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Pregled bibliografske jedinice broj: 1279901

RENEB Inter-Laboratory Comparison 2021: Inter-Assay Comparison of Eight Dosimetry Assays


(RENEB) Port, M.; Barquinero, J-F.; Endesfelder, D.; Moquet, J.; Oestreicher, U.; Terzoudi, G.; Trompier, F.; Vral, A.; Abe, Y.; Ainsbury, L. et al.
RENEB Inter-Laboratory Comparison 2021: Inter-Assay Comparison of Eight Dosimetry Assays // Radiation Research, 199 (2023), 6; 535-555 doi:10.1667/rade-22-00207.1 (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 1279901 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
RENEB Inter-Laboratory Comparison 2021: Inter-Assay Comparison of Eight Dosimetry Assays

Autori
Port, M. ; Barquinero, J-F. ; Endesfelder, D. ; Moquet, J. ; Oestreicher, U. ; Terzoudi, G. ; Trompier, F. ; Vral, A. ; Abe, Y. ; Ainsbury, L. ; Alkebsi, L ; Amundson, S.A. ; Badie, C. ; Baeyens, A. ; Balajee, A.S. ; Balázs, K. ; Barnard, S. ; Bassinet, C. ; Beaton-Green, L.A. ; Beinke, C. ; Bobyk, L. ; Brochard, P. ; Brzoska, K. ; Bucher, M. ; Ciesielski, B. ; Cuceu, C. ; Discher, M. ; D, Oca, M.C. ; Domínguez, I. ; Doucha-Senf, S. ; Dumitrescu, A. ; Duy, P.N. ; Finot, F. ; Garty, G. ; Ghandhi, S.A. ; Gregoire, E. ; Goh, V.S.T. ; Güçlü, I. ; Hadjiiska, L. ; Hargitai, R. ; Hristova, R. ; Ishii, K. ; Kis, E. ; Juniewicz, M. ; Kriehuber, R. ; Lacombe, J. ; Lee, Y. ; Lopez Riego, M. ; Lumniczky, K. ; Mai, T.T. ; Maltar-Strmečki, Nadica ; Marrale, M. ; Martinez, J.S. ; Marciniak, A. ; Maznyk, N. ; McKeever, S.W.S. ; Meher, P.K. ; Milanova, M. ; Miura, T. ; Monteiro Gil, O. ; Montoro, A. ; Moreno Domene, M. ; Mrozik, A. ; Nakayama, R. ; O'Brien, G. ; Oskamp, D. ; Ostheim, P. ; Pajic, J. ; Pastor, N. ; Patrono, C. ; Pujol-Canadell, M. ; Prieto Rodriguez, M.J. ; Repin, M. ; Romanyukha, A. ; Rößler, U. ; Sabatier, L. ; Sakai, A. ; Scherthan, H. ; Schüle, S. ; Seong, K.M. ; Sevriukova, O. ; Sholom, S. ; Sommer, S. ; Suto, Y. ; Sypko, T. ; Szatmári, T. ; Takahashi-Sugai, M. ; Takebayashi, K. ; Testa, A. ; Testard, I. ; Tichy, A.ii A. ; Triantopoulou, S. ; Tsuyama, N. ; Unverricht-Yeboah, M. ; Valente, M. ; Van Hoey, O. ; Wilkins, R.C. ; Wojcik, A. ; Wojewodzka, M. ; Younghyun, Lee ; Zafiropoulos, D. ; Abend, M.

Kolaboracija
RENEB

Izvornik
Radiation Research (0033-7587) 199 (2023), 6; 535-555

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
radiation exposure reconstruction, [dicentric chromosome assay (DCA), cytokinesis-block micronucleus assay (CBMN), stable chromosomal translocation assay (FISH) and premature chromosome condensation assay (PCC)] was tested in comparison to molecular biological assays [gamma-H2AX foci (gH2AX), gene expression (GE)] and physical dosimetry-based assays [electron paramagnetic resonance (EPR), optically or thermally stimulated luminescence (LUM)

