Quantitative Analysis of Human Pluripotency and Neural Specification by In-Depth (Phospho)Proteomic Profiling
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Corticosterone primes the neuroinflammatory response to Gulf War Illness-relevant organophosphates independently of acetylcholinesterase inhibitionProbing the lithium-response pathway in hiPSCs implicates the phosphoregulatory set-point for a cytoskeletal modulator in bipolar pathogenesis.Spatiotemporal proteomic profiling of human cerebral development.AEE788 Inhibits Basal Body Assembly and Blocks DNA Replication in the African Trypanosome.The state of the art in stem cell biology and regenerative medicine: the end of the beginning.Prospects of Pluripotent and Adult Stem Cells for Rare Diseases.Generation and selection of pluripotent stem cells for robust differentiation to insulin-secreting cells capable of reversing diabetes in rodents
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Quantitative Analysis of Human Pluripotency and Neural Specification by In-Depth (Phospho)Proteomic Profiling
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 23 August 2016
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Quantitative Analysis of Human ...... h (Phospho)Proteomic Profiling
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Quantitative Analysis of Human Pluripotency and Neural Specification by In-Depth
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type
label
Quantitative Analysis of Human ...... h (Phospho)Proteomic Profiling
@en
Quantitative Analysis of Human Pluripotency and Neural Specification by In-Depth
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prefLabel
Quantitative Analysis of Human ...... h (Phospho)Proteomic Profiling
@en
Quantitative Analysis of Human Pluripotency and Neural Specification by In-Depth
@nl
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Quantitative Analysis of Human ...... h (Phospho)Proteomic Profiling
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Alicia A Winquist
Andrew M Crain
Brian T D Tobe
David M Horn
Esther La Monaca
Evan Y Snyder
Ilyas Singec
Jennifer Choy
Junjie Hou
Kutbuddin S Doctor
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P304
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10.1016/J.STEMCR.2016.07.019
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2016-08-23T00:00:00Z