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Published on: January 29, 2018
Life-course evidence of birth weight effects on bone mass: systematic review and meta-analysis
J Martínez-Mesa1, M C Restrepo-Méndez, D A González
1Postgraduate Program of Epidemiology, Federal University of Pelotas, Rio Grande do Sul, Brazil. jeovanymm@yahoo.es
Insights
Higher birth weight is linked to better bone mass in children, with weaker associations in adults. This highlights the importance of birth weight for long-term bone health and osteoporosis prevention.
Area of Science:
- Osteoporosis research
- Bone health epidemiology
- Human growth and development
Background:
- Optimal peak bone mass is crucial for preventing osteoporosis in later life.
- Early-life factors, such as birth weight, may influence long-term skeletal health.
- Understanding the relationship between birth weight and bone mass across the lifespan is important for public health strategies.
Purpose of the Study:
- To systematically review and meta-analyze the association between birth weight and bone mass.
- To evaluate this association across different age groups: children, adolescents, and adults.
- To inform preventive health policies aimed at optimizing peak bone mass.
Main Methods:
- Systematic literature review conducted in July 2011 using Medline, Web of Science, and LILACS databases.
- Inclusion criteria: longitudinal studies measuring bone mass (spine, femoral neck, total body) by dual-emission X-ray absorptiometry (DXA).
- Meta-analysis performed on selected studies, adjusting for current height and/or weight.
Main Results:
- A positive association between birth weight and bone mass was evident in children.
- The association was unclear in adolescents and weak in adults.
- The effect on bone mass content was stronger than on bone mineral density across all age groups.
Conclusions:
- Birth weight positively influences bone health throughout life.
- Early-life interventions focusing on modifiable risk factors like birth weight are recommended.
- Promoting optimal peak bone mass is a key strategy for reducing osteoporosis prevalence in the elderly.
Abstract:
A systematic review of the literature was performed in July 2011. Original papers based on longitudinal studies measuring spine, femoral neck, or total body bone mass by DXA were included (n = 17). Birth weight was positively associated with bone mass among children. The association was unclear among adolescents and weak among adults. This study aims to evaluate the association between birth weight and bone mass in future ages through a systematic review of literature and meta-analysis. A systematic review of the literature was performed in July 2011 in Medline, Web of Science and LILACS bases using key terms: ("birth size" OR "birth weight" OR birthweight OR prematurity OR premature OR "gestational age") AND (osteoporosis OR "bone mass" OR "bone density" OR "bone mineral density" OR "bone mineral content" OR "bone area") AND (longitudinal OR cohort). Original papers based on longitudinal studies measuring lumbar spine, femoral neck or total body bone mass by dual-emission X-ray absorptiometry (DXA) were included. A meta-analysis was performed using birth weight and bone mass density and/or content as continuous variables and adjusted for current height and/or weight. A total of 218 articles were retrieved from which 17 were selected and grouped into three categories according to age: studies with children; with adolescents and young adults, and studies with adults (older than 25). Five papers were included in the meta-analysis. Positive association between birth weight and bone mass was clear among children, unclear among adolescents, and weak among adults. The effect on bone mass content was stronger than those on body mass density regardless of age. Birth weight influences positively bone health in later life. Preventive health policies dealing with early-life modifiable risk factors, as birth weight, should be encouraged to attain an optimal peak bone mass as an strategy to decrease osteoporosis in the elderly.
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