[HTML][HTML] Accelerated epigenetic aging and decreased natural killer cells based on DNA methylation in patients with untreated major depressive disorder

R Shindo, T Tanifuji, S Okazaki, I Otsuka, T Shirai… - npj Aging, 2023 - nature.com
Major depressive disorder (MDD) is known to cause significant disability. Genome-wide
DNA methylation (DNAm) profiles can be used to estimate biological aging and as …

Accelerated epigenetic aging and decreased natural killer cells based on DNA methylation in patients with untreated major depressive disorder

R Shindo, T Tanifuji, S Okazaki, I Otsuka… - NPJ Aging and …, 2023 - search.proquest.com
Major depressive disorder (MDD) is known to cause significant disability. Genome-wide
DNA methylation (DNAm) profiles can be used to estimate biological aging and as …

[HTML][HTML] Accelerated epigenetic aging and decreased natural killer cells based on DNA methylation in patients with untreated major depressive disorder

R Shindo, T Tanifuji, S Okazaki, I Otsuka, T Shirai… - NPJ Aging, 2023 - ncbi.nlm.nih.gov
Major depressive disorder (MDD) is known to cause significant disability. Genome-wide
DNA methylation (DNAm) profiles can be used to estimate biological aging and as …

Accelerated epigenetic aging and decreased natural killer cells based on DNA methylation in patients with untreated major depressive disorder

R Shindo, T Tanifuji - npj Aging, 2023 - cir.nii.ac.jp
抄録 Major depressive disorder (MDD) is known to cause significant disability. Genome-wide
DNA methylation (DNAm) profiles can be used to estimate biological aging and as …

Accelerated epigenetic aging and decreased natural killer cells based on DNA methylation in patients with untreated major depressive disorder.

R Shindo, T Tanifuji, S Okazaki, I Otsuka… - NPJ …, 2023 - search.ebscohost.com
Major depressive disorder (MDD) is known to cause significant disability. Genome-wide
DNA methylation (DNAm) profiles can be used to estimate biological aging and as …

Accelerated epigenetic aging and decreased natural killer cells based on DNA methylation in patients with untreated major depressive disorder

R Shindo, T Tanifuji, S Okazaki, I Otsuka, T Shirai… - npj Aging, 2023 - da.lib.kobe-u.ac.jp
Major depressive disorder (MDD) is known to cause significant disability. Genome-wide
DNA methylation (DNAm) profiles can be used to estimate biological aging and as …

Accelerated epigenetic aging and decreased natural killer cells based on DNA methylation in patients with untreated major depressive disorder

R Shindo, T Tanifuji, S Okazaki, I Otsuka… - npj …, 2023 - pubmed.ncbi.nlm.nih.gov
Major depressive disorder (MDD) is known to cause significant disability. Genome-wide
DNA methylation (DNAm) profiles can be used to estimate biological aging and as …

Accelerated epigenetic aging and decreased natural killer cells based on DNA methylation in patients with untreated major depressive disorder.

R Shindo, T Tanifuji, S Okazaki, I Otsuka, T Shirai… - npj Aging, 2023 - europepmc.org
Major depressive disorder (MDD) is known to cause significant disability. Genome-wide
DNA methylation (DNAm) profiles can be used to estimate biological aging and as …

[引用][C] Accelerated epigenetic aging and decreased natural killer cells based on DNA methylation in patients with untreated major depressive disorder

R Shindo, T Tanifuji, S Okazaki, I Otsuka, T Shirai… - dementia - europepmc.org
Major depressive disorder (MDD) is known to cause significant disability. Genome-wide
DNA methylation (DNAm) profiles can be used to estimate biological aging and as …