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1.
Braz. j. biol ; 84: e250739, 2024. tab
Article in English | LILACS, VETINDEX | ID: biblio-1355896

ABSTRACT

Abstract Several reasons may underlie the dramatic increase in type2 diabetes mellitus. One of these reasons is the genetic basis and variations. Vitamin D receptor polymorphisms are associated with different diseases such as rheumatoid arthritis and diabetes. The aim of this study is to investigate the possible association of two identified mutations ApaI (rs7975232) and TaqI (rs731236). Eighty-nine healthy individuals and Fifty-six Type 2 Diabetic (T2D) patients were investigated using RFLP technique for genotyping and haplotyping as well. The distribution of Apal genotypes was not statistically significant among the control (P=0.65) as well as for diabetic patients (P=0.58). For Taql allele frequencies of T allele was 0.61 where of G allele was 0.39. The frequency distribution of Taql genotypes was not statistically significant among the control (P=0.26) as well as diabetic patients (P=0.17). Relative risk of the allele T of Apa1 gene is 1.28 and the odds ratio of the same allele is 1.53, while both estimates were < 1.0 of the allele G. Similarly, with the Taq1 gene the relative risk and the odds ratio values for the allele T are 1.09 and 1.27 respectively and both estimates of the allele C were 0.86 for the relative risk and 0.79 for the odds ratio. The pairwise linkage disequilibrium between the two SNPs Taq1/apa1 was statistically significant in control group (D = 0.218, D' = 0.925 and P value < 0.001) and similar data in diabetic groups (D = 0.2, D' = 0.875 and P value < 0.001). These data suggest that the T allele of both genes Apa1 and Taq1 is associated with the increased risk of type 2 diabetes. We think that we need a larger number of volunteers to reach a more accurate conclusion.


Resumo Várias razões podem estar subjacentes ao aumento dramático da diabetes mellitus tipo 2. Um desses motivos é a base genética e variações. Os polimorfismos do receptor da vitamina D estão associados a diferentes doenças, como artrite reumatoide e diabetes. O objetivo deste estudo é investigar a possível associação de duas mutações identificadas ApaI (rs7975232) e TaqI (rs731236). Oitenta e nove indivíduos saudáveis ​​e 56 pacientes com diabetes tipo 2 (T2D) foram investigados usando a técnica RFLP para genotipagem e haplotipagem também. A distribuição dos genótipos Apal não foi estatisticamente significativa entre o controle (P = 0,65), bem como para os pacientes diabéticos (P = 0,58). Para as frequências do alelo Taql, o alelo T foi de 0,61, onde o alelo G foi de 0,39. A distribuição de frequência dos genótipos Taql não foi estatisticamente significativa entre o controle (P = 0,26), bem como os pacientes diabéticos (P = 0,17). O risco relativo do alelo T do gene Apa1 é 1,28 e a razão de chances do mesmo alelo é 1,53, enquanto ambas as estimativas foram < 1,0 do alelo G. Da mesma forma, com o gene Taq1, os valores de risco relativo e razão de chances para o alelo T são 1,09 e 1,27, respectivamente, e ambas as estimativas do alelo C foram de 0,86 para o risco relativo e 0,79 para o odds ratio. O desequilíbrio de ligação par a par entre os dois SNPs Taq1 / apa1 foi estatisticamente significativo no grupo de controle (D = 0,218, D' = 0,925 e valor P < 0,001) e dados semelhantes em grupos diabéticos (D = 0,2, D' = 0,875 e valor P < 0,001). Esses dados sugerem que o alelo T de ambos os genes Apa1 e Taq1 está associado ao aumento do risco de diabetes tipo 2. Achamos que precisamos de um número maior de voluntários para chegar a uma conclusão mais precisa.


Subject(s)
Humans , Receptors, Calcitriol/genetics , Diabetes Mellitus, Type 2/genetics , Diabetes Mellitus, Type 2/epidemiology , Saudi Arabia , Case-Control Studies , Polymorphism, Single Nucleotide , Gene Frequency , Genotype
2.
China Journal of Chinese Materia Medica ; (24): 1535-1545, 2023.
Article in Chinese | WPRIM | ID: wpr-970625

