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36 results on '"Cholesterol, LDL genetics"'

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1. Accounting for heterogeneity due to environmental sources in meta-analysis of genome-wide association studies.

2. Discover QTLs for the level of blood components in Shaoxing duck using GWAS and haplotype sharing analysis.

3. Validating Disease Associations of Drug-Metabolizing Enzymes through Genome-Wide Association Study Data Analysis.

4. A Multivariable Mendelian Randomization Study of Systolic and Diastolic Blood Pressure, Lipid Profile, and Heart Failure Subtypes.

5. Inferring causal direction between two traits using R 2 with application to transcriptome-wide association studies.

6. Associations of ACE I/D and AGTR1 rs5182 polymorphisms with diabetes and their effects on lipids in an elderly Chinese population.

7. Novel loci linked to serum lipid traits are identified in a genome-wide association study of a highly admixed Brazilian population - the 2015 ISA Nutrition.

8. Association of lipid-lowering drugs with risk of sarcopenia: a drug target mendelian randomization study and meta-analysis.

9. Correlation-based tests for the formal comparison of polygenic scores in multiple populations.

10. Impact of 12-SNP and 6-SNP Polygenic Scores on Predisposition to High LDL-Cholesterol Levels in Patients with Familial Hypercholesterolemia.

11. Genetic testing for familial hypercholesterolemia.

12. Lipids and sudden sensorineural hearing loss: A bidirectional two-sample Mendelian randomization analysis.

13. Association between genetically proxied lipid-lowering drug targets, lipid traits, and amyotrophic lateral sclerosis: a mendelian randomization study.

14. Sex and statin-related genetic associations at the PCSK9 gene locus: results of genome-wide association meta-analysis.

15. Identification of a novel LDLR p.Glu179Met variant in Thai families with familial hypercholesterolemia and response to treatment with PCSK9 inhibitor.

16. Co-methylation analyses identify CpGs associated with lipid traits in Chinese discordant monozygotic twins.

17. Lipid levels and risk of acute pancreatitis using bidirectional Mendelian randomization.

18. Causal relationship between PCSK9 inhibitor and primary glomerular disease: a drug target Mendelian randomization study.

19. Familial Hypercholesterolemia Variant and Cardiovascular Risk in Individuals With Elevated Cholesterol.

20. Genetic identification of familial hypercholesterolemia within whole genome sequences in 6820 newborns.

21. Genetic Counseling and Genetic Testing for Familial Hypercholesterolemia.

22. Association between high-density lipoprotein cholesterol and type 2 diabetes mellitus: dual evidence from NHANES database and Mendelian randomization analysis.

23. A regulatory element associated to NAFLD in the promoter of DIO1 controls LDL-C, HDL-C and triglycerides in hepatic cells.

24. Genetic association of lipid-lowering drug target genes with erectile dysfunction and male reproductive health.

25. Unraveling the genetic background of individuals with a clinical familial hypercholesterolemia phenotype.

26. The genetics of autosomal dominant familial hypercholesterolemia.

27. GWAS of lipids in Greenlanders finds association signals shared with Europeans and reveals an independent PCSK9 association signal.

28. Lipid Metabolism, Methylation Aberrant, and Osteoporosis: A Multi-omics Study Based on Mendelian Randomization.

29. Evinacumab for Pediatric Patients With Homozygous Familial Hypercholesterolemia.

30. Causal role of lipid metabolism in pulmonary alveolar proteinosis: an observational and mendelian randomisation study.

31. Effects of uric acid on ischemic diseases, stratified by lipid levels: a drug-target, nonlinear Mendelian randomization study.

32. Dose-Response Associations of Lipid Traits With Coronary Artery Disease and Mortality.

33. Blood Lipid Metabolic Profiles and Causal Links to Site-Specific Cancer Risks: A Mendelian Randomization Study.

34. Haplotype analysis and linkage disequilibrium of ApoB gene polymorphisms and its relationship with hyperlipidemia in patients with acne vulgaris.

35. Genetic backgrounds and diagnosis of familial hypercholesterolemia.

36. The relationship between genetic liver fat and coronary heart disease is explained by apoB-containing lipoproteins.

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