Altered bone mass, geometry and mechanical properties during the development and progression of type 2 diabetes in the Zucker diabetic fatty rat

Изменения костной массы, геометрии и механических свойств в ходе развития и прогрессирования сахарного диабета 2-го типа у крыс линии Zucker diabetic fatty
Rhonda D. Prisby, Joshua M. Swift, Susan A. Bloomfield, Harry A. Hogan, Michael D. Delp
2008-08-28

Zucker diabetic fatty ratsbone mechanical propertiesbone mineral densityhyperglycemiatype 2 diabetes
Osteopenia and an enhanced risk of fracture often accompany type 1 diabetes. However, the association between type 2 diabetes and bone mass has been ambiguous with reports of enhanced, reduced, or similar bone mineral densities (BMDs) when compared with healthy individuals. Recently, studies have also associated type 2 diabetes with increased fracture risk even in the presence of higher BMDs. To determine the temporal relationship between type 2 diabetes and bone remodeling structural and mechanical properties at various bone sites were analyzed during pre-diabetes (7 weeks), short-term (13 weeks), and long-term (20 weeks) type 2 diabetes. BMDs and bone strength were measured in the femora and tibiae of Zucker diabetic fatty rats, a model of human type 2 diabetes. Increased BMDs (9-10%) were observed in the distal femora, proximal tibiae, and tibial mid- shafts in the pre-diabetic condition that corresponded with higher plasma insulin levels. During short- and long-term type 2 diabetes, various parameters of bone strength and BMDs were lower (9-26%) in the femoral neck, distal femora, proximal tibiae, and femoral and tibial mid-shafts. Correspondingly, blood glucose levels increased by 125% and 153% during short- and long-term diabetes respectively. These data indicate that alterations in BMDs and bone mechanical properties are closely associated with the onset of hyperinsulinemia and hyperglycemia, which may have direct adverse effects on skeletal tissue. Consequently, disparities in the human literature regarding the effects of type 2 diabetes on skeletal properties may be associated with the bone sites studied and the severity or duration of the disease in the patient population studied.
1
Blood glucose increased by 125% during short-term and 153% during long-term diabetes, paralleling deterioration in skeletal properties.
2
Changes in bone mass and mechanical properties closely tracked the onset of hyperinsulinemia and hyperglycemia.
3
In pre-diabetic Zucker diabetic fatty rats, BMD increased by 9–10% at several femoral and tibial sites alongside elevated plasma insulin.
4
Short- and long-term type 2 diabetes reduced BMD and multiple bone-strength parameters by 9–26% across femoral and tibial sites.
5
The differing effects of type 2 diabetes reported in humans may reflect the skeletal site examined and disease severity or duration.

Femora and tibiae of Zucker diabetic fatty rats during pre-diabetes and the development and progression of type 2 diabetes

Temporal and site-specific alterations in bone mass, geometry, remodeling, BMD, and mechanical strength associated with the onset and duration of type 2 diabetes

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2008-08-28
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Rhonda D. Prisby
Joshua M. Swift
Susan A. Bloomfield
Harry A. Hogan
Michael D. Delp
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