ABSTRACT

To compare the pancreatic proteomics and autophagy between Rehmanniae Radix-and Rehmanniae Radix Praeparata-treated mice with type 2 diabetes mellitus(T2DM). The T2DM mouse model was established by high-fat diet coupled with streptozotocin(STZ, intraperitoneal injection, 100 mg·kg~(-1), once a day for three consecutive days). The mice were then randomly assigned into a control group, low-(5 g·kg~(-1)) and high-dose(15 g·kg~(-1)) Rehmanniae Radix groups, low-(150 mg·kg~(-1)) and high-dose(300 mg·kg~(-1)) catalpol groups, low-(5 g·kg~(-1)) and high-dose(15 g·kg~(-1)) Rehmanniae Radix Praeparata groups, low-(150 mg·kg~(-1)) and high-dose(300 mg·kg~(-1)) 5-hydroxymethyl furfuraldehyde(5-HMF) groups, and a metformin(250 mg·kg~(-1)) group. In addition, a normal group was also set and each group included 8 mice. The pancreas was collected after four weeks of administration and proteomics tools were employed to study the effects of Rehmanniae Radix and Rehmanniae Radix Praeparata on protein expression in the pancreas of T2DM mice. The expression levels of proteins involved in autophagy, inflammation, and oxidative stress response in the pancreatic tissues of T2DM mice were determined by western blotting, immunohistochemical assay, and transmission electron microscopy. The results showed that the differential proteins between the model group and Rehmanniae Radix/Rehmanniae Radix Prae-parata group were enriched in 7 KEGG pathways, such as autophagy-animal, which indicated that the 7 pathways may be associated with T2DM. Compared with the control group, drug administration significantly up-regulated the expression levels of beclin1 and phosphorylated mammalian target of rapamycin(p-mTOR)/mTOR and down-regulated those of the inflammation indicators, Toll-like receptor-4(TLR4) and Nod-like receptor protein 3(NLRP3), in the pancreas of T2DM mice, and Rehmanniae Radix showed better performance. In addition, the expression levels of inducible nitric oxide synthase(iNOS), nuclear factor erythroid 2-related factor 2(Nrf2), and heine oxygenase-1(HO-1) in the pancreas of T2DM mice were down-regulated after drug administration, and Rehmanniae Radix Praeparata demonstrated better performance. The results indicate that both Rehmanniae Radix and Rehmanniae Radix Praeparata can alleviate the inflammatory symptoms, reduce oxidative stress response, and increase the autophagy level in the pancreas of T2DM mice, while they exert the effect on different autophagy pathways.


Subject(s)
Mice , Animals , Diabetes Mellitus, Type 2/genetics , Streptozocin/pharmacology , Diet, High-Fat/adverse effects , Proteomics , Inflammation , TOR Serine-Threonine Kinases , Autophagy , Mammals
3.
Arch. endocrinol. metab. (Online) ; 66(1): 12-18, Jan.-Feb. 2022. tab
Article in English | LILACS | ID: biblio-1364310

ABSTRACT

ABSTRACT Objective: The AKR1B1 gene encodes an enzyme that catalyzes the reduction of glucose into sorbitol. Chronic hyperglycemia in patients with diabetes mellitus (DM) leads to increased AKR1B1 affinity for glucose and, consequently, sorbitol accumulation. Elevated sorbitol increases oxidative stress, which is one of the main pathways related to chronic complications of diabetes, including diabetic kidney disease (DKD). Accordingly, some studies have suggested the rs759853 polymorphism in the AKR1B1 gene is associated with DKD; however, findings are still contradictory. The aim was to investigate the association of the rs759853 polymorphism in the AKR1B1 gene and DKD. Materials and methods: The sample comprised 695 patients with type 2 DM (T2DM) and DKD (cases) and 310 patients with T2DM of more than 10 years' duration, but no DKD (controls). The polymorphism was genotyped by real-time PCR. Results: Allelic and genotype frequencies of this polymorphism did not differ significantly between groups. However, the A/A genotype was associated with risk for DKD after adjustment for gender, triglycerides, BMI, presence of hypertension and diabetic retinopathy, and duration of DM, under both recessive (P = 0.048) and additive (P = 0.037) inheritance models. Conclusion: Our data suggest an association between the AKR1B1 rs759853A/A genotype and risk for DKD in Brazilians T2DM patients.


Subject(s)
Humans , Aldehyde Reductase/genetics , Diabetes Mellitus, Type 2/complications , Diabetes Mellitus, Type 2/genetics , Diabetic Nephropathies/complications , Diabetic Nephropathies/genetics , Case-Control Studies , Genetic Predisposition to Disease , Polymorphism, Single Nucleotide , Alleles , Gene Frequency , Genotype
4.
Arch. endocrinol. metab. (Online) ; 66(1): 32-39, Jan.-Feb. 2022. tab
Article in English | LILACS | ID: biblio-1364313

ABSTRACT

ABSTRACT Objetivo: Maturity onset diabetes of the young (MODY) patients have clinical heterogeneity as shown by many studies. Thus, often it is misdiagnosed to type 1 or type 2 diabetes(T2DM). The aim of this study is to evaluate MODY mutations in adult T2DM patients suspicious in terms of MODY, and to show clinical and laboratory differences between these two situations. Subjects and methods: In this study, we analyzed 72 type 2 diabetic patients and their relatives (35F/37M) who had been suspected for MODY and referred to genetic department for mutation analysis. The gene mutations for MODY have been assessed in the laboratory of Marmara University genetics. Totally 67 (32F/35M; median age 36.1) diabetic patients were analyzed for 7 MODY mutations. Twelve patients who have uncertain mutation (VUS) were excluded from study for further evaluation. MODY(+) (n:30) patients and T2DM patients (n:25) were compared for clinical and laboratory parameters. Results: In MODY(+) subjects, mutations in GCK (MODY 2) (n:12; 40%) were the most common followed by HNF4A (MODY 1) (n:4; 13.3%). Diabetes diagnosis age was younger in MODY(+) group but not statistically significant. Sixty-six percent of MODY(+) subjects had diabetes history at 3-consecutive generations in their family compared with 28% of T2DM patients statistically significant (p:0.006). Gender, BMI, C-peptide, HbA1c, lipid parameters, creatinine, GFR, microalbuminuria, vitamin D and calcium were not statistically different between the groups. Conclusion: According to present study results, MODY mutation positivity is most probable in young autoantibody (-) diabetic patients diagnosed before 30 years of age, who have first degree family history of diabetes.


