Sleep deprivation and pearl powder: Proteomics reveals brain pathway alterations - 2020 - Wiley Analytical Science

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Last updated 17 May 2024
Sleep deprivation and pearl powder: Proteomics reveals brain pathway  alterations - 2020 - Wiley Analytical Science
Sleep deprivation and pearl powder: Proteomics reveals brain pathway  alterations - 2020 - Wiley Analytical Science
Brain Proteostasis: Journal of Neurochemistry: Vol 166, No 1
Sleep deprivation and pearl powder: Proteomics reveals brain pathway  alterations - 2020 - Wiley Analytical Science
Molecules May-1 2023 - Browse Articles
Sleep deprivation and pearl powder: Proteomics reveals brain pathway  alterations - 2020 - Wiley Analytical Science
Human blood serum proteome changes after 6 hours of sleep deprivation at night, Sleep Science and Practice
Sleep deprivation and pearl powder: Proteomics reveals brain pathway  alterations - 2020 - Wiley Analytical Science
Single-cell transcriptomics and cell-specific proteomics reveals molecular signatures of sleep
Sleep deprivation and pearl powder: Proteomics reveals brain pathway  alterations - 2020 - Wiley Analytical Science
Pearl powder reduces sleep disturbance stress response through regulating proteomics in a rat model of sleep deprivation - Xia - 2020 - Journal of Cellular and Molecular Medicine - Wiley Online Library
Sleep deprivation and pearl powder: Proteomics reveals brain pathway  alterations - 2020 - Wiley Analytical Science
Quantitative phosphoproteomic analysis of the molecular substrates of sleep need
Sleep deprivation and pearl powder: Proteomics reveals brain pathway  alterations - 2020 - Wiley Analytical Science
The forebrain synaptic transcriptome is organized by clocks but its proteome is driven by sleep
Sleep deprivation and pearl powder: Proteomics reveals brain pathway  alterations - 2020 - Wiley Analytical Science
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Sleep deprivation and pearl powder: Proteomics reveals brain pathway  alterations - 2020 - Wiley Analytical Science
Single-cell transcriptomics and cell-specific proteomics reveals molecular signatures of sleep

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