Sažetak
Tools for radiation exposure reconstruction are required to support the medical management of radiation victims in radiological or nuclear incidents. Different biological and physical dosimetry assays can be used for various exposure scenarios to estimate the dose of ionizing radiation a person has absorbed. Regular validation of the techniques through inter-laboratory comparisons (ILC) is essential to guarantee high quality results. In the current RENEB inter-laboratory comparison, the performance quality of established cytogenetic assays [dicentric chromosome assay (DCA), cytokinesis-block micronucleus assay (CBMN), stable chromosomal translocation assay (FISH) and premature chromosome condensation assay (PCC)] was tested in comparison to molecular biological assays [gamma-H2AX foci (gH2AX), gene expression (GE)] and physical dosimetry-based assays [electron paramagnetic resonance (EPR), optically or thermally stimulated luminescence (LUM)]. Three blinded coded samples (e.g., blood, enamel or mobiles) were exposed to 0, 1.2 or 3.5 Gy X-ray reference doses (240 kVp, 1 Gy/min). These doses roughly correspond to clinically relevant groups of unexposed to low exposed (0–1 Gy), moderately exposed (1–2 Gy, no severe acute health effects expected) and highly exposed individuals (>2 Gy, requiring early intensive medical care). In the frame of the current RENEB inter-laboratory comparison, samples were sent to 86 specialized teams in 46 organizations from 27 nations for dose estimation and identification of three clinically relevant groups. The time for sending early crude reports and more precise reports was documented for each laboratory and assay where possible. The quality of dose estimates was analyzed with three different levels of granularity, 1. by calculating the frequency of correctly reported clinically relevant dose categories, 2. by determining the number of dose estimates within the uncertainty intervals recommended for triage dosimetry (±0.5 Gy or ±1.0 Gy for doses <2.5 Gy or >2.5 Gy), and 3. by calculating the absolute difference (AD) of estimated doses relative to the reference doses. In total, 554 dose estimates were submitted within the 6-week period given before the exercise was closed. For samples processed with the highest priority, earliest dose estimates/categories were reported within 5–10 h of receipt for GE, gH2AX, LUM, EPR, 2–3 days for DCA, CBMN and within 6–7 days for the FISH assay. For the unirradiated control sample, the categorization in the correct clinically relevant group (0–1 Gy) as well as the allocation to the triage uncertainty interval was, with the exception of a few outliers, successfully performed for all assays. For the 3.5 Gy sample the percentage of correct classifications to the clinically relevant group (≥2 Gy) was between 89–100% for all assays, with the exception of gH2AX. For the 1.2 Gy sample, an exact allocation to the clinically relevant group was more difficult and 0–50% or 0–48% of the estimates were wrongly classified into the lowest or highest dose categories, respectively. For the irradiated samples, the correct allocation to the triage uncertainty intervals varied considerably between assays for the 1.2 Gy (29–76%) and 3.5 Gy (17–100%) samples. While a systematic shift towards higher doses was observed for the cytogenetic-based assays, extreme outliers exceeding the reference doses 2–6 fold were observed for EPR, FISH and GE assays. These outliers were related to a particular material examined (tooth enamel for EPR assay, reported as kerma in enamel, but when converted into the proper quantity, i.e. to kerma in air, expected dose estimates could be recalculated in most cases), the level of experience of the teams (FISH) and methodological uncertainties (GE). This was the first RENEB ILC where everything, from blood sampling to irradiation and shipment of the samples, was organized and realized at the same institution, for several biological and physical retrospective dosimetry assays. Almost all assays appeared comparably applicable for the identification of unexposed and highly exposed individuals and the allocation of medical relevant groups, with the latter requiring medical support for the acute radiation scenario simulated in this exercise. However, extreme outliers or a systematic shift of dose estimates have been observed for some assays. Possible reasons will be discussed in the assay specific papers of this special issue. In summary, this ILC clearly demonstrates the need to conduct regular exercises to identify research needs, but also to identify technical problems and to optimize the design of future ILCs.

