[HTML][HTML] Epigenetic pathways in human disease: the impact of DNA methylation on stress-related pathogenesis and current challenges in biomarker development

MA Argentieri, S Nagarajan, B Seddighzadeh… - …, 2017 - thelancet.com
HPA axis genes implicated in glucocorticoid regulation play an important role in regulating
the physiological impact of social and environmental stress, and have become a focal point …

[引用][C] Epigenetic Pathways in Human Disease: The Impact of DNA Methylation on Stress-Related Pathogenesis and Current Challenges in Biomarker Development

MA Argentieri, S Nagarajan, B Seddighzadeh… - EBioMedicine, 2017 - cir.nii.ac.jp
Epigenetic Pathways in Human Disease: The Impact of DNA Methylation on Stress-Related
Pathogenesis and Current Challenges in Biomarker Development | CiNii Research CiNii 国立 …

Epigenetic Pathways in Human Disease: The Impact of DNA Methylation on Stress-Related Pathogenesis and Current Challenges in Biomarker Development

MA Argentieri, S Nagarajan… - …, 2017 - pubmed.ncbi.nlm.nih.gov
HPA axis genes implicated in glucocorticoid regulation play an important role in regulating
the physiological impact of social and environmental stress, and have become a focal point …

Epigenetic Pathways in Human Disease: The Impact of DNA Methylation on Stress-Related Pathogenesis and Current Challenges in Biomarker Development

MA Argentieri, S Nagarajan, B Seddighzadeh… - …, 2017 - dash.harvard.edu
HPA axis genes implicated in glucocorticoid regulation play an important role in regulating
the physiological impact of social and environmental stress, and have become a focal point …

[HTML][HTML] Epigenetic Pathways in Human Disease: The Impact of DNA Methylation on Stress-Related Pathogenesis and Current Challenges in Biomarker Development

MA Argentieri, S Nagarajan, B Seddighzadeh… - …, 2017 - ncbi.nlm.nih.gov
HPA axis genes implicated in glucocorticoid regulation play an important role in regulating
the physiological impact of social and environmental stress, and have become a focal point …

Epigenetic Pathways in Human Disease: The Impact of DNA Methylation on Stress-Related Pathogenesis and Current Challenges in Biomarker Development

MA Argentieri, S Nagarajan, B Seddighzadeh… - EBioMedicine, 2017 - infona.pl
HPA axis genes implicated in glucocorticoid regulation play an important role in regulating
the physiological impact of social and environmental stress, and have become a focal point …

Epigenetic Pathways in Human Disease: The Impact of DNA Methylation on Stress-Related Pathogenesis and Current Challenges in Biomarker Development.

MA Argentieri, S Nagarajan, B Seddighzadeh… - Ebiomedicine, 2017 - europepmc.org
HPA axis genes implicated in glucocorticoid regulation play an important role in regulating
the physiological impact of social and environmental stress, and have become a focal point …

[HTML][HTML] Epigenetic Pathways in Human Disease: The Impact of DNA Methylation on Stress-Related Pathogenesis and Current Challenges in Biomarker Development

MA Argentieri, S Nagarajan, B Seddighzadeh… - EBioMedicine, 2017 - Elsevier
HPA axis genes implicated in glucocorticoid regulation play an important role in regulating
the physiological impact of social and environmental stress, and have become a focal point …

Epigenetic pathways in human disease: The impact of DNA methylation on stress-related pathogenesis and current challenges in biomarker development

M Argentieri, S Nagarajan, B Seddighzadeh… - EBioMedicine, 2017 - ora.ox.ac.uk
HPA axis genes implicated in glucocorticoid regulation play an important role in regulating
the physiological impact of social and environmental stress, and have become a focal point …

Epigenetic Pathways in Human Disease: The Impact of DNA Methylation on Stress-Related Pathogenesis and Current Challenges in Biomarker Development

MA Argentieri, S Nagarajan, B Seddighzadeh… - …, 2017 - hero.epa.gov
HPA axis genes implicated in glucocorticoid regulation play an important role in regulating
the physiological impact of social and environmental stress, and have become a focal point …