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Comparative Agreement Analysis of Differences in 1,5-Anhydroglucitol, Glycated Albumin, and Glycated Hemoglobin A1c Levels between Fasting and Postprandial States in Steamed Bread Meal Test

BACKGROUND: Our previous study indicated that serum 1,5-anhydroglucitol (1,5-AG) levels slightly increased after a glucose load; therefore, this study was conducted to explore short-term changes in 1,5-AG levels after a steamed bread meal test (SBMT) and compare the agreement of 1,5-AG, glycated alb...

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Autores principales: Su, Hang, Wang, Yufei, Ma, Xiaojing, He, Xingxing, Ying, Lingwen, Tang, Junling, Dong, Lu, Bao, Yuqian, Zhou, Jian, Jia, Weiping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5632448/
https://www.ncbi.nlm.nih.gov/pubmed/29104592
http://dx.doi.org/10.1155/2017/5917293
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author Su, Hang
Wang, Yufei
Ma, Xiaojing
He, Xingxing
Ying, Lingwen
Tang, Junling
Dong, Lu
Bao, Yuqian
Zhou, Jian
Jia, Weiping
author_facet Su, Hang
Wang, Yufei
Ma, Xiaojing
He, Xingxing
Ying, Lingwen
Tang, Junling
Dong, Lu
Bao, Yuqian
Zhou, Jian
Jia, Weiping
author_sort Su, Hang
collection PubMed
description BACKGROUND: Our previous study indicated that serum 1,5-anhydroglucitol (1,5-AG) levels slightly increased after a glucose load; therefore, this study was conducted to explore short-term changes in 1,5-AG levels after a steamed bread meal test (SBMT) and compare the agreement of 1,5-AG, glycated albumin (GA), and glycated hemoglobin A1c (HbA1c) levels between fasting and postprandial states after an SBMT. METHODS: 104 participants were recruited and underwent a 100 g SBMT. Fasting, 30 min, and 120 min of 1,5-AG, GA, and HbA1c were measured. RESULTS: Levels of 1,5-AG slightly increased from 30 to 120 min after an SBMT (P < 0.01), and HbA1c and GA levels showed stability at 30 and 120 min. The Passing-Bablok regression linear equation showed that postprandial 1,5-AG, GA, and HbA1c levels were well fitted (all P > 0.05), and Bland-Altman difference plot showed that 100% of data points for HbA1c(30) and HbA1c(120) fell within the limits of agreement; 94.2%, 96.2%, 95.2%, and 95.2% of data points for 1,5-AG(30), 1,5-AG(120), GA(30), and GA(120) fell within the limits of agreement, respectively. CONCLUSION: Agreement analyses indicated good stability of 1,5-AG, GA, and HbA1c levels after the SBMT. HbA1c had an optimal stability, which was superior to that of GA or 1,5-AG.
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spelling pubmed-56324482017-11-05 Comparative Agreement Analysis of Differences in 1,5-Anhydroglucitol, Glycated Albumin, and Glycated Hemoglobin A1c Levels between Fasting and Postprandial States in Steamed Bread Meal Test Su, Hang Wang, Yufei Ma, Xiaojing He, Xingxing Ying, Lingwen Tang, Junling Dong, Lu Bao, Yuqian Zhou, Jian Jia, Weiping Int J Endocrinol Research Article BACKGROUND: Our previous study indicated that serum 1,5-anhydroglucitol (1,5-AG) levels slightly increased after a glucose load; therefore, this study was conducted to explore short-term changes in 1,5-AG levels after a steamed bread meal test (SBMT) and compare the agreement of 1,5-AG, glycated albumin (GA), and glycated hemoglobin A1c (HbA1c) levels between fasting and postprandial states after an SBMT. METHODS: 104 participants were recruited and underwent a 100 g SBMT. Fasting, 30 min, and 120 min of 1,5-AG, GA, and HbA1c were measured. RESULTS: Levels of 1,5-AG slightly increased from 30 to 120 min after an SBMT (P < 0.01), and HbA1c and GA levels showed stability at 30 and 120 min. The Passing-Bablok regression linear equation showed that postprandial 1,5-AG, GA, and HbA1c levels were well fitted (all P > 0.05), and Bland-Altman difference plot showed that 100% of data points for HbA1c(30) and HbA1c(120) fell within the limits of agreement; 94.2%, 96.2%, 95.2%, and 95.2% of data points for 1,5-AG(30), 1,5-AG(120), GA(30), and GA(120) fell within the limits of agreement, respectively. CONCLUSION: Agreement analyses indicated good stability of 1,5-AG, GA, and HbA1c levels after the SBMT. HbA1c had an optimal stability, which was superior to that of GA or 1,5-AG. Hindawi 2017 2017-09-20 /pmc/articles/PMC5632448/ /pubmed/29104592 http://dx.doi.org/10.1155/2017/5917293 Text en Copyright © 2017 Hang Su et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Su, Hang
Wang, Yufei
Ma, Xiaojing
He, Xingxing
Ying, Lingwen
Tang, Junling
Dong, Lu
Bao, Yuqian
Zhou, Jian
Jia, Weiping
Comparative Agreement Analysis of Differences in 1,5-Anhydroglucitol, Glycated Albumin, and Glycated Hemoglobin A1c Levels between Fasting and Postprandial States in Steamed Bread Meal Test
title Comparative Agreement Analysis of Differences in 1,5-Anhydroglucitol, Glycated Albumin, and Glycated Hemoglobin A1c Levels between Fasting and Postprandial States in Steamed Bread Meal Test
title_full Comparative Agreement Analysis of Differences in 1,5-Anhydroglucitol, Glycated Albumin, and Glycated Hemoglobin A1c Levels between Fasting and Postprandial States in Steamed Bread Meal Test
title_fullStr Comparative Agreement Analysis of Differences in 1,5-Anhydroglucitol, Glycated Albumin, and Glycated Hemoglobin A1c Levels between Fasting and Postprandial States in Steamed Bread Meal Test
title_full_unstemmed Comparative Agreement Analysis of Differences in 1,5-Anhydroglucitol, Glycated Albumin, and Glycated Hemoglobin A1c Levels between Fasting and Postprandial States in Steamed Bread Meal Test
title_short Comparative Agreement Analysis of Differences in 1,5-Anhydroglucitol, Glycated Albumin, and Glycated Hemoglobin A1c Levels between Fasting and Postprandial States in Steamed Bread Meal Test
title_sort comparative agreement analysis of differences in 1,5-anhydroglucitol, glycated albumin, and glycated hemoglobin a1c levels between fasting and postprandial states in steamed bread meal test
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5632448/
https://www.ncbi.nlm.nih.gov/pubmed/29104592
http://dx.doi.org/10.1155/2017/5917293
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