Izvorni jezik
Engleski

Znanstvena područja
Fizika, Kemija, Biologija, Javno zdravstvo i zdravstvena zaštita



POVEZANOST RADA


Ustanove:
Institut "Ruđer Bošković", Zagreb

Profili:

Avatar Url Nadica Maltar Strmečki (autor)

Poveznice na cjeloviti tekst rada:

doi meridian.allenpress.com bioone.org

Citiraj ovu publikaciju:

(RENEB) Port, M.; Barquinero, J-F.; Endesfelder, D.; Moquet, J.; Oestreicher, U.; Terzoudi, G.; Trompier, F.; Vral, A.; Abe, Y.; Ainsbury, L. et al.
RENEB Inter-Laboratory Comparison 2021: Inter-Assay Comparison of Eight Dosimetry Assays // Radiation Research, 199 (2023), 6; 535-555 doi:10.1667/rade-22-00207.1 (međunarodna recenzija, članak, znanstveni)
(RENEB) (RENEB) Port, M., Barquinero, J., Endesfelder, D., Moquet, J., Oestreicher, U., Terzoudi, G., Trompier, F., Vral, A., Abe, Y. & Ainsbury, L. (2023) RENEB Inter-Laboratory Comparison 2021: Inter-Assay Comparison of Eight Dosimetry Assays. Radiation Research, 199 (6), 535-555 doi:10.1667/rade-22-00207.1.
@article{article, author = {Port, M. and Barquinero, J-F. and Endesfelder, D. and Moquet, J. and Oestreicher, U. and Terzoudi, G. and Trompier, F. and Vral, A. and Abe, Y. and Ainsbury, L. and Alkebsi, L and Amundson, S.A. and Badie, C. and Baeyens, A. and Balajee, A.S. and Bal\'{a}zs, K. and Barnard, S. and Bassinet, C. and Beaton-Green, L.A. and Beinke, C. and Bobyk, L. and Brochard, P. and Brzoska, K. and Bucher, M. and Ciesielski, B. and Cuceu, C. and Discher, M. and Dom\'{\i}nguez, I. and Doucha-Senf, S. and Dumitrescu, A. and Duy, P.N. and Finot, F. and Garty, G. and Ghandhi, S.A. and Gregoire, E. and Goh, V.S.T. and G\"{u}\c{c}l\"{u}, I. and Hadjiiska, L. and Hargitai, R. and Hristova, R. and Ishii, K. and Kis, E. and Juniewicz, M. and Kriehuber, R. and Lacombe, J. and Lee, Y. and Lopez Riego, M. and Lumniczky, K. and Mai, T.T. and Maltar-Strme\v{c}ki, Nadica and Marrale, M. and Martinez, J.S. and Marciniak, A. and Maznyk, N. and McKeever, S.W.S. and Meher, P.K. and Milanova, M. and Miura, T. and Monteiro Gil, O. and Montoro, A. and Moreno Domene, M. and Mrozik, A. and Nakayama, R. and O'Brien, G. and Oskamp, D. and Ostheim, P. and Pajic, J. and Pastor, N. and Patrono, C. and Pujol-Canadell, M. and Prieto Rodriguez, M.J. and Repin, M. and Romanyukha, A. and R\"{o}ßler, U. and Sabatier, L. and Sakai, A. and Scherthan, H. and Sch\"{u}le, S. and Seong, K.M. and Sevriukova, O. and Sholom, S. and Sommer, S. and Suto, Y. and Sypko, T. and Szatm\'{a}ri, T. and Takahashi-Sugai, M. and Takebayashi, K. and Testa, A. and Testard, I. and Tichy, A.ii A. and Triantopoulou, S. and Tsuyama, N. and Unverricht-Yeboah, M. and Valente, M. and Van Hoey, O. and Wilkins, R.C. and Wojcik, A. and Wojewodzka, M. and Younghyun, Lee and Zafiropoulos, D. and Abend, M.}, year = {2023}, pages = {535-555}, DOI = {10.1667/rade-22-00207.1}, keywords = {radiation exposure reconstruction, [dicentric chromosome assay (DCA), cytokinesis-block micronucleus assay (CBMN), stable chromosomal translocation assay (FISH) and premature chromosome condensation assay (PCC)] was tested in comparison to molecular biological assays [gamma-H2AX foci (gH2AX), gene expression (GE)] and physical dosimetry-based assays [electron paramagnetic resonance (EPR), optically or thermally stimulated luminescence (LUM)}, journal = {Radiation Research}, doi = {10.1667/rade-22-00207.1}, volume = {199}, number = {6}, issn = {0033-7587}, title = {RENEB Inter-Laboratory Comparison 2021: Inter-Assay Comparison of Eight Dosimetry Assays}, keyword = {radiation exposure reconstruction, [dicentric chromosome assay (DCA), cytokinesis-block micronucleus assay (CBMN), stable chromosomal translocation assay (FISH) and premature chromosome condensation assay (PCC)] was tested in comparison to molecular biological assays [gamma-H2AX foci (gH2AX), gene expression (GE)] and physical dosimetry-based assays [electron paramagnetic resonance (EPR), optically or thermally stimulated luminescence (LUM)} }