Subject(s)
Humans , Adult , Diabetes Mellitus, Type 2/diagnosis , Diabetes Mellitus, Type 2/genetics , C-Peptide , Hepatocyte Nuclear Factor 1-alpha/genetics , Mutation/genetics
5.
Chinese Journal of Epidemiology ; (12): 634-640, 2022.
Article in Chinese | WPRIM | ID: wpr-935436

ABSTRACT

Objective: To describe the distribution characteristics of type 2 diabetes in twins in Chinese National Twin Registry (CNTR), provide clues and evidence for revealing the influence of genetic and environmental factors for type 2 diabetes. Methods: Of all twins registered in the CNTR during 2010-2018, a total 18 855 twin pairs aged ≥30 years with complete registration information were included in the analysis. The random effect model was used to describe the population and area distribution characteristics and concordance of type 2 diabetes in twin pairs. Results: The mean age of the subjects was (42.8±10.2) years, the study subjects included 10 339 monozygotic (MZ) twin pairs and 8 516 dizygotic (DZ) twin pairs. The self-reported prevalence rate of type 2 diabetes was 2.2% in total population and there was no sighificant difference between MZ and DZ. Intra-twin pairs analysis showed that the concordance rate of type 2 diabetes was 38.2% in MZ twin pairs, and 16.0% in DZ twin pairs, the difference was statistically significant (P<0.001). The concordance rate of type 2 diabetes in MZ twin parts was higher than that in DZ twin pairs in both men and women, in different age groups and in different areas (P<0.05). Further stratified analysis showed that in northern China, only MZ twin pairs less than 60 years old were found to have a higher concordance rate of type 2 diabetes compared with DZ twin pairs (P<0.05). In southern China, the co-prevalence rate in male MZ twin pairs aged ≥60 years was still higher than that in DZ twin pairs (P<0.05). Conclusion: The twin pairs in this study had a lower self-reported prevalence of type 2 diabetes than the general population. The study results suggested that genetic factors play a role in type 2 diabetes prevalence in both men and women, in different age groups and in different areas, however, the effect might vary.


Subject(s)
Adult , Female , Humans , Male , Middle Aged , China/epidemiology , Diabetes Mellitus, Type 2/genetics , Diseases in Twins/genetics , Registries , Twins, Dizygotic , Twins, Monozygotic/genetics
6.
Chinese Journal of Medical Genetics ; (6): 234-239, 2022.
Article in Chinese | WPRIM | ID: wpr-928397

ABSTRACT

OBJECTIVE@#To assess the association of single nucleotide polymorphisms (SNP) of aquaporin 7 ( AQP7) and aquaporin 9 ( AQP9) genes and type 2 diabetes mellitus (T2DM) among ethnic Han Chinese population.@*METHODS@#A case-control study involving 1194 subjects with T2DM and 1274 non-diabetic mellitus (NDM) subjects were enrolled. Genotypes of three SNPs (rs3758269 of AQP7 gene, rs16939881 and rs57139208 of AQP9 gene) were determined by using a MassArray method. The association of the three SNPs with T2DM was assess, and the correlation of glucose and lipid metabolism parameters with various SNP genotypes in the NDM group was analyzed.@*RESULTS@#The allelic and genotypic frequencies of the three SNPs did not differ significantly between the two groups (P>0.05). Nor was there significant difference between the two groups with different genetic models (P>0.05). No significant association of genotypes of AQP7 gene rs3758269, AQP9 gene rs16939881 and rs57139208 with glucose and lipid metabolism parameters were observed in the NDM group (P>0.05).@*CONCLUSION@#The rs3758269 in AQP7 gene and rs16939881 and rs57139208 in AQP9 gene are not associated with the genetic susceptibility of T2DM among ethnic Han Chinese population.


Subject(s)
Humans , Aquaporins/genetics , Case-Control Studies , China , Diabetes Mellitus, Type 2/genetics , Genetic Predisposition to Disease , Polymorphism, Single Nucleotide
7.
China Journal of Chinese Materia Medica ; (24): 476-483, 2022.
Article in Chinese | WPRIM | ID: wpr-927992

ABSTRACT

Ginsenoside Rg_1, one of the main active components of precious traditional Chinese medicine Ginseng Radix et Rhizoma, has the anti-oxidative stress, anti-inflammation, anti-aging, neuroprotection, and other pharmacological effects. Diabetic retinopathy(DR), the most common complication of diabetes, is also the main cause of impaired vision and blindness in the middle-aged and the elderly. The latest research shows that ginsenoside Rg_1 can protect patients against DR, but the protection and the mechanism are rarely studied. This study mainly explored the protective effect of ginsenoside Rg_1 against DR in type 2 diabetic mice and the mechanism. High fat diet(HFD) and streptozotocin(STZ) were used to induce type 2 diabetes in mice, and hematoxylin-eosin(HE) staining was employed to observe pathological changes in the retina of mice. The immunohistochemistry was applied to study the localization and expression of nucleotide-binding oligomerization domain-like receptors 3(NLRP3) and vascular endothelial growth factor(VEGF) in retina, and Western blot was used to detect the expression of nuclear factor-kappa B(NF-κB), p-NF-κB, NLRP3, caspase-1, interleukin-1β(IL-1β), transient receptor potential channel protein 6(TRPC6), nuclear factor of activated T-cell 2(NFAT2), and VEGF in retina. The results showed that ginsenoside Rg_1 significantly alleviated the pathological injury of retina in type 2 diabetic mice. Immunohistochemistry results demonstrated that ginsenoside Rg_1 significantly decreased the expression of NLRP3 and VEGF in retinal ganglion cells, middle plexiform layer, and outer plexiform layer in type 2 diabetic mice. According to the Western blot results, ginsenoside Rg_1 significantly lowered the expression of p-NF-κB, NLRP3, caspase-1, IL-1β, TRPC6, NFAT2, and VEGF in retina of type 2 diabetic mice. These findings suggest that ginsenoside Rg_1 can significantly alleviate DR in type 2 diabetic mice, which may be related to inhibition of NLRP3 inflammasome and VEGF. This study provides experimental evidence for the clinical application of ginsenoside Rg_1 in the treatment of DR.


