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Association Analysis of Maximum Standardized Uptake Values Based on (18)F-FDG PET/CT and EGFR Mutation Status in Lung Adenocarcinoma

(1) Background: To investigate the association between maximum standardized uptake value (SUV(max)) based on (18)F-FDG PET/CT and EGFR mutation status in lung adenocarcinoma. (2) Methods: A total of 366 patients were retrospectively collected and divided into the EGFR mutation group (n = 228) and EG...

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Autores principales: Gao, Jianxiong, Shi, Yunmei, Niu, Rong, Shao, Xiaoliang, Shao, Xiaonan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058931/
https://www.ncbi.nlm.nih.gov/pubmed/36983578
http://dx.doi.org/10.3390/jpm13030396
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author Gao, Jianxiong
Shi, Yunmei
Niu, Rong
Shao, Xiaoliang
Shao, Xiaonan
author_facet Gao, Jianxiong
Shi, Yunmei
Niu, Rong
Shao, Xiaoliang
Shao, Xiaonan
author_sort Gao, Jianxiong
collection PubMed
description (1) Background: To investigate the association between maximum standardized uptake value (SUV(max)) based on (18)F-FDG PET/CT and EGFR mutation status in lung adenocarcinoma. (2) Methods: A total of 366 patients were retrospectively collected and divided into the EGFR mutation group (n = 228) and EGFR wild-type group (n = 138) according to their EGFR mutation status. The two groups’ general information and PET/CT imaging parameters were compared. A hierarchical binary logistic regression model was used to assess the interaction effect on the relationship between SUV(max) and EGFR mutation in different subgroups. Univariate and multivariate logistic regression was used to analyze the association between SUV(max) and EGFR mutation. After adjusting for confounding factors, a generalized additive model and smooth curve fitting were applied to address possible non-linearities. (3) Results: Smoking status significantly affected the relationship between SUV(max) and EGFR mutation (p for interaction = 0.012), with an interaction effect. After adjusting for age, gender, nodule type, bronchial sign, and CEA grouping, in the smoking subgroup, curve fitting results showed that the relationship between SUV(max) and EGFR mutation was approximately linear (df = 1.000, c(2) = 3.897, p = 0.048); with the increase in SUV(max), the probability of EGFR mutation gradually decreased, and the OR value was 0.952 (95%CI: 0.908–0.999; p = 0.045). (4) Conclusions: Smoking status can affect the relationship between SUV(max) and EGFR mutation status in lung adenocarcinoma, especially in the positive smoking history subgroup. Fully understanding the effect of smoking status will help to improve the accuracy of SUV(max) in predicting EGFR mutations.
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spelling pubmed-100589312023-03-30 Association Analysis of Maximum Standardized Uptake Values Based on (18)F-FDG PET/CT and EGFR Mutation Status in Lung Adenocarcinoma Gao, Jianxiong Shi, Yunmei Niu, Rong Shao, Xiaoliang Shao, Xiaonan J Pers Med Article (1) Background: To investigate the association between maximum standardized uptake value (SUV(max)) based on (18)F-FDG PET/CT and EGFR mutation status in lung adenocarcinoma. (2) Methods: A total of 366 patients were retrospectively collected and divided into the EGFR mutation group (n = 228) and EGFR wild-type group (n = 138) according to their EGFR mutation status. The two groups’ general information and PET/CT imaging parameters were compared. A hierarchical binary logistic regression model was used to assess the interaction effect on the relationship between SUV(max) and EGFR mutation in different subgroups. Univariate and multivariate logistic regression was used to analyze the association between SUV(max) and EGFR mutation. After adjusting for confounding factors, a generalized additive model and smooth curve fitting were applied to address possible non-linearities. (3) Results: Smoking status significantly affected the relationship between SUV(max) and EGFR mutation (p for interaction = 0.012), with an interaction effect. After adjusting for age, gender, nodule type, bronchial sign, and CEA grouping, in the smoking subgroup, curve fitting results showed that the relationship between SUV(max) and EGFR mutation was approximately linear (df = 1.000, c(2) = 3.897, p = 0.048); with the increase in SUV(max), the probability of EGFR mutation gradually decreased, and the OR value was 0.952 (95%CI: 0.908–0.999; p = 0.045). (4) Conclusions: Smoking status can affect the relationship between SUV(max) and EGFR mutation status in lung adenocarcinoma, especially in the positive smoking history subgroup. Fully understanding the effect of smoking status will help to improve the accuracy of SUV(max) in predicting EGFR mutations. MDPI 2023-02-23 /pmc/articles/PMC10058931/ /pubmed/36983578 http://dx.doi.org/10.3390/jpm13030396 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gao, Jianxiong
Shi, Yunmei
Niu, Rong
Shao, Xiaoliang
Shao, Xiaonan
Association Analysis of Maximum Standardized Uptake Values Based on (18)F-FDG PET/CT and EGFR Mutation Status in Lung Adenocarcinoma
title Association Analysis of Maximum Standardized Uptake Values Based on (18)F-FDG PET/CT and EGFR Mutation Status in Lung Adenocarcinoma
title_full Association Analysis of Maximum Standardized Uptake Values Based on (18)F-FDG PET/CT and EGFR Mutation Status in Lung Adenocarcinoma
title_fullStr Association Analysis of Maximum Standardized Uptake Values Based on (18)F-FDG PET/CT and EGFR Mutation Status in Lung Adenocarcinoma
title_full_unstemmed Association Analysis of Maximum Standardized Uptake Values Based on (18)F-FDG PET/CT and EGFR Mutation Status in Lung Adenocarcinoma
title_short Association Analysis of Maximum Standardized Uptake Values Based on (18)F-FDG PET/CT and EGFR Mutation Status in Lung Adenocarcinoma
title_sort association analysis of maximum standardized uptake values based on (18)f-fdg pet/ct and egfr mutation status in lung adenocarcinoma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058931/
https://www.ncbi.nlm.nih.gov/pubmed/36983578
http://dx.doi.org/10.3390/jpm13030396
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