Psoriasis is a systemic inflammatory disorder that involves complex pathogenic interactions between the innate and adaptive immune systems. Individuals with psoriasis have an increased risk of developing other chronic health diseases such cardiovascular disorders. The high incidence of cardiovascular events in the population with psoriasis could be explained by several mechanisms. The high prevalence of traditional cardiovascular risk factors and metabolic abnormalities contributes to the high cardiovascular burden in patients with psoriasis. Likewise, the presence of systemic inflammation in combination with metabolic abnormalities may act in a synergistic manner to increase cardiovascular risk in these patients. This review focused on epidemiologic and clinical evidence linking psoriasis to cardiovascular risk factors and cardiovascular disease. We described the possible pathophysiological mechanisms that justify this association and analyzed the best way to stratify the cardiovascular risk in patients with psoriasis. We also described the usefulness of the therapies frequently used in cardiovascular prevention and analyzed the impact of the specific psoriasis medication on cardiovascular risk factors or major atherosclerotic events. Knowledge of the application of different cardiovascular prevention strategies could mean an advantage in performing the difficult task of estimating cardiovascular risk and treating cardiovascular risk factors in this particular group of patients.
CETP inhibitors reduced the incidence of diabetes. The improvement in glucose metabolism may have been related, at least in part, to the increase in HDL-C concentration.
Aims
To evaluate the effect of sodium-glucose cotransporter-2 (SGLT-2) inhibitors and glucagon-like peptide-1 receptor agonists (GLP-1RAs) on major cardiovascular events (MACE) in metformin-naïve patients with type 2 diabetes (T2D).
Methods and results
A meta-analysis was performed of randomized controlled clinical trials of GLP-1RAs and SGLT-2 inhibitors on T2D populations, after searching the PubMed/MEDLINE, Embase, and Cochrane Controlled Trials databases. The primary endpoint was MACE. The secondary endpoint, explored in the subgroup of SGLT-2 inhibitors studies, was cardiovascular death or hospitalization for heart failure. A random-effects meta-analysis model was applied. Six eligible trials (three studies of SGLT-2 inhibitors and three trials of GLP-1RAs), including 11 235 patients, were identified and considered eligible for the analyses. The new antidiabetic drugs were associated with a significant reduction in MACE [odds ratio (OR): 0.82, 95% confidence interval: 0.70–0.95; I2: 48%]. The subgroup analysis showed the following findings: GLP-1RAs group, OR: 0.79 (95% confidence interval 0.68–0.93); SGLT-2 inhibitors, OR: 0.85 (95% confidence interval 0.63–1.15). SGLT-2 inhibitors were associated with a significant reduction in hospitalization for heart failure or cardiovascular mortality incidence (OR: 0.67, 95% confidence interval: 0.47–0.95; I2: 78%).
Conclusion
In this meta-analysis, new antidiabetic drugs reduced the incidence of MACE in metformin-naïve T2D patients. The beneficial effect was especially observed in the GLP-1RAs subgroup. The use of SGLT-2 inhibitors was associated with a reduction in cardiovascular death or hospitalization for heart failure. These results support the fact that metformin would not be indispensable to obtain positive cardiovascular effects when new antidiabetic drugs are administered.
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