Subject(s)
Aged , Animals , Humans , Mice , Middle Aged , Diabetes Mellitus, Experimental/metabolism , Diabetes Mellitus, Type 2/genetics , Diabetic Retinopathy/genetics , Ginsenosides/pharmacology , Inflammasomes/metabolism , NF-kappa B/metabolism , NLR Family, Pyrin Domain-Containing 3 Protein/metabolism , Signal Transduction , Vascular Endothelial Growth Factor A/genetics
9.
Clinics ; 76: e2502, 2021. tab, graf
Article in English | LILACS | ID: biblio-1339695

ABSTRACT

OBJECTIVES: Diagnosis and management of essential hypertension (EH) or type 2 diabetes mellitus (T2DM) by combining comprehensive treatment and classificatory diagnosis have been continuously improved. However, understanding the pathogenesis of EH patients with concomitant T2DM and subsequent treatment remain the major challenges owing to the lack of non-invasive biomarkers and information regarding the underlying mechanisms. METHODS: Herein, we collected 200 serum samples from EH and/or T2DM patients and healthy donors (N). Gene-expression profiling was conducted to identify candidate microRNAs with clinical significance. Then, a larger cohort of the aforementioned patients and 50 N were used to identify the correlation between the tumor suppressor miR-195-5p and EH and/or T2DM. The dual-luciferase reporter assay was used to explore the target genes of miR-195-5p. The suppressive effects of miR-195-5p on the 3′-UTR of the dopamine receptor D1 (DRD1) transcript in EH patients with concomitant T2DM were verified as well. RESULTS: Compared with that in other groups, serum miR-195-5p was highly downregulated in EH patients with concomitant T2DM. miR-195-5p overexpression efficiently suppressed DRD1 expression by binding to the two 3′-UTRs. Additionally, two single nucleotide polymorphisms, including 231T-A and 233C-G, in the miR-195-5p binding sites of the DRD1 3′-UTR were further identified. Collectively, we identified the potential clinical significance of DRD1 regulation by miR-195-5p in EH patients with concomitant T2DM. CONCLUSIONS: Our data suggested that miR-195-5p circulating in the peripheral blood served as a novel biomarker and therapeutic target for EH and T2DM, which could eventually help address major challenges during the diagnosis and treatment of EH and T2DM.


Subject(s)
Humans , Receptors, Dopamine D1/genetics , MicroRNAs/genetics , Diabetes Mellitus, Type 2/genetics , Essential Hypertension/genetics , Biomarkers , Polymorphism, Single Nucleotide
10.
Rev. chil. endocrinol. diabetes ; 14(3): 121-126, 2021. tab, ilus
Article in Spanish | LILACS | ID: biblio-1293387

ABSTRACT

La diabetes MODY 2 es un tipo de diabetes monogénica producida por una mutación en la enzima glucoquinasa, generando un fenotipo hiperglicémico. Para posibles fines terapéuticos o de diagnóstico, se debe conocer esta proteína, una enzima monomérica de la familia de las hexoquinasas, encargadas de convertir glucosa en glucosa-6-fosfato, el primer paso de la glicolisis. La glucoquinasa se caracteriza por sus propiedades cinéticas únicas: tiene una afinidad mucho menor por el sustrato que las demás hexoquinasas y no es inhibida por su producto. Se encuentra principalmente en páncreas e hígado (ßGK y LGK, respectivamente), donde como sensor regula los distintos estados metabólicos de estos tejidos, y controla la glicemia a nivel sistémico. Las formas ßGK y LGK se diferencian a nivel transcripcional, pues el gen posee dos promotores distintos, específicos para cada tejido. A nivel hormonal, la actividad de esta enzima es regulada selectivamente de manera tejido-específica por glucosa, insulina y otras proteínas reguladoras. La isoforma hepática puede ser secuestrada hacia el núcleo por la proteína reguladora de glucoquinasa (GKRP, por su sigla en inglés). La principal característica de la enzima glucoquinasa es su inusual regulación alostérica, propiedad que le permite adoptar dos conformaciones principales, una cerrada (activa) y otra súper-abierta (inactiva). Se han desarrollado distintas drogas activadoras de glucoquinasa, las cuales se unen al sitio alostérico de la enzima y estabilizan a la proteína en su estado cerrado. En esta revisión se describen las características estructurales y propiedades regulatorias que posee la enzima glucoquinasa, relacionándolas con su rol en el desarrollo de la diabetes MODY 2. También se profundiza en las implicancias moleculares de algunas mutaciones descritas que originan MODY 2, y se abordan los efectos de moléculas activadoras de glucoquinasa.


