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Differential Effects of Lipid-lowering Drugs in Modulating Morphology of Cholesterol Particles
Published on: November 10, 2017
An interracial Mendelian analysis revealed a link between lipid-lowering drugs and renal failure
Naidan Zhang1, Chaixia Ji1, Baibing Xie2
1Department of Laboratory Medicine, Peoples Hospital of Deyang City, Deyang, China.
Insights
Lipid-lowering drugs show varied effects on renal failure risk. PPARG activation may reduce renal failure, while NPC1L1 inhibitors and APOE show complex, population-dependent impacts.
Area of Science:
- Pharmacogenomics
- Renal Medicine
- Genetic Epidemiology
Background:
- Lipid-lowering drugs are widely used, but their impact on renal failure remains unclear.
- Understanding drug effects on kidney function is crucial for patient safety and treatment efficacy.
Purpose of the Study:
- To investigate the causal relationship between lipid-lowering drug targets and the risk of acute renal failure (ARF) and chronic renal failure (CRF).
- To assess potential ethnic differences in these relationships.
Main Methods:
- Utilized Mendelian randomization with single nucleotide polymorphisms (SNPs) near drug genes as instrumental variables.
- Employed inverse variance weighted (IVW) analysis on European GWAS data for ARF and CRF.
- Validated findings using datasets from East Asian and South Asian populations.
Main Results:
- PPARG activation was associated with a significant reduction in ARF risk in Europeans and CRF risk in East Asians.
- NPC1L1 inhibitors were linked to increased ARF risk in Europeans.
- APOE showed a dual effect: increased ARF risk in Europeans but decreased ARF risk in South Asians and decreased CRF risk in Europeans.
- TNFSF12 was associated with increased CRF risk in Europeans.
Conclusions:
- PPARG activation appears protective against renal failure across European and Asian populations.
- APOE's effect on renal failure is population-dependent, posing a risk in Europeans but offering protection in South Asians.
- Clinicians should consider ethnic variations when prescribing lipid-lowering therapies to mitigate renal risks.
Abstract:
Lipid-lowering drugs have been used in clinics widely. It is unclear whether the drugs have an effect on renal failure. We chose high-density lipoprotein cholesterol (ieu-b-109), low-density lipoprotein cholesterol (ieu-a-300), triglyceride (ieu-b-111), and total cholesterol (ebi-a-GCST90038690) as exposures. SNPs near drug genes served as instrumental variables. Acute renal failure (ARF) and chronic renal failure (CRF) in Europeans from the GWAS catalog were selected as outcomes. Datasets on renal failure in East Asians and South Asians were used for validation. Inverse variance weighted (IVW) was the primary method for drug-targeted Mendelian randomization. In the Europeans, people who used PPARG reduced ARF risk by 69.3% (OR: 0.307, 95% CI: 0.171-0.553, p = 0.015). NPC1L1 inhibitors increased ARF risk by 2.684 times (OR: 2.684, 95% CI: 2.027-3.341, p = 0.003). APOE increased ARF risk by 1.987 times (OR: 1.987, 95% CI: 1.062-3.716, p = 0.032) but decreased CRF risk by 49.7% (OR: 0.503, 95% CI: 0.283-0.894, p = 0.019). TNFSF12 increased CRF risk by 3.866 times (OR: 3.866, 95% CI: 1.174-12.729, p = 0.026). In the East Asians, PPARG reduced CRF risk by 85.8% (OR: 0.142, 95% CI: 0.054-0.371, p < 0.001). And in the South Asians, APOE decreased ARF risk by 99.8% (OR: 0.002, 95% CI: 2.12e-05-0.179, p = 0.007). We revealed that PPARG could reduce the risk of renal failure in Europeans and Asians. APOE could cause ARF in the Europeans, but it was protective in the South Asians. Clinicians need to consider the characteristics of the local population before administering drugs to patients of different ethnicities.
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