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Age and sex effects across the blood proteome after ionizing radiation exposure can bias biomarker screening and risk assessment
by
Vorontsov, Egor
, Spetz, Johan
, Swanpalmer, John
, Forssell-Aronsson, Eva
, Langen, Britta
, Sihlbom, Carina
, Helou, Khalil
in
692/308/2778
/ 692/308/53
/ 692/4028/67/1059/485
/ Age
/ Animals
/ Apoptosis
/ Bias
/ Biomarkers
/ Blood
/ Cancer and Oncology
/ Cancer och onkologi
/ Cell death
/ cs-137
/ DNA damage
/ DNA repair
/ dose-rate
/ Female
/ geminin
/ gene-expression
/ Humanities and Social Sciences
/ Immune response
/ Ionizing radiation
/ Irradiation
/ Juveniles
/ Male
/ management
/ Mass spectrometry
/ Mass spectroscopy
/ Mice
/ Mice, Inbred C57BL
/ Mice, Nude
/ microarray
/ mouse-tissues
/ multidisciplinary
/ Neoplasms
/ Oxidative stress
/ plasma proteomics
/ Precision medicine
/ Proteome - analysis
/ Proteomes
/ Proteomics
/ Proteomics - methods
/ Radiation hazards
/ Radiation Injuries
/ Radiation therapy
/ Radiation, Ionizing
/ Risk Assessment
/ Science
/ Science & Technology - Other Topics
/ Science (multidisciplinary)
/ Sex
/ Survival
2022
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Age and sex effects across the blood proteome after ionizing radiation exposure can bias biomarker screening and risk assessment
by
Vorontsov, Egor
, Spetz, Johan
, Swanpalmer, John
, Forssell-Aronsson, Eva
, Langen, Britta
, Sihlbom, Carina
, Helou, Khalil
in
692/308/2778
/ 692/308/53
/ 692/4028/67/1059/485
/ Age
/ Animals
/ Apoptosis
/ Bias
/ Biomarkers
/ Blood
/ Cancer and Oncology
/ Cancer och onkologi
/ Cell death
/ cs-137
/ DNA damage
/ DNA repair
/ dose-rate
/ Female
/ geminin
/ gene-expression
/ Humanities and Social Sciences
/ Immune response
/ Ionizing radiation
/ Irradiation
/ Juveniles
/ Male
/ management
/ Mass spectrometry
/ Mass spectroscopy
/ Mice
/ Mice, Inbred C57BL
/ Mice, Nude
/ microarray
/ mouse-tissues
/ multidisciplinary
/ Neoplasms
/ Oxidative stress
/ plasma proteomics
/ Precision medicine
/ Proteome - analysis
/ Proteomes
/ Proteomics
/ Proteomics - methods
/ Radiation hazards
/ Radiation Injuries
/ Radiation therapy
/ Radiation, Ionizing
/ Risk Assessment
/ Science
/ Science & Technology - Other Topics
/ Science (multidisciplinary)
/ Sex
/ Survival
2022
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Age and sex effects across the blood proteome after ionizing radiation exposure can bias biomarker screening and risk assessment
by
Vorontsov, Egor
, Spetz, Johan
, Swanpalmer, John
, Forssell-Aronsson, Eva
, Langen, Britta
, Sihlbom, Carina
, Helou, Khalil
in
692/308/2778
/ 692/308/53
/ 692/4028/67/1059/485
/ Age
/ Animals
/ Apoptosis
/ Bias
/ Biomarkers
/ Blood
/ Cancer and Oncology
/ Cancer och onkologi
/ Cell death
/ cs-137
/ DNA damage
/ DNA repair
/ dose-rate
/ Female
/ geminin
/ gene-expression
/ Humanities and Social Sciences
/ Immune response
/ Ionizing radiation
/ Irradiation
/ Juveniles
/ Male
/ management
/ Mass spectrometry
/ Mass spectroscopy
/ Mice
/ Mice, Inbred C57BL
/ Mice, Nude
/ microarray
/ mouse-tissues
/ multidisciplinary
/ Neoplasms
/ Oxidative stress
/ plasma proteomics
/ Precision medicine
/ Proteome - analysis
/ Proteomes
/ Proteomics
/ Proteomics - methods
/ Radiation hazards
/ Radiation Injuries
/ Radiation therapy
/ Radiation, Ionizing
/ Risk Assessment
/ Science
/ Science & Technology - Other Topics
/ Science (multidisciplinary)
/ Sex
/ Survival
2022
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Age and sex effects across the blood proteome after ionizing radiation exposure can bias biomarker screening and risk assessment
Journal Article
Age and sex effects across the blood proteome after ionizing radiation exposure can bias biomarker screening and risk assessment
2022
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Overview
Molecular biomarkers of ionizing radiation (IR) exposure are a promising new tool in various disciplines: they can give necessary information for adaptive treatment planning in cancer radiotherapy, enable risk projection for radiation-induced survivorship diseases, or facilitate triage and intervention in radiation hazard events. However, radiation biomarker discovery has not yet resolved the most basic features of personalized medicine: age and sex. To overcome this critical bias in biomarker identification, we quantitated age and sex effects and assessed their relevance in the radiation response across the blood proteome. We used high-throughput mass spectrometry on blood plasma collected 24 h after 0.5 Gy total body irradiation (15 MV nominal photon energy) from male and female C57BL/6 N mice at juvenile (7-weeks-old) or adult (18-weeks-old) age. We also assessed sex and strain effects using juvenile male and female BALB/c nude mice. We showed that age and sex created significant effects in the proteomic response regarding both extent and functional quality of IR-induced responses. Furthermore, we found that age and sex effects appeared non-linear and were often end-point specific. Overall, age contributed more to differences in the proteomic response than sex, most notably in
immune responses
,
oxidative stress
, and
apoptotic cell death
. Interestingly, sex effects were pronounced for
DNA damage and repair
pathways and associated cellular outcome (pro-survival vs. pro-apoptotic). Only one protein (AHSP) was identified as a potential general biomarker candidate across age and sex, while GMNN, REG3B, and SNCA indicated some response similarity across age. This low yield advocated that unisex or uniage biomarker screening approaches are not feasible. In conclusion, age- and sex-specific screening approaches should be implemented as standard protocol to ensure robustness and diagnostic power of biomarker candidates. Bias-free molecular biomarkers are a necessary progression towards personalized medicine and integral for advanced adaptive cancer radiotherapy and risk assessment.
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