Diabetes MODY 2 or GCK-MODY is a type of monogenic diabetes produced by a mutation in the glucokinase enzyme, generating a hyperglycemic phenotype. This protein, a monomeric enzyme of the hexokinase family, is responsible for converting glucose into glucose-6-phosphate, the first step of glycolysis. Glucokinase is characterized by its unique kinetic properties: it has a much lower affinity for its substrate than other hexokinases and is not inhibited by its product. It is found mainly in pancreas (ßGK) and liver (LGK), where it acts as a sensor regulating the different metabolic states of these tissues, and ultimately, controlling systemic glycemia. The two forms ßGK and LGK differ at a transcriptional level, because the gene presents two different tissue-specific promoters. The activity of glucokinase in liver and pancreas is regulated by glucose, insulin and other regulatory proteins. The liver isoform can be sequestered to the nucleus by the glucokinase regulatory protein (GKRP). The main characteristic of the enzyme is its unusual allosteric regulation, a property that allows the protein to adopt a closed (active) conformation, and a super-open (inactive) conformation. Different glucokinase activating drugs have been developed, which bind to the allosteric site of the enzyme and stabilize glucokinase in its closed state. This review describes the structural and regulatory properties of the glucokinase enzyme, and its role in the development of MODY 2 diabetes. The molecular implications of some mutations that originate MODY 2 are also described, and the effects of glucokinase activating molecules are addressed.


Subject(s)
Humans , Diabetes Mellitus, Type 2/genetics , Glucokinase/genetics , Hyperglycemia/genetics , Mutation
11.
China Journal of Chinese Materia Medica ; (24): 4808-4815, 2021.
Article in Chinese | WPRIM | ID: wpr-888188

ABSTRACT

This study aims to explore the main mechanism of Astragali Radix-Coptis Rhizoma pair(hereinafter referred to as the pair) in the treatment of type 2 diabetes mellitus(T2 DM) based on network pharmacology and animal experiment. The main Chinese medicine compound prescriptions for T2 DM were retrieved from CNKI database and the medicinals with high frequency among these prescriptions were screened. The active components in the above medicinals were searched from TCMSP, TCMID, and previous research, targets of the components from SwissTargetPrediction and SEA, and targets for the treatment of T2 DM from DISGENET, TTD, and DrugBank. Thereby, the medicinal-component-disease-target network was constructed with Cytoscape. The targets were input in String database to yield the related proteins and the protein-protein interaction(PPI) network was constructed by Cytoscape. The biological functions of proteins in the PPI network were analyzed by Cluego. Then, high-fat high-sugar diet and 30 mg·kg~(-1) streptozotocin(STZ, intraperitoneal injection, once) were employed to induce T2 DM in rats and the T2 DM rats were classified into the control group, model group, positive drug(metformin) group, and pair group. After one month of administration, the changes of blood glucose and blood lipids [triglyceride(TG), cholesterol(CHO), low density lipoprotein(LDL), high density lipoprotein(HDL)] were detected with biochemical methods and pathological changes of islet and collagen deposition in pancreatic tissue by HE staining and Masson staining, respectively. The result showed that pair can be used for T2 DM treatment. ras-related C3 botulinum toxin substrate 1(RAC1), paraoxonase 1(PON1), beta-galactoside alpha 2,6-sialyltransferase 1(ST6 GAL1), insulin receptor(INSR), sex hormone-binding globulin(SHBG), ileal sodium/bile acid cotransporter(SLC10 A2), endothelin-1 receptor A(EDNRA), peroxisome proliferator-activated receptor A(PPARA), endothelin receptor B(EDNRB), and 5-hydroxytryptamine receptor 2 A(HTR2 A) were the targets of the pair for the treatment of T2 DM. The main biological functions of the pair were regulating the metabolism of blood glucose and li-pids and protecting the cardiovascular system. The fasting blood glucose, and serum TG, CHO, and LDL were higher(P<0.01) and the HDL was lower(P<0.05) in the model group than in the control group on the 7 th, 14 th, and 28 th days. The fas-ting blood glucose and the serum TG, CHO, and LDL decreased(P<0.05) and the serum HDL increased(P<0.05) in the metformin group and the pair group as compared with those in the model group on the 14 th and 28 th days. There were no significant differences in blood glucose, TG, CHO, LDL, and HDL between the metformin group and the pair group. Rats in the model group demonstrated damaged structures of islets and pancreas, obviously increased deposition of collagen in islets and pancreas, and blurred cell boundaries. Metformin and the pair significantly alleviated the damaged structures and collagen deposition. The pair can effectively regulate the disorders of blood glucose and lipid metabolism in T2 DM and protect the structure and functions of pancreas and islets by controlling cardiovascular system, which is worthy of clinical application and can be used for drug development.