@article{article, author = {Port, M. and Barquinero, J-F. and Endesfelder, D. and Moquet, J. and Oestreicher, U. and Terzoudi, G. and Trompier, F. and Vral, A. and Abe, Y. and Ainsbury, L. and Alkebsi, L and Amundson, S.A. and Badie, C. and Baeyens, A. and Balajee, A.S. and Bal\'{a}zs, K. and Barnard, S. and Bassinet, C. and Beaton-Green, L.A. and Beinke, C. and Bobyk, L. and Brochard, P. and Brzoska, K. and Bucher, M. and Ciesielski, B. and Cuceu, C. and Discher, M. and Dom\'{\i}nguez, I. and Doucha-Senf, S. and Dumitrescu, A. and Duy, P.N. and Finot, F. and Garty, G. and Ghandhi, S.A. and Gregoire, E. and Goh, V.S.T. and G\"{u}\c{c}l\"{u}, I. and Hadjiiska, L. and Hargitai, R. and Hristova, R. and Ishii, K. and Kis, E. and Juniewicz, M. and Kriehuber, R. and Lacombe, J. and Lee, Y. and Lopez Riego, M. and Lumniczky, K. and Mai, T.T. and Maltar-Strme\v{c}ki, Nadica and Marrale, M. and Martinez, J.S. and Marciniak, A. and Maznyk, N. and McKeever, S.W.S. and Meher, P.K. and Milanova, M. and Miura, T. and Monteiro Gil, O. and Montoro, A. and Moreno Domene, M. and Mrozik, A. and Nakayama, R. and O'Brien, G. and Oskamp, D. and Ostheim, P. and Pajic, J. and Pastor, N. and Patrono, C. and Pujol-Canadell, M. and Prieto Rodriguez, M.J. and Repin, M. and Romanyukha, A. and R\"{o}ßler, U. and Sabatier, L. and Sakai, A. and Scherthan, H. and Sch\"{u}le, S. and Seong, K.M. and Sevriukova, O. and Sholom, S. and Sommer, S. and Suto, Y. and Sypko, T. and Szatm\'{a}ri, T. and Takahashi-Sugai, M. and Takebayashi, K. and Testa, A. and Testard, I. and Tichy, A.ii A. and Triantopoulou, S. and Tsuyama, N. and Unverricht-Yeboah, M. and Valente, M. and Van Hoey, O. and Wilkins, R.C. and Wojcik, A. and Wojewodzka, M. and Younghyun, Lee and Zafiropoulos, D. and Abend, M.}, year = {2023}, pages = {535-555}, DOI = {10.1667/rade-22-00207.1}, keywords = {radiation exposure reconstruction, [dicentric chromosome assay (DCA), cytokinesis-block micronucleus assay (CBMN), stable chromosomal translocation assay (FISH) and premature chromosome condensation assay (PCC)] was tested in comparison to molecular biological assays [gamma-H2AX foci (gH2AX), gene expression (GE)] and physical dosimetry-based assays [electron paramagnetic resonance (EPR), optically or thermally stimulated luminescence (LUM)}, journal = {Radiation Research}, doi = {10.1667/rade-22-00207.1}, volume = {199}, number = {6}, issn = {0033-7587}, title = {RENEB Inter-Laboratory Comparison 2021: Inter-Assay Comparison of Eight Dosimetry Assays}, keyword = {radiation exposure reconstruction, [dicentric chromosome assay (DCA), cytokinesis-block micronucleus assay (CBMN), stable chromosomal translocation assay (FISH) and premature chromosome condensation assay (PCC)] was tested in comparison to molecular biological assays [gamma-H2AX foci (gH2AX), gene expression (GE)] and physical dosimetry-based assays [electron paramagnetic resonance (EPR), optically or thermally stimulated luminescence (LUM)} }

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    • Science Citation Index Expanded (SCI-EXP)
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