- Letter: Efficacy and Safety of Voglibose Plus Metformin in Patients with Type 2 Diabetes Mellitus: A Randomized Controlled Trial (Diabetes Metab J 2019;43;276-86)
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Hannah Seok, Tae Seo Sohn
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Diabetes Metab J. 2019;43(4):545-546. Published online August 20, 2019
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DOI: https://doi.org/10.4093/dmj.2019.0130
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- Deciphering the binding behavior and interaction mechanism of apigenin and α-glucosidase based on multi-spectroscopic and molecular simulation studies
Fuqiang Liang, Keyu Meng, Xinran Pu, Yubo Cao, Yumeng Shi, Jiayi Shi International Journal of Biological Macromolecules.2024; 264: 130535. CrossRef
- 1,5-Anhydroglucitol as a Useful Marker for Assessing Short-Term Glycemic Excursions in Type 1 Diabetes
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Hannah Seok, Ji Hye Huh, Hyun Min Kim, Byung-Wan Lee, Eun Seok Kang, Hyun Chul Lee, Bong Soo Cha
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Diabetes Metab J. 2015;39(2):164-170. Published online March 9, 2015
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DOI: https://doi.org/10.4093/dmj.2015.39.2.164
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Abstract
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- Background
Type 1 diabetes is associated with more severe glycemic variability and more frequent hypoglycemia than type 2 diabetes. Glycemic variability is associated with poor glycemic control and diabetic complications. In this study, we demonstrate the clinical usefulness of serum 1,5-anhydroglucitol (1,5-AG) for assessing changes in glycemic excursion in type 1 diabetes. MethodsSeventeen patients with type 1 diabetes were enrolled in this study. A continuous glucose monitoring system (CGMS) was applied twice at a 2-week interval to evaluate changes in glycemic variability. The changes in serum glycemic assays, including 1,5-AG, glycated albumin and hemoglobin A1c (HbA1c), were also evaluated. ResultsMost subjects showed severe glycemic excursions, including hypoglycemia and hyperglycemia. The change in 1,5-AG level was significantly correlated with changes in the glycemic excursion indices of the standard deviation (SD), mean amplitude of glucose excursion (MAGE), lability index, mean postmeal maximum glucose, and area under the curve for glucose above 180 mg/dL (r=-0.576, -0.613, -0.600, -0.630, and -0.500, respectively; all P<0.05). Changes in glycated albumin were correlated with changes in SD and MAGE (r=0.495 and 0.517, respectively; all P<0.05). However, changes in HbA1c were not correlated with any changes in the CGMS variables. Conclusion1,5-AG may be a useful marker for the assessment of short-term changes in glycemic variability. Furthermore, 1,5-AG may have clinical implications for the evaluation and treatment of glycemic excursions in type 1 diabetes.
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V. V. Klimontov, D. M. Bulumbaeva, J. F. Semenova Biochemistry (Moscow), Supplement Series B: Biomedical Chemistry.2024; 18(1): 59. CrossRef - The clinical potential of 1,5-anhydroglucitol as biomarker in diabetes mellitus
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- Refocusing Peroxisome Proliferator Activated Receptor-α: A New Insight for Therapeutic Roles in Diabetes
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Hannah Seok, Bong Soo Cha
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Diabetes Metab J. 2013;37(5):326-332. Published online October 17, 2013
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DOI: https://doi.org/10.4093/dmj.2013.37.5.326
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3,436
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Abstract
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Although glucose-lowering treatment shows some risk lowering effects in cardiovascular diseases, risks of macrovascular and microvascular complications have still remained, and development of new therapeutic strategies is needed. Recent data have shown that peroxisome proliferator activated receptor-α (PPAR-α) plays a pivotal role in the regulation of lipid homeostasis, fatty acid oxidation, cellular differentiation, and immune response such as inflammation or vascularization related to diabetic complication. This review will re-examine the metabolic role of PPAR-α, summarize data from clinical studies on the effect of PPAR-α agonist in diabetes, and will discuss the possible therapeutic role of PPAR-α activation.
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- Response: Balsamic Vinegar Improves High Fat-Induced Beta Cell Dysfunction via Beta Cell ABCA1 (Diabetes Metab J 2012;36:275-9)
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Hannah Seok, Bong Soo Cha
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Diabetes Metab J. 2012;36(5):390-390. Published online October 18, 2012
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DOI: https://doi.org/10.4093/dmj.2012.36.5.390
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- Effect and mechanisms of action of vinegar on glucose metabolism, lipid profile, and body weight
Eleni I Petsiou, Panayota I Mitrou, Sotirios A Raptis, George D Dimitriadis Nutrition Reviews.2014; 72(10): 651. CrossRef
- Balsamic Vinegar Improves High Fat-Induced Beta Cell Dysfunction via Beta Cell ABCA1
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Hannah Seok, Ji Young Lee, Eun Mi Park, Se Eun Park, Jae Hyuk Lee, Seungtaek Lim, Byung-Wan Lee, Eun Seok Kang, Hyun Chul Lee, Bong Soo Cha
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Diabetes Metab J. 2012;36(4):275-279. Published online August 20, 2012
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DOI: https://doi.org/10.4093/dmj.2012.36.4.275
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Abstract
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- Background
The aim of this study was to investigate the effects of balsamic vinegar on β-cell dysfunction. MethodsIn this study, 28-week-old Otsuka Long-Evans Tokushima Fatty (OLETF) rats were fed a normal chow diet or a high-fat diet (HFD) and were provided with tap water or dilute balsamic vinegar for 4 weeks. Oral glucose tolerance tests and histopathological analyses were performed thereafter. ResultsIn rats fed both the both chow diet and the HFD, the rats given balsamic vinegar showed increased insulin staining in islets compared with tap water administered rats. Balsamic vinegar administration also increased β-cell ATP-binding cassette transporter subfamily A member 1 (ABCA1) expression in islets and decreased cholesterol levels. ConclusionThese findings provide the first evidence for an anti-diabetic effect of balsamic vinegar through improvement of β-cell function via increasing β-cell ABCA1 expression.
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Dong-Su Kim, Byung Serk Hurh, Kwang-Soon Shin Journal of the Korean Society of Food Science and Nutrition.2015; 44(2): 191. CrossRef - Effect and mechanisms of action of vinegar on glucose metabolism, lipid profile, and body weight
Eleni I Petsiou, Panayota I Mitrou, Sotirios A Raptis, George D Dimitriadis Nutrition Reviews.2014; 72(10): 651. CrossRef - Chemical Property and Macrophage Stimulating Activity of Polysaccharides isolated from Brown Rice and Persimmon Vinegars
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- Latent Autoimmune Diabetes in Adults: Autoimmune Diabetes in Adults with Slowly Progressive β-cell Failure
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Hannah Seok, Byung Wan Lee
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Diabetes Metab J. 2012;36(2):116-119. Published online April 17, 2012
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DOI: https://doi.org/10.4093/dmj.2012.36.2.116
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