Quantitative proteomic analysis reveals AK2 as potential biomarker for late normal tissue radiotoxicity

scientific article published on 09 August 2019

Quantitative proteomic analysis reveals AK2 as potential biomarker for late normal tissue radiotoxicity is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1186/S13014-019-1351-8
P932PMC publication ID6688300
P698PubMed publication ID31399108

P50authorAndré PèlegrinQ88939578
David AzriaQ92531082
Alain MangéQ43894159
P2093author name stringMuriel Brengues
Jérôme Solassol
Mahmut Ozsahin
Céline Bourgier
Sophie Gourgou
Jérôme Lacombe
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The DUSP26 phosphatase activator adenylate kinase 2 regulates FADD phosphorylation and cell growthQ37628292
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Proteomic identification of the lactate dehydrogenase A in a radioresistant prostate cancer xenograft mouse model for improving radiotherapy.Q37687556
Ionizing radiation-induced metabolic oxidative stress and prolonged cell injuryQ37693239
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AK2 activates a novel apoptotic pathway through formation of a complex with FADD and caspase-10.Q40064206
CD4 and CD8 T-lymphocyte apoptosis can predict radiation-induced late toxicity: a prospective study in 399 patientsQ40378736
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The cognitive defects of neonatally irradiated mice are accompanied by changed synaptic plasticity, adult neurogenesis and neuroinflammationQ41682461
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NOX4 regulates ROS levels under normoxic and hypoxic conditions, triggers proliferation, and inhibits apoptosis in pulmonary artery adventitial fibroblastsQ46508038
P433issue1
P921main subjectbiomarkerQ864574
P304page(s)142
P577publication date2019-08-09
P1433published inRadiation OncologyQ2313370
P1476titleQuantitative proteomic analysis reveals AK2 as potential biomarker for late normal tissue radiotoxicity
P478volume14

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