Subject(s)
Animals , Rats , Blood Glucose , Coptis , Diabetes Mellitus, Type 2/genetics , Drugs, Chinese Herbal , Metformin , Rhizome
12.
China Journal of Chinese Materia Medica ; (24): 4488-4496, 2021.
Article in Chinese | WPRIM | ID: wpr-888150

ABSTRACT

This study focused on the ameliorative effects of gypenosides(GPS) on insulin sensitivity and inflammatory factors in rats with type 2 diabetes mellitus(T2 DM) and explored their possible molecular mechanisms. After the successful establishment of T2 DM model, diabetic rats were randomly divided into four groups, including model group, GPS groups(200, 100 mg·kg~(-1)) and metformin group(100 mg·kg~(-1)), with healthy rats serving as the control. After 6-week intragastric administration, fasting blood glucose(FBG) and oral glucose tolerance were examined. The levels of insulin, C-peptide, tumor necrosis factor-α(TNF-α), interleukin-1β(IL-1β), interleukin-6(IL-6) and C-reactive protein(CRP) in serum were examined. Then the homeostasis model assessment of insulin resistance(HOMA-IR) and insulin sensitivity index(ISI) were calculated. The protein expression levels of phosphorylated insulin receptor substrate-1(p-IRS-1) and phosphorylated protein kinase B(p-Akt) in skeletal muscle were measured by Western blot, as well as those of phosphorylated inhibitor of nuclear factor-κB(NF-κB) kinase β(p-IKKβ), phosphorylated alpha inhibitor of NF-κB(p-IκBα) and phosphorylated p65 subunit of NF-κB(p-p65) in adipose tissue. The relative expression levels of glucose transporter 4(GLUT4) mRNA in skeletal muscle and NF-κB mRNA in adipose tissue were measured by qRT-PCR, and the morphological changes of pancreatic tissue were observed. Compared with the model group, the GPS groups witnessed significant decrease in FBG, marked amelioration of impaired oral glucose tolerance and significant increase in ISI. Further, the high-dose GPS group saw significantly reduced HOMA-IR, TNF-α, IL-1β and CRP, significantly increased expression levels of p-IRS-1(Tyr), p-Akt and GLUT4, and markedly inhibited p-IRS-1(Ser), p-IKKβ, p-IκBα, p-p65 and NF-κB. The concentration of CRP and the expression levels of p-IRS-1(Ser), p-IKKβ, p-IκBα and NF-κB were remarkably reduced in the low-dose GPS group. However, GPS was found less effective in the regulation of serum insulin, C-peptide and IL-6 levels and the alleviation of pancreatic islet injury. The results indicated that GPS can reduce FBG and improve insulin sensitivity in diabetic rats possibly by regulating the NF-κB signaling pathway, inhibiting inflammation, and thereby regulating the expression of key proteins in the insulin signaling pathway.


Subject(s)
Animals , Rats , Diabetes Mellitus, Experimental/drug therapy , Diabetes Mellitus, Type 2/genetics , Gynostemma , Insulin , Insulin Resistance , NF-kappa B/metabolism , Plant Extracts , Signal Transduction
13.
Chinese Journal of Medical Genetics ; (6): 891-894, 2021.
Article in Chinese | WPRIM | ID: wpr-921964

ABSTRACT

OBJECTIVE@#To explore the genetic basis for a juvenile with maturity-onset diabetes of the young type 12(MODY12).@*METHODS@#High-throughput sequencing was carried out to screen for the variants. Candidate variant was verified by Sanger sequencing. Pathogenity of the variant was predicted by searching the genetic databases and analysis by using bioinformatic software.@*RESULTS@#Genetic testing indicated that the patient and his mother have both carried a heterozygous c.3976G>A variant (p.Glu1326Lys) in exon 32 of the ABCC8 gene. Prediction of the protein structure suggested the variant to be deleterious. Based on the guidelines of the American College of Medical Genetics and Genomics, the variant was predicted to be uncertain significance.@*CONCLUSION@#Whether the c.3976G>A variant of the ABCC8 gene is the cause of the disease in this patient or not depends on the functional studies and more case data. Above finding has enriched the spectrum of ABCC8 gene variants.


Subject(s)
Humans , Diabetes Mellitus, Type 2/genetics , Genetic Testing , Genomics , High-Throughput Nucleotide Sequencing , Mutation
14.
Journal of Central South University(Medical Sciences) ; (12): 1-10, 2021.
Article in English | WPRIM | ID: wpr-880615

ABSTRACT

OBJECTIVES@#To study the gene expression of adipose tissue CD14@*METHODS@#The data of GSE54350 were obtained from the public database of gene expression profiling. The data were pre-processed by Network Analyst, String 11.0, Cytoscape 3.7.1, and other analytical software. The differentially expressed genes were analyzed by gene ontology biological function and kyoto encycopedia of genes and genomes (KEGG) signaling pathway to establish differential gene protein interaction network, transcription factor-gene regulatory network, microRNA-gene regulatory network, environmental factors-gene regulatory network, and other interaction systems.@*RESULTS@#The gene expression pattern of CD14@*CONCLUSIONS@#The gene expression of adipose tissue CD14


Subject(s)
Humans , Adipose Tissue , Computational Biology , DNA-Binding Proteins , Diabetes Mellitus, Type 2/genetics , Gene Expression , Gene Expression Profiling , Gene Regulatory Networks , MicroRNAs/genetics , Muscle Proteins
15.
Chinese Journal of Medical Genetics ; (6): 536-540, 2021.
Article in Chinese | WPRIM | ID: wpr-879620

ABSTRACT

OBJECTIVE@#To construct the differential expression profile of microRNA (miRNA) in plasma of patients with type 2 diabetes mellitus (T2DM) and explore the possibility of using miRNA as the target for diagnosis and treatment of T2DM.@*METHODS@#Agilent miRNA microarray was used to determine the expression profiles of miRNA in the plasma of patients with T2DM (FC> 2, P< 0.05). The result was verified by real-time quantitative PCR (RT-qPCR). Candidate miRNA was analyzed by bioinformatic tools.@*RESULTS@#In total 122 differentially expressed miRNAs were identified. Among these, 14 were selected by multi-source intersection screening, which included 5 up-regulated genes and 9 down regulated genes. RT-qPCR showed that the expression of hsa-miR-185-5p and hsa-miR-328-5p have significantly increased in T2DM patients (P< 0.05). Bioinformatic analysis suggested that these miRNAs may be involved in the pathogenesis of T2DM through insulin secretion and PI3K-AKT signaling pathway.@*CONCLUSION@#Differential expression of hsa-miR-185-5p and hsa-miR-328-5p in the plasma may be closely associated with the pathogenesis of T2DM.


