Quantifying Bone Strength Deficits in Young Adults Born Extremely Preterm or Extremely Low Birth Weight

Thang Dao1, Dale Lee Robinson2, Lex W Doyle3,4,5,6

  • 1Melbourne Medical School, The University of Melbourne, Melbourne, Australia.

Insights

Young adults born extremely preterm (EP) or extremely low birth weight (ELBW) show reduced bone strength, increasing long-term fracture risk, especially in males. Bone health assessments in EP/ELBW survivors are crucial for early intervention.

Area of Science:

  • Bone Health Research
  • Preterm Birth Outcomes
  • Adult Skeletal Development

Background:

  • Long-term bone health in adults born extremely preterm (EP; <28 weeks' gestation) or extremely low birth weight (ELBW; <1000g) since the 1990s remains unclear.
  • Peripheral quantitative computed tomography (pQCT)-based finite element modeling (pQCT-FEM) is a validated technique for assessing bone fragility.

Purpose of the Study:

  • To investigate bone structure and estimate bone strength in young adults born EP/ELBW.
  • To compare bone parameters between EP/ELBW survivors and term-born controls at age 25 years.

Main Methods:

  • A cohort study involving 161 EP/ELBW survivors and 122 term-born controls (born 1991-1992).
  • pQCT analysis of tibia and radius at 4% and 66% of length, utilizing pQCT-FEM for stiffness calculations (compressive, torsional, bending).
  • Linear regression adjusted for height and weight, with an interaction term for sex to assess group differences.

Main Results:

  • EP/ELBW survivors were shorter but had similar weights compared to controls.
  • Height- and weight-adjusted torsional stiffness at 66% of the tibia was significantly lower in EP/ELBW survivors (-180 Nm/deg).
  • Group differences in tibial torsional and bending stiffness were more pronounced in males than females, with no significant differences in radial bone parameters.

Conclusions:

  • Lower adjusted bone strength measures in EP/ELBW survivors suggest a clinically relevant increase in predicted long-term fracture risk, particularly for males.
  • Tibial pQCT images are recommended for future pQCT-FEM studies due to greater variability observed in radial measurements.
  • Findings highlight the need for continued monitoring of bone health in EP/ELBW populations into adulthood.