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The Causal Mechanism Between the Dipeptidyl Peptidase-4, Heart Failure, and Other Cardiovascular Diseases: A
Che-Kai Chen1, Chang-Fu Kuo2,3,4, Yu-Jing Chang1
1Center for Artificial Intelligence in Medicine, Linkou Chang Gung Memorial Hospital, Taoyuan, Taiwan.
Abstract:
Aims: Dipeptidyl peptidase-4 (DPP4) inhibitors are commonly used to treat type 2 diabetes. However, the causality of it on cardiovascular diseases (CVDs) is controversial. This study aimed (1) to investigate the causal mechanisms of DPP4 gene expression at the mRNA level on CVDs, including all-cause heart failure (HF), atrial fibrillation (AF), myocardial infarction (MI), and stroke in a European population; (2) to assess the direct effect of DPP4 at the mRNA level on CVD, which is independent of type-2 diabetes; and (3) to explore the causality of DPP4 inhibition on CVDs and type-2 diabetes. Methods: Utilizing DPP4 and CVD summary statistics from eQTLGen Consortium, GTEx Portal, and UK Biobank, we applied weak IV and pleiotropy robust Mendelian randomization methods (MR-RAPS, GRAPPLE, BESIDE-MR, debiased IVW) and mediation analysis to assess the causal impact of DPP4 at the mRNA level on CVD and the direct effect of DPP4 at the mRNA level on CVD, not mediated by diabetes. The causality of DPP4 inhibition on CVD was also evaluated. Results: MR-RAPS suggested a potential causal relationship between increased DPP4 at the mRNA levels and HF (0.031 [95% CI, 0.06-0.56; p=0.014]). However, there was limited evidence that increased DPP4 levels affect AF, MI, or stroke. Other analyses corroborated these findings. Mediation analysis indicated a direct effect of DPP4 at the mRNA level on HF, while debiased IVW showed limited evidence for a causal effect of DPP4 inhibition on CVDs, possibly due to low statistical power. Conclusions: Mendelian randomization analyses support the cardiovascular safety of DPP4 inhibitors in managing type 2 diabetes, with little evidence for DPP4-mediated cardiovascular harm, reinforcing their appropriateness for clinical use in European populations. Additionally, if DPP4 inhibition affects cardiovascular outcomes, it may not do so through glycemic control, such as HbA1c reduction.
Insights
Dipeptidyl peptidase-4 (DPP4) gene expression may causally influence heart failure risk. However, DPP4 inhibitors appear safe for type 2 diabetes management, with no strong evidence of cardiovascular harm in European populations.
Area of Science:
- Genetics and Cardiovascular Medicine
- Pharmacogenomics and Drug Safety
- Metabolic Disease Research
Background:
- Dipeptidyl peptidase-4 (DPP4) inhibitors are widely prescribed for type 2 diabetes.
- The cardiovascular safety of DPP4 inhibitors remains a subject of ongoing debate and research.
- Understanding the causal relationship between DPP4 and cardiovascular diseases (CVDs) is crucial for clinical practice.
Purpose of the Study:
- To investigate the causal effects of DPP4 gene expression on heart failure (HF), atrial fibrillation (AF), myocardial infarction (MI), and stroke.
- To assess the direct impact of DPP4 on CVDs, independent of type 2 diabetes.
- To evaluate the causality of DPP4 inhibition on CVDs and type 2 diabetes.
Main Methods:
- Employed Mendelian randomization (MR) techniques, including MR-RAPS, GRAPPLE, BESIDE-MR, and debiased IVW, using genetic summary statistics.
- Utilized mediation analysis to distinguish direct effects of DPP4 from diabetes-mediated pathways.
- Analyzed data from large European population cohorts including eQTLGen, GTEx, and UK Biobank.
Main Results:
- MR-RAPS indicated a potential causal link between elevated DPP4 mRNA levels and an increased risk of heart failure (HF).
- Limited evidence was found for a causal effect of DPP4 on atrial fibrillation (AF), myocardial infarction (MI), or stroke.
- Mediation analysis suggested a direct effect of DPP4 mRNA on HF, independent of diabetes; DPP4 inhibition showed no clear causal effect on CVDs.
Conclusions:
- Mendelian randomization analyses support the cardiovascular safety of DPP4 inhibitors for type 2 diabetes management in European populations.
- There is minimal evidence suggesting DPP4-mediated cardiovascular harm, reinforcing the clinical appropriateness of these drugs.
- Any potential effect of DPP4 inhibition on cardiovascular outcomes may not be mediated through glycemic control (e.g., HbA1c reduction).
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