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Comparative Analysis of Cortical and Trabecular Bone Structure Between Patients with Type 2 Diabetes and Healthy
Griselda-Adriana Cruz-Priego1, Miguel Ángel Guagnelli1, Sergio Ortiz Santiago1
1Unidad de Epidemiología Clínica, Hospital Infantil de México Federico Gómez, Facultad de Medicina, Universidad Nacional Autónoma de México, Mexico City, Mexico.
Background And Aims:
This study evaluates three-dimensional dual-energy X-ray absorptiometry (3D-DXA) parameters that determine the cortical and trabecular compartments in patients with type 2 diabetes (T2D) compared to nondiabetic subjects, with the aim of identifying their determinants.
Methods:
Patients with T2D were diagnosed according to ADA criteria. Anthropometric measurements were taken, and body mass index (BMI) was calculated. Bone densitometry (DXA) images were analyzed with 3D Shaper software. Volumetric bone mineral density (vBMD), bone mineral content (BMC), and volume were calculated in various regions of the femur, along with cortical thickness. Data analysis was performed using SPSS 27.0, a Student t-test and ANCOVA.
Results:
A total of 125 subjects were recruited: 51 healthy controls and 74 patients with T2D (70.3% women), with an average age of 53.9 and 53.6 years, respectively. The average disease duration in the T2D group was 11.4 years. Significant vitamin D deficiencies (levels <20 ng/mL) were found in 56% of the control group and in 64% of the T2D group. No significant differences in aBMD were observed between the two groups. 3D-DXA analysis showed consistently lower vBMD in patients with T2D vs. controls, with significant differences in the trochanter, femoral neck, and average cortical thickness. A positive correlation was observed between waist circumference, BMI, and higher bone density in all regions.
Conclusions:
This study demonstrates the potential of 3D-DXA to detect cortical and trabecular bone differences in patients with T2D, undetectable by aBMD. Women with T2D showed lower bone parameters in the trochanter and femoral neck, consistent with research linking long-term T2D and poor glycemic control to compromised bone quality.
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