- Obesity and Metabolic Syndrome
- Beneficial Effects of Aerobic Exercise Training Combined with Rosiglitazone on Glucose Metabolism in Otsuka Long Evans Tokushima Fatty Rats
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Shan-Ji Piao, So Hun Kim, Young Ju Suh, Seong-Bin Hong, Seong Hee Ahn, Da Hae Seo, In-Sun Park, Moonsuk Nam
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Diabetes Metab J. 2017;41(6):474-485. Published online November 15, 2017
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DOI: https://doi.org/10.4093/dmj.2017.41.6.474
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Abstract
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- Background
Regular aerobic exercise is essential for the prevention and management of type 2 diabetes mellitus and may be particularly beneficial for those treated with thiazolidinediones, since it may prevent associated weight gain. This study aimed to evaluate the effect of combined exercise and rosiglitazone treatment on body composition and glucose metabolism in obese diabetes-prone animals. MethodsWe analyzed metabolic parameters, body composition, and islet profiles in Otsuka Long Evans Tokushima Fatty rats after 28 weeks of aerobic exercise, rosiglitazone treatment, and combined exercise and rosiglitazone treatment. ResultsCombined exercise with rosiglitazone showed significantly less increase in weight and epididymal fat compared to rosiglitazone treatment. Aerobic exercise alone and combined rosiglitazone and exercise treatment led to similar retention of lean body mass. All experimental groups showed a decrease in fasting glucose. However, the combined exercise and rosiglitazone therapy group showed prominent improvement in glucose tolerance compared to the other groups. Rescue of islet destruction was observed in all experimental groups, but was most prominent in the combined therapy group. ConclusionRegular aerobic exercise combined with rosiglitazone treatment can compensate for the adverse effect of rosiglitazone treatment and has benefit for islet preservation.
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- A Review of Animal Models for Studying Bone Health in Type-2 Diabetes Mellitus (T2DM) and Obesity
Saiful Iqbal Norazman, Anis Syauqina Mohd Zaffarin, Ahmad Nazrun Shuid, Haniza Hassan, Ima Nirwana Soleiman, Wong Sok Kuan, Ekram Alias International Journal of Molecular Sciences.2024; 25(17): 9399. CrossRef - Impacts of an Exercise Intervention on the Health of Pancreatic Beta-Cells: A Review
Shuang Zhang, Yaru Wei, Chunxiao Wang International Journal of Environmental Research and Public Health.2022; 19(12): 7229. CrossRef - Molecular mechanisms by which aerobic exercise induces insulin sensitivity
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- R1467H Variants of Rho Guanine Nucleotide Exchange Factor 11 (ARHGEF11) are Associated with Type 2 Diabetes Mellitus in Koreans
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Qing Song Jin, So Hun Kim, Shan-Ji Piao, Hyun Ae Lim, Seung Youn Lee, Seong Bin Hong, Yong Seong Kim, Hun-Jae Lee, Moonsuk Nam
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Korean Diabetes J. 2010;34(6):368-373. Published online December 31, 2010
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DOI: https://doi.org/10.4093/kdj.2010.34.6.368
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4,866
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Abstract
PDFPubReader
- Background
The human Rho guanine nucleotide exchange factor 11 (ARHGEF11) functions as an activator of Rho GTPases and is thought to influence insulin signaling. The R1467H variant of ARHGEF11 has been reported to be associated with susceptibility to type 2 diabetes mellitus (T2DM) in Western populations. MethodsWe investigated the effects of the R1467H variant on susceptibility to T2DM as well as related traits in a Korean population. We genotyped the R1467H (rs945508) of ARHGEF11 in 689 unrelated T2DM patients and 249 non-diabetic individuals and compared the clinical and biochemical characteristics according to different alleles. ResultsThe H allele was significantly more frequent in T2DM cases than in controls (P = 0.037, 17.1% and 13.1%; respectively). H homozygocity was associated with a higher risk of T2DM compared to those with R/R or R/H genotype (odds ratio, 5.24; 95% confidence interval, 1.06 to 25.83; P = 0.042). The fasting plasma glucose, HbA1c, fasting insulin, HOMA2-IR and HOMA2-%β levels did not differ significantly between different genotypes. ConclusionOur study replicated associations of the ARHGEF11 polymorphism with increased risk of T2DM in a Korean population and thus supports previous data implicating a potential role of ARHGEF11 in the etiology of T2DM. Further studies revealing the underlying mechanism for this association are needed.
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Citations
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Jie Yan, Rina Su, Wanyi Zhang, Yumei Wei, Chen Wang, Li Lin, Hui Feng, Huixia Yang The Journal of Maternal-Fetal & Neonatal Medicine.2021; 34(3): 422. CrossRef -
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Zhen Jia, Ashley C. Johnson, Xuexiang Wang, Zibiao Guo, Albert W. Dreisbach, Jack R. Lewin, Patrick B. Kyle, Michael R. Garrett, Maria Pia Rastaldi PLOS ONE.2015; 10(7): e0132553. CrossRef - The Rho-guanine nucleotide exchange factor PDZ-RhoGEF governs susceptibility to diet-induced obesity and type 2 diabetes
Ying-Ju Chang, Scott Pownall, Thomas E Jensen, Samar Mouaaz, Warren Foltz, Lily Zhou, Nicole Liadis, Minna Woo, Zhenyue Hao, Previn Dutt, Philip J Bilan, Amira Klip, Tak Mak, Vuk Stambolic eLife.2015;[Epub] CrossRef - Human Rho guanine nucleotide exchange factor 11 gene is associated with schizophrenia in a Japanese population
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