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NI-09 Amide Proton Transfer (APT) image is useful for diagnostic imaging of glioma
Introduction: APT image(APT),which images the concentration of amide groups that increases in tumors, is expected to be applied clinically in diagnostic imaging of glioma. Purpose: APT was compared with MET-PET based on the pathological diagnosis results, and it was retrospectively verified that APT...
Autores principales: | , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7699123/ http://dx.doi.org/10.1093/noajnl/vdaa143.057 |
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author | Shirota, Masami Nitta, Masayuki Saitou, Taiichi Tuduki, Syunsuke Fukui, Atsushi Ikuta, Souko Yoshida, Ayako Abe, Kayoko Muragaki, Yoshihiro Kawamata, Takakazu |
author_facet | Shirota, Masami Nitta, Masayuki Saitou, Taiichi Tuduki, Syunsuke Fukui, Atsushi Ikuta, Souko Yoshida, Ayako Abe, Kayoko Muragaki, Yoshihiro Kawamata, Takakazu |
author_sort | Shirota, Masami |
collection | PubMed |
description | Introduction: APT image(APT),which images the concentration of amide groups that increases in tumors, is expected to be applied clinically in diagnostic imaging of glioma. Purpose: APT was compared with MET-PET based on the pathological diagnosis results, and it was retrospectively verified that APT was useful for diagnostic imaging of glioma. Methods: A total of 46cases with glioma (WHO 2016 Grade: GII/III/IV) and Pseudoprogression were included. APT measured the APT measurement value by placing the region of interest in the tumor part. MET-PET was administered with 370MBq and the accumulation ratio(TNR) between the tumor part and the normal part was measured. Results: The APT measurement value in all cases was 2.22±1.01 and the TNR was 2.58±1.50,and a correlation was observed between the APT measurement value and the TNR(r=0.6, p<0.001).When the accuracy of discrimination between GII/III/IV (32cases) and Pseudoprogression(14cases) by APT measurement was verified, the sensitivity was 91% and the specificity was 100% at the threshold of 1.81. In the verification of malignancy diagnosis, the measured APT value of GII (6cases) was 2.18±0.43,the measured APT value of GIII (11cases) was 2.67±0.69,and the measured APT value of GIV (15cases) was 2.99±0.61.The measured value showed a significant difference. The measured APT value in the oligodendroglioma group (GII/III:10cases) was 2.37±0.66,the TNR was 3.52±1.41,and the measured APT value in the astrocytoma group (GII/III: 7cases)Was 2.67±0.45 and TNR was 2.41±0.87.In the oligodendroglioma group, the measured APT value was lower and the TNR was higher than in the astrocytoma group. Conclusion: It was suggested that APT may have the same diagnostic ability as MET-PET in diagnosing malignant tumors and distinguishing between recurrence and Pseudoprogression. Patients with an actual APT of 1.81 or higher should consider treatment strategies, and follow-up may be an option for patients with an APT of <1.81.APT,which is not affected by the blood-brain barrier, has little variation in measured values and is considered to be useful for diagnostic imaging of glioma. |
format | Online Article Text |
id | pubmed-7699123 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-76991232020-12-02 NI-09 Amide Proton Transfer (APT) image is useful for diagnostic imaging of glioma Shirota, Masami Nitta, Masayuki Saitou, Taiichi Tuduki, Syunsuke Fukui, Atsushi Ikuta, Souko Yoshida, Ayako Abe, Kayoko Muragaki, Yoshihiro Kawamata, Takakazu Neurooncol Adv Supplement Abstracts Introduction: APT image(APT),which images the concentration of amide groups that increases in tumors, is expected to be applied clinically in diagnostic imaging of glioma. Purpose: APT was compared with MET-PET based on the pathological diagnosis results, and it was retrospectively verified that APT was useful for diagnostic imaging of glioma. Methods: A total of 46cases with glioma (WHO 2016 Grade: GII/III/IV) and Pseudoprogression were included. APT measured the APT measurement value by placing the region of interest in the tumor part. MET-PET was administered with 370MBq and the accumulation ratio(TNR) between the tumor part and the normal part was measured. Results: The APT measurement value in all cases was 2.22±1.01 and the TNR was 2.58±1.50,and a correlation was observed between the APT measurement value and the TNR(r=0.6, p<0.001).When the accuracy of discrimination between GII/III/IV (32cases) and Pseudoprogression(14cases) by APT measurement was verified, the sensitivity was 91% and the specificity was 100% at the threshold of 1.81. In the verification of malignancy diagnosis, the measured APT value of GII (6cases) was 2.18±0.43,the measured APT value of GIII (11cases) was 2.67±0.69,and the measured APT value of GIV (15cases) was 2.99±0.61.The measured value showed a significant difference. The measured APT value in the oligodendroglioma group (GII/III:10cases) was 2.37±0.66,the TNR was 3.52±1.41,and the measured APT value in the astrocytoma group (GII/III: 7cases)Was 2.67±0.45 and TNR was 2.41±0.87.In the oligodendroglioma group, the measured APT value was lower and the TNR was higher than in the astrocytoma group. Conclusion: It was suggested that APT may have the same diagnostic ability as MET-PET in diagnosing malignant tumors and distinguishing between recurrence and Pseudoprogression. Patients with an actual APT of 1.81 or higher should consider treatment strategies, and follow-up may be an option for patients with an APT of <1.81.APT,which is not affected by the blood-brain barrier, has little variation in measured values and is considered to be useful for diagnostic imaging of glioma. Oxford University Press 2020-11-28 /pmc/articles/PMC7699123/ http://dx.doi.org/10.1093/noajnl/vdaa143.057 Text en © The Author(s) 2020. Published by Oxford University Press, the Society for Neuro-Oncology and the European Association of Neuro-Oncology. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com |
spellingShingle | Supplement Abstracts Shirota, Masami Nitta, Masayuki Saitou, Taiichi Tuduki, Syunsuke Fukui, Atsushi Ikuta, Souko Yoshida, Ayako Abe, Kayoko Muragaki, Yoshihiro Kawamata, Takakazu NI-09 Amide Proton Transfer (APT) image is useful for diagnostic imaging of glioma |
title | NI-09 Amide Proton Transfer (APT) image is useful for diagnostic imaging of glioma |
title_full | NI-09 Amide Proton Transfer (APT) image is useful for diagnostic imaging of glioma |
title_fullStr | NI-09 Amide Proton Transfer (APT) image is useful for diagnostic imaging of glioma |
title_full_unstemmed | NI-09 Amide Proton Transfer (APT) image is useful for diagnostic imaging of glioma |
title_short | NI-09 Amide Proton Transfer (APT) image is useful for diagnostic imaging of glioma |
title_sort | ni-09 amide proton transfer (apt) image is useful for diagnostic imaging of glioma |
topic | Supplement Abstracts |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7699123/ http://dx.doi.org/10.1093/noajnl/vdaa143.057 |
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