291 results on '"Suderman, Matthew"'
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2. Behavioural, psychiatric, and cognitive phenotypes associated with numbers of repeats of the FRAXE allele on the FMR2 gene
3. #2045 Epigenetic data can predict initial treatment response in nephrotic syndrome
4. #2056 Epigenetic profiles differ by level of kidney function in idiopathic nephrotic syndrome
5. A Meta-Analysis of Sensitive Periods for the Effects of Childhood Adversity on DNA Methylation
6. What makes clocks tick? Characterizing developmental dynamics of adult epigenetic clock sites
7. Evaluation of a Combined Live Attenuated Vaccine against Lumpy Skin Disease, Contagious Bovine Pleuropneumonia and Rift Valley Fever
8. Epigenetic timing effects on child developmental outcomes: A longitudinal meta-regression of findings from the Pregnancy And Childhood Epigenetics Consortium
9. Blood-based DNA methylation study of alcohol consumption
10. Inflammation proteomics datasets in the ALSPAC cohort
11. Epigenetic aging & embodying injustice: US My Body My Story and Multi-Ethnic Atherosclerosis Study
12. An epigenome-wide analysis of DNA methylation, racialized and economic inequities, and air pollution
13. Differential Chromatin Architecture and Risk Variants in Deep Layer Excitatory Neurons and Grey Matter Microglia Contribute to Major Depressive Disorder
14. A history of asthma may be associated with grandparents’ exposures to stress and cigarette smoking
15. Fathers’ preconception smoking and offspring DNA methylation
16. Genetic impacts on DNA methylation help elucidate regulatory genomic processes
17. Sensitive Periods for the Effect of Childhood Adversity on DNA Methylation: Updated Results From a Prospective, Longitudinal Study
18. Cell type specific transcriptomic differences in depression show similar patterns between males and females but implicate distinct cell types and genes
19. Epigenomic and Transcriptomic Alterations in Deep-Layer Pyramidal Neurons of Individuals Who Died by Suicide With Histories of Early-Life Adversity
20. Genetic impacts on DNA methylation help elucidate regulatory genomic processes
21. Supplementary Table 2 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
22. Supplementary Figure 4 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
23. Supplementary Figure 8 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
24. Supplementary Figure 6 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
25. Supplementary Figure 5 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
26. Supplementary Figure 6 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
27. Supplementary Figure 7 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
28. Supplementary Materials and Methods, Figure Legends, Table Legends from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
29. Supplementary Figure 3 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
30. Supplementary Figure 5 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
31. Supplementary Figure 3 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
32. Supplementary Table 1 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
33. Supplementary Figure 1 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
34. Supplementary Table 1 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
35. Supplementary Figure 2 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
36. Supplementary Figure 8 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
37. Supplementary Table 2 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
38. Supplementary Materials and Methods, Figure Legends, Table Legends from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
39. Supplementary Figure 7 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
40. Supplementary Figure 4 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
41. Supplementary Figure 1 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
42. Supplementary Figure 2 from Genome-Wide Study of Hypomethylated and Induced Genes in Patients with Liver Cancer Unravels Novel Anticancer Targets
43. Supplementary Results, Figure Legends 1-8, Table Legends 1-12 from Definition of the Landscape of Promoter DNA Hypomethylation in Liver Cancer
44. Supplementary Methods from Definition of the Landscape of Promoter DNA Hypomethylation in Liver Cancer
45. Supplementary Figure 8 from Definition of the Landscape of Promoter DNA Hypomethylation in Liver Cancer
46. Data from Definition of the Landscape of Promoter DNA Hypomethylation in Liver Cancer
47. Supplementary Figure 3 from Definition of the Landscape of Promoter DNA Hypomethylation in Liver Cancer
48. Supplementary Table 3 from Definition of the Landscape of Promoter DNA Hypomethylation in Liver Cancer
49. Supplementary Table 5 from Definition of the Landscape of Promoter DNA Hypomethylation in Liver Cancer
50. Supplementary Figure 7 from Definition of the Landscape of Promoter DNA Hypomethylation in Liver Cancer
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