Differences and similarities in cortical bone of the femur between donors with and without type 2 diabetes.
biomechanical · Level V
Where this comes from
- Record sourced from PubMed, PMID 41269226.
- Also identified by DOI 10.1093/jbmr/zjaf173 and PMC identifier 13034673.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
For a given BMD, adults with type 2 diabetes (T2D) have greater fracture risk than adults without the disease. To test the hypothesis that T2D lowers the fracture resistance of human cortical bone by negatively altering the bone matrix quality, we acquired cadaveric femurs from 120 female and male donors >50 yr old: 60 without diabetes (Ctrl) and 60 with T2D for ≥10 yr. We scanned a cross-section from each diaphysis using ex vivo micro-CT (μCT), followed by cyclic reference point indentation (cRPI: 0-10 N for 20 cycles) and impact micro-indentation on the medial surface. From the medial quadrant, a tensile specimen and a single-edge notched beam (SENB) were mechanically tested to assess differences in fracture resistance. Multiple techniques characterized the organic matrix within the SENB. The cortical bone area and thickness of the diaphysis were higher in T2D than in Ctrl. The average creep indentation distance of periosteal bone tissue was significantly lower with T2D suggesting greater resistance to micro-indentation. Bone material strength index trended to be lowering in T2D than in Ctrl but only when the comparison was adjusted for age, sex, and BMI. There were also T2D-related differences in the organic matrix: (1) higher non-enzymatic and mature enzymatic crosslinks, (2) higher fluorescent advanced glycation end-products, and (3) higher thermal stability. Despite these tissue- and molecular-level differences, mechanical properties of cortical bone were similar between the 2 groups. Tensile strength was lower (p = .035), while pentosidine was higher (p = .006) in donors with CKD than donors without kidney disease, but the difference in strength (p = .055) and pentosidine (p = .151) were not strictly significant when adjusting for covariates. The elevated fracture risk in T2D may not be a problem of poor mechanical properties of cortical bone, despite alterations in the organic matrix.
Medical subject headings
- Cortical Bone
- Diabetes Mellitus, Type 2
- Femur
- Tissue Donors