Subject(s)
Humans , Computational Biology , Diabetes Mellitus, Type 2/genetics , MicroRNAs/genetics , Phosphatidylinositol 3-Kinases , Signal Transduction
16.
Rev. cuba. med ; 59(2): e8859, abr.-jun. 2020. tab, graf
Article in Spanish | LILACS, CUMED | ID: biblio-1139046

ABSTRACT

Introducción: La diabetes mellitus se considera un síndrome heterogéneo con etiología compleja en el que influyen factores genéticos y ambientales. Objetivo: Identificar la presencia de alteraciones del metabolismo glucídico y factores de riesgo aterogénicos en familiares de primera línea de pacientes diabéticos tipo 2. Métodos: Se realizó un estudio descriptivo de corte transversal que incluyó a 120 pacientes adultos, hijos de pacientes diabéticos, en los que no se encontraban antecedentes de alteraciones del metabolismo glucídico, pertenecientes al Policlínico Universitario Héroes del Moncada, del municipio Plaza de la Revolución. Se estudiaron variables sociodemográficas, variables clínicas y relacionadas con los estilos de vida como la tensión arterial, el índice de masa corporal, colesterol, triglicéridos, glucemias (ayunas y posprandial), hábito de fumar, actividad física y hábitos dietéticos. Resultados: Los pacientes tenían una edad promedio de 54,42 años y predominó el sexo femenino. Se detectaron alteraciones del metabolismo glucídico en 28,3 por ciento de los cuales 23,3 por ciento se consideraron prediabéticos y 5 por ciento diabéticos. Los factores de riesgo que predominaron fueron la dieta inadecuada, obesidad abdominal, hipercolesterolemia e hipertrigliceridemia que fueron más evidentes en los pacientes diagnosticados como diabéticos. Conclusiones: Los familiares de primer grado de pacientes diabéticos pueden presentar una alta prevalencia de alteraciones del metabolismo glucídico y factores de riesgo aterogénicos, aún sin sintomatología evidente, lo que refuerza la necesidad de realizar un diagnóstico temprano para evitar la progresión de la enfermedad(AU)


Introduction: Diabetes mellitus is considered a heterogeneous syndrome with a complex etiology, influenced by genetic and environmental factors. Objective: To identify the presence of alterations of the glucidic metabolism and atherogenic risk factors in first- degree relatives of type 2 diabetic patients. Methods: A descriptive cross-sectional study was carried out at Heroes del Moncada University Polyclinic, in Plaza de la Revolution municipality. The study included 120 adult patients, descendants of diabetic patients. They had no history of alterations of the glucidic metabolism. Sociodemographic, clinical variables were studied, and those related to lifestyles such as blood pressure, body mass index, cholesterol, triglycerides, (fasting and postprandial) glycaemia, smoking, physical activity and dietary habits. Results: These patients had average age of 54.42 years and the female sex predominated. Alterations of the glucidic metabolism were detected in 28.3 percent, 23.3 percent of them were considered pre-diabetic and 5 percent diabetic. The predominant risk factors were inadequate diet, abdominal obesity, hypercholesterolemia, and hypertriglyceridemia, which was much evident in patients diagnosed as diabetic. Conclusions: The first-degree relatives of diabetic patients may present high prevalence of alterations of glucidic metabolism and atherogenic risk factors, even with no evident symptoms, which reinforces the need of early diagnosis to avoid the progression of the disease(AU)


Subject(s)
Humans , Male , Female , Blood Glucose/genetics , Blood Glucose/metabolism , Family , Epidemiology, Descriptive , Cross-Sectional Studies , Health Risk , Diabetes Mellitus/metabolism , Diabetes Mellitus, Type 2/genetics
17.
Rev. méd. Chile ; 147(8): 965-976, ago. 2019. tab, graf
Article in Spanish | LILACS | ID: biblio-1058631

ABSTRACT

Background: Type 2 diabetes etiology has a strong genetic component. More than 20 genetic variants have been associated with diabetes and other metabolic markers. However, the polymorphism rs7903146 of the TCF7L2 gene has shown the strongest association. Aim: To investigate the association of TCF7L2 (rs7903146) genotype with adiposity and metabolic markers in the Chilean adult population. Material and Methods: The association of TCF7L2 (rs7093146) with adiposity and metabolic markers was studied in 301 participants. The outcomes of the study were adiposity markers (body weight, body mass index (BMI), fat mass and waist circumference) and metabolic markers (blood glucose, insulin, HOMA-IR, lipid profile, high sensitivity C-reactive protein (CRP), alanine aminotransferase (ALT), gamma glutamyl transpeptidase (GGT) and leptin). Results: There was an association between the polymorphism TCF7L2 genotype and fasting blood glucose. The latter increased by 4.86 mg/dl per each copy of the risk allele [(95% confidence intervals (CI): 0.48; 9.24), p = 0.03] in the unadjusted adjusted model. However, this association was slightly attenuated in the fully adjusted model [4.38 mg/dl (95% IC: 0.16; 8.60), p = 0.04)]. There were no associations between the TCF7L2 genotype and any other metabolic or adiposity outcome. Conclusions: These findings confirm the association between the TCF7L2 (rs7903146) and fasting glucose in the Chilean population. However, further studies are needed to confirm the association between the TCF7L2 and diabetes risk in the Chilean population.


