[HTML][HTML] Transcriptome analysis in calorie-restricted rats implicates epigenetic and post-translational mechanisms in neuroprotection and aging

SH Wood, S van Dam, T Craig, R Tacutu, A O'Toole… - Genome biology, 2015 - Springer
Background Caloric restriction (CR) can increase longevity in rodents and improve memory
function in humans. α-Lipoic acid (LA) has been shown to improve memory function in rats …

Transcriptome analysis in calorie-restricted rats implicates epigenetic and post-translational mechanisms in neuroprotection and aging

SH Wood, S van Dam, T Craig, R Tacutu… - Genome …, 2015 - search.proquest.com
Background Caloric restriction (CR) can increase longevity in rodents and improve memory
function in humans. α-Lipoic acid (LA) has been shown to improve memory function in rats …

[PDF][PDF] Transcriptome analysis in calorie-restricted rats implicates epigenetic and post-translational mechanisms in neuroprotection and aging

SH Wood, TC Sipko van Dam, R Tacutu, A O'Toole… - 2015 - Citeseer
Background: Caloric restriction (CR) can increase longevity in rodents and improve memory
function in humans. α-Lipoic acid (LA) has been shown to improve memory function in rats …

[HTML][HTML] Transcriptome analysis in calorie-restricted rats implicates epigenetic and post-translational mechanisms in neuroprotection and aging

SH Wood, S van Dam, T Craig, R Tacutu… - Genome …, 2015 - ncbi.nlm.nih.gov
Background Caloric restriction (CR) can increase longevity in rodents and improve memory
function in humans. α-Lipoic acid (LA) has been shown to improve memory function in rats …

[PDF][PDF] Transcriptome analysis in calorie-restricted rats implicates epigenetic and post-translational mechanisms in neuroprotection and aging

SH Wood, TC Sipko van Dam, R Tacutu, A O'Toole… - 2015 - core.ac.uk
Background: Caloric restriction (CR) can increase longevity in rodents and improve memory
function in humans. α-Lipoic acid (LA) has been shown to improve memory function in rats …

[PDF][PDF] Transcriptome analysis in calorie-restricted rats implicates epigenetic and post-translational mechanisms in neuroprotection and aging

SH Wood, TC Sipko van Dam, R Tacutu, A O'Toole… - 2015 - cyberleninka.org
Background: Caloric restriction (CR) can increase longevity in rodents and improve memory
function in humans. α-Lipoic acid (LA) has been shown to improve memory function in rats …

[PDF][PDF] Transcriptome analysis in calorie-restricted rats implicates epigenetic and post-translational mechanisms in neuroprotection and aging

SH Wood, TC Sipko van Dam, R Tacutu, A O'Toole… - 2015 - pcwww.liv.ac.uk
Background: Caloric restriction (CR) can increase longevity in rodents and improve memory
function in humans. α-Lipoic acid (LA) has been shown to improve memory function in rats …

[PDF][PDF] Transcriptome analysis in calorie-restricted rats implicates epigenetic and post-translational mechanisms in neuroprotection and aging

SH Wood, TC Sipko van Dam, R Tacutu, A O'Toole… - 2015 - rejuvenomicslab.com
Background: Caloric restriction (CR) can increase longevity in rodents and improve memory
function in humans. α-Lipoic acid (LA) has been shown to improve memory function in rats …

[引用][C] Transcriptome analysis in calorie-restricted rats implicates epigenetic and post-translational mechanisms in neuroprotection and aging

SH Wood, TC Sipko van Dam, R Tacutu, A O'Toole… - Genome …, 2015 - cir.nii.ac.jp
Transcriptome analysis in calorie-restricted rats implicates epigenetic and post-translational
mechanisms in neuroprotection and aging | CiNii Research CiNii 国立情報学研究所 学術情報 …

Transcriptome analysis in calorie-restricted rats implicates epigenetic and post-translational mechanisms in neuroprotection and aging.

SH Wood, S Dam, T Craig, R Tacutu, A O'Toole… - 2015 - cabidigitallibrary.org
Background: Caloric restriction (CR) can increase longevity in rodents and improve memory
function in humans. α-Lipoic acid (LA) has been shown to improve memory function in rats …