; low certainty evidence). However, few studies reported rhabdomyolysis or elevated creatinine kinase; hence, we are unable to determine the effect due to very low certainty evidence. Statins reduce the risk of death, major cardiovascular events, and myocardial infarction in people with CKD who did not have cardiovascular disease at baseline (primary prevention). There was insufficient data to determine the benefits and harms of the type of statin therapy.
Statins reduce death and major cardiovascular events by about 20% and probably make no difference to stroke or kidney failure in people with CKD not requiring dialysis. However, due to limited reporting, the effect of statins on elevated creatinine kinase or rhabdomyolysis is unclear. Statins have an important role in the primary prevention of cardiovascular events and death in people who have CKD and do not require dialysis. Editorial note: This is a living systematic review. We will search for new evidence every three months and update the review when we identify relevant new evidence. Please refer to the Cochrane Database of Systematic Reviews for the current status of this review.
Tunnicliffe DJ
,Palmer SC
,Cashmore BA
,Saglimbene VM
,Krishnasamy R
,Lambert K
,Johnson DW
,Craig JC
,Strippoli GF
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《Cochrane Database of Systematic Reviews》