Subject(s)
Humans , Male , Female , Adult , Middle Aged , Young Adult , Polymorphism, Single Nucleotide , Diabetes Mellitus, Type 2/genetics , Adiposity/genetics , Transcription Factor 7-Like 2 Protein/genetics , Reference Values , Blood Glucose/genetics , Genetic Markers , Linear Models , Chile , Anthropometry , Nutritional Status , Cross-Sectional Studies , Risk Factors , Diabetes Mellitus, Type 2/metabolism , Alleles , Adiposity/ethnology , Genetic Association Studies , Gene Frequency , Genotype
18.
Gac. méd. Méx ; 155(1): 58-62, Jan.-Feb. 2019. graf
Article in Spanish | LILACS | ID: biblio-1286460

ABSTRACT

Resumen El gen de la ataxina-2 es un blanco en la patogénesis de enfermedades complejas, entre ellas los factores de riesgo cardiovascular y enfermedades neurodegenerativas. El gen ATXN2 tiene un VNTR en el exón 1, cuya expansión por encima de las 30 repeticiones provoca al desarrollo de ataxia espinocerebelosa tipo 2; las repeticiones en rango menor se asocian con diabetes tipo 2 o esclerosis lateral amiotrófica. También este locus está ligado con fenotipos metabólicos e inflamatorios. En conclusión, el gen puede ser utilizado como marcador clínico de fenotipos metabólicos y neurológicos, lo cual está relacionado con su efecto pleiotrópico.


Abstract The ataxin 2 gene is a target in the pathogenesis of complex diseases, including cardiovascular risk factors and neurodegenerative diseases. ATXN2 gen has VNTR in exon 1, whose expansion exceeding 30 repetitions leads to the development of spinocerebellar ataxia type 2; lower-range repetitions are associated with type 2 diabetes or amyotrophic lateral sclerosis. This locus is also linked with metabolic and inflammatory phenotypes. In conclusion, this gene can be used as a clinical marker of metabolic and neurological phenotypes, which is related to its pleiotropic effect.


Subject(s)
Humans , Cardiovascular Diseases/genetics , Neurodegenerative Diseases/genetics , Ataxin-2/genetics , Biomarkers/metabolism , Cardiovascular Diseases/physiopathology , Neurodegenerative Diseases/physiopathology , Diabetes Mellitus, Type 2/physiopathology , Diabetes Mellitus, Type 2/genetics
19.
Braz. oral res. (Online) ; 33: e034, 2019. tab, graf
Article in English | LILACS | ID: biblio-1001601

ABSTRACT

Abstract: Specific variants in genes that encode adipokines and their mRNA and protein expression were previously studied in type 2 diabetes mellitus (T2DM) and obesity, and similar studies have been performed for chronic periodontitis (CP). The aim of this case-control study was to investigate the possible impacts of adiponectin (ADIPOQ), leptin (LEP) and its receptor (LEPR), and resistin (RETN) on the etiopathogenesis of CP. Examinations were performed on 118 non-periodontitis healthy subjects (healthy controls, HC), 205 healthy individuals with CP (H + CP) and 86 type 2 diabetes patients with CP (T2DM + CP). Variants within the ADIPOQ (rs2241766, rs1501299), LEP (rs13228377, rs2167270), LEP receptor (rs1805096), and RETN (rs1862513) genes were determined by qPCR. In addition, the plasma levels of ADIPOQ, LEP, and RETN were analysed by ELISA for 80 individuals. The genotype frequencies of the SNP ADIPOQ +45G/T (rs2241766) differed between the HC and H + CP groups (p=0.03, pcorr>0.05), and carriers of the TT genotype had a lower risk of developing CP compared to carriers of the GG or TG genotypes (p<0.01, pcorr>0.05). However, there were no significant differences in the plasma levels of ADIPOQ, LEP or RETN between the study groups (p > 0.05). Plasma levels of the adipokines were also independent of the gene profiles (p > 0.05). Adipokine plasma levels did not change in patients with H + CP/T2DM + CP compared to HC, but we did identify a specific polymorphism in the ADIPOQ gene that was associated with CP. Although the ADIPOQ +45G/T (rs2241766) gene variant may be a candidate biomarker for CP, further research is required in larger populations with different ethnic backgrounds before any final conclusions can be drawn about the role of this gene in CP.


Subject(s)
Humans , Male , Female , Adult , Aged , Polymorphism, Single Nucleotide , Diabetes Mellitus, Type 2/blood , Adipokines/genetics , Adipokines/blood , Chronic Periodontitis/blood , Reference Values , Genetic Variation , Biomarkers/blood , Case-Control Studies , Analysis of Variance , Statistics, Nonparametric , Diabetes Mellitus, Type 2/genetics , Chronic Periodontitis/genetics , Genotype , Middle Aged
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