4.6 Article

Q192R Polymorphism of Paraoxonase 1 Gene Associated with Insulin Resistance in Mexican Children

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ARCHIVES OF MEDICAL RESEARCH
卷 46, 期 1, 页码 78-83

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ELSEVIER SCIENCE INC
DOI: 10.1016/j.arcmed.2014.12.001

关键词

PON 1 gene; Obesity; Insulin resistance; Metabolic syndrome

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  1. FAI-UCEM program

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BACKGROUND AND AIMS: The SNP rs662 in the paraoxonase 1 gene (PON1 Q192R) has been associated with obesity, dyslipidemia and cardiovascular risk. In this study, DNA samples of 117 children aged 6 to 12 years from San Luis Potosi, Mexico were genotyped for Q192R polymorphism of the PON1 gene. METHODS: Genotypic frequencies were determined by allelic discrimination assay by real-time PCR using TaqMan fluorogenic probes. Anthropometry, lipid profile, glucose and insulin were analyzed by genotype. RESULTS: The distribution of allele frequency in the population was Q = 65 and R = 35 following the Hardy Weinberg equilibrium (chi(2) = 3.15, p = 0.076). The Homeostasis Model Assessment for Insulin Resistance (HOMA-IR) index showed statistically significant differences among QQ/QR/RR genotypes (p = 0.032). The odds ratio for the carriers of the RR genotype was associated with HOMA-IR corresponding to the 95(th) percentile or higher for Mexican children based on sex and age (OR = 4.68; 95% confidence intervals, 1.23-17.8; p = 0.016). When the absolute mean of HOMAR-IR was set as the cutoff, an increased odds was observed (OR = 6.52; 95% confidence intervals, 1.68-25.3; p = 0.008). CONCLUSIONS: According to our results, PON1 Q192R polymorphism is a risk marker for insulin resistance, a pathological factor involved in the development of metabolic syndrome. (C) 2015 IMSS. Published by Elsevier Inc.

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Article Pediatrics

Association of total and pancreatic serum amylase enzymatic activity with insulin resistance and the glucose and insulin responses to oral starch test in Mexican children

Daniel Locia-Morales, Miguel Vazquez-Moreno, Roxana Gonzalez-Dzib, Carmen Dominguez-Hernandez, Aleyda Perez-Herrera, Roberto J. Robles-Ramirez, Alberto Rocha-Cruz, David Meyre, Eugenia Flores-Alfaro, Miguel Cruz

Summary: There is a positive association between serum amylase enzymatic activity and insulin resistance in Mexican children. High amylase activity is associated with lower glucose and insulin responses to an oral starch test in Mexican children, regardless of their weight status.

PEDIATRIC OBESITY (2022)

Article Microbiology

Virulence Factors of the Gut Microbiome Are Associated with BMI and Metabolic Blood Parameters in Children with Obesity

S. M. Murga-Garrido, E. J. Ulloa-Perez, C. E. Diaz-Benitez, Y. C. Orbe-Orihuela, F. Cornejo-Granados, A. Ochoa-Leyva, A. Sanchez-Flores, M. Cruz, A. C. Castaneda-Marquez, T. Plett-Torres, A. I. Burguete Garcia, A. Lagunas-Martinez

Summary: The alteration of gut microbiome composition has been commonly observed in inflammation-related diseases such as obesity and metabolic impairment. Inflammatory response in the gut can be caused by dietary-driven dysbiosis. The development of metabolic diseases is linked to the gut microbiota.

MICROBIOLOGY SPECTRUM (2023)

Article Biochemistry & Molecular Biology

Pancreatic β-Cell Apoptosis in Normoglycemic Rats is Due to Mitochondrial Translocation of p53-Induced by the Consumption of Sugar-Sweetened Beverages

Raul Barzalobre-Geronimo, Alejandra Contreras-Ramos, Aaron I. Cervantes-Cruz, Miguel Cruz, Fernando Suarez-Sanchez, Jaime Gomez-Zamudio, Guadalupe Diaz-Rosas, Alejandro Avalos-Rodriguez, Margarita Diaz-Flores, Clara Ortega-Camarillo

Summary: Overstimulation of pancreatic beta-cells by excessive carbohydrate consumption leads to dysfunction and death, contributing to the development of Type 2 diabetes. In this study, rats supplemented with high-sucrose or high-fructose water showed increased apoptosis and mobilization of p53 in beta-cell mitochondria. These changes occurred before blood glucose levels rose. The sucrose group also exhibited metabolic abnormalities and increased pancreatic fatty acids. Carbohydrate consumption promotes beta-cell death through p53 activation, highlighting its role in early diabetes progression.

CELL BIOCHEMISTRY AND BIOPHYSICS (2023)

Article Endocrinology & Metabolism

Diabetes Detection Models in Mexican Patients by Combining Machine Learning Algorithms and Feature Selection Techniques for Clinical and Paraclinical Attributes: A Comparative Evaluation

Antonio Garcia-Dominguez, Carlos E. Galvan-Tejada, Rafael Magallanes-Quintanar, Hamurabi Gamboa-Rosales, Irma Gonzalez Curiel, Jesus Peralta-Romero, Miguel Cruz

Summary: The development of medical diagnostic models for diabetes detection, using machine learning algorithms and feature selection techniques, has shown remarkable progress. These models, incorporating diverse datasets and prominent classifier algorithms, demonstrate superior performance with accuracies exceeding 94%. The study emphasizes the pivotal role of feature selection in optimizing the input data and improving the performance of diabetes detection models, contributing to the advancement of medical diagnostic capabilities.

JOURNAL OF DIABETES RESEARCH (2023)

Article Endocrinology & Metabolism

Association of tyrosine hydroxylase 01 (TH01) microsatellite and insulin gene (INS) variable number of tandem repeat (VNTR) with type 2 diabetes and fasting insulin secretion in Mexican population

J. Berumen, L. Orozco, H. Gallardo-Rincon, E. Juarez-Torres, E. Barrera, M. Cruz-Lopez, R. E. Benuto, E. Ramos-Martinez, M. Marin-Madina, A. Alvarado-Silva, A. Valladares-Salgado, J. J. Peralta-Romero, H. Garcia-Ortiz, L. A. Martinez-Juarez, A. Montoya, D. A. Alvarez-Hernandez, J. Alegre-Diaz, P. Kuri-Morales, R. Tapia-Conyer

Summary: The study revealed associations between TH01 microsatellite and rs689 allele with type 2 diabetes development in a Mexican population. Specific TH01 alleles and rs689 allele A were independently associated with T2D, with differences in risk for males and females based on age at diagnosis. Larger TH01 alleles and rs689 A allele may impact insulin synthesis differently in males with and without T2D.

JOURNAL OF ENDOCRINOLOGICAL INVESTIGATION (2023)

Article Medicine, Research & Experimental

Integrative Placental Multi-Omics Analysis Reveals Perturbed Pathways and Potential Prognostic Biomarkers in Gestational Hypertension

Bincy Varghese, Sreeranjini Babu, Aishwarya Jala, Panchanan Das, Rajesh Raju, Roshan M. Borkar, Ramu Adela

Summary: Through integrating next-generation sequencing and metabolomics multi-omics analysis of placenta, this study identified differentially expressed miRNAs, their target genes, altered metabolites, and metabolic pathways in gestational hypertension (GH) patients. The findings obtained from this study may contribute to further understanding of the molecular pathways associated with GH and the evaluation of prognostic markers.

ARCHIVES OF MEDICAL RESEARCH (2024)