The Impact of Genetic Factors on the Development of Type 2 Diabetes and Possible Pathways for its Correction
Research papers
Zhibek Sembayeva
L. N. Gumilyov Eurasian National University image/svg+xml
Oralbek Ilderbayev
L. N. Gumilyov Eurasian National University image/svg+xml
https://orcid.org/0009-0007-8859-6150
Damira Tazhibayeva
Astana Medical University image/svg+xml
Ainur Zhanilova
L. N. Gumilyov Eurasian National University image/svg+xml
Aruzhan Ilderbayeva
University of Duisburg-Essen image/svg+xml
Published 2026-07-23
https://doi.org/10.15388/Amed.2026.33.2.8
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Keywords

polymorphisms
insulin resistance
biochemical parameters
glycated haemoglobin
changes in microbiota composition

How to Cite

1.
Sembayeva Z, Ilderbayev O, Tazhibayeva D, Zhanilova A, Ilderbayeva A. The Impact of Genetic Factors on the Development of Type 2 Diabetes and Possible Pathways for its Correction. AML. 2026;33(2):8. doi:10.15388/Amed.2026.33.2.8

Abstract

Aim: The aim of this study was to investigate the impact of genetic factors on the development of type 2 diabetes in the population of Kazakhstan.

Materials and methods: The methodology included the collection of demographic data, the analysis of biochemical parameters, and the application of polymerase chain reaction genotyping for single-nucleotide polymorphisms in genes associated with type 2 diabetes.

Result: The main results of the study demonstrated that patients with type 2 diabetes had a 20% higher body mass index (29.5±4.2 kg/m2 versus 24.3±3.1 kg/m2) and 29% lower physical activity (3.2±1.5 hours per week versus 4.5±2.0 hours per week) compared with the control group. Biochemical parameters showed a 50% higher glucose level (7.8±2.1 mmol/L versus 5.2 ± 0.8 mmol/L), insulin levels by 76% (15.3±5.2 microunits per millilitre versus 8.7±2.5 microunits per millilitre), and glycated haemoglobin by 42% (7.5±1.2% versus 5.3±0.5%) in patients with type 2 diabetes. The genetic analysis revealed substantial associations between type 2 diabetes and risk alleles in the TCF7L2 (rs7903146), KCNJ11 (rs5219), FTO (rs9939609), PPARG (rs1801282), and ADIPOQ (rs1501299) genes, which were linked to compromised insulin secretion and metabolic anomalies in the study population.

Conclusions: The practical significance of the study lies in the potential application of these findings to develop personalised approaches for the prevention and treatment of type 2 diabetes, including lifestyle modification, the use of modern pharmaceuticals, and anti-inflammatory drugs to improve glucose control in patients.

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Author contributions (CRediT)

  • Zhibek Sembayeva: Conceptualization, Methodology, Supervision, Project Administration, Writing – Review & Editing
  • Oralbek Ilderbayev: Investigation, Data Curation, Methodology, Writing – Original Draft Preparation
  • Damira Tazhibayeva: Validation, Formal Analysis, Visualization, Writing – Original Draft Preparation
  • Ainur Zhanilova: Investigation, Resources, Data Curation, Writing – Review & Editing
  • Aruzhan Ilderbayeva: Methodology, Formal Analysis, Writing – Original Draft Preparation, Writing – Review & Editing

References

Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.

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