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Quantifying RANKL and OPG levels in healthy children: A large cross-sectional analysis
Sara Akhtar Ali1, Harsimar Kang2, Robert Olney3
1Center For Endocrinology, Diabetes and Metabolism, Children's Hospital Los Angeles (CHLA), United States of America.
Insights
This study quantifies RANKL, OPG, and RANKL:OPG levels in healthy children, finding significant differences by age, Tanner stage, and BMI. These insights into bone remodeling markers are crucial for pediatric health.
Area of Science:
- Pediatric Endocrinology
- Molecular Biology
- Bone Metabolism
Background:
- Bone remodeling is key to skeletal health, involving pathways like RANKL-OPG.
- Limited pediatric data exists on normative RANKL, OPG, and RANKL:OPG values.
- This study addresses the gap by analyzing these markers in healthy children.
Purpose of the Study:
- To quantify RANKL, OPG, and RANKL:OPG levels in a large cohort of healthy children.
- To investigate the influence of age, gender, Tanner stage, and BMI on these levels.
- To establish normative data for pediatric bone remodeling markers.
Main Methods:
- Recruited 300 healthy children aged 1-21 years.
- Defined healthy status by absence of chronic disease, daily medication, or recent fractures.
- Quantified free soluble RANKL and OPG using sandwich ELISA.
Main Results:
- Serum RANKL and RANKL:OPG levels differed significantly by age (p<0.003) and Tanner stage (p<0.048).
- RANKL concentrations were associated with zBMI (p<0.001), while OPG showed an inverse correlation with zBMI.
- Age-related trends showed a general decrease, with a slight increase in the 11-15 age group.
Conclusions:
- Circulating RANKL levels vary significantly with age, Tanner stage, and zBMI in children.
- OPG levels are inversely correlated with zBMI, but not influenced by gender, age, or Tanner stage.
- Establishing normative pediatric levels of RANKL, OPG, and RANKL:OPG aids in understanding pediatric bone diseases.
Background:
There have been new advances in understanding bone remodeling on a molecular level including the RANKL-OPG pathway, leading to advancements in targeted therapeutic intervention. There is however limited data in pediatrics with little known on normative values in healthy children. This is the largest cohort to quantify RANKL, OPG, and RANKL: OPG levels in healthy children as well as study the influence of age, gender, Tanner stage, and BMI in this population.
Methods:
Healthy subjects, 1-21 years of age, were recruited from general pediatric clinics affiliated with CHLA and in collaboration with samples stored from a previously completed study. Healthy children were defined as those with no chronic disease, daily medication, or fractures in the past six months. Free soluble RANKL and OPG levels were quantified using a sandwich ELISA.
Results:
Three hundred samples were collected with overall serum concentrations of RANKL, OPG and RANKL: OPG of 0.28 pmol/L, 3.56 pmol/L and 0.08 pmol/L, respectively. Serum RANKL and RANKL: OPG concentrations were significantly different by age (p = 0.0001 and 0.0027, respectively). There was an overall downward trend by age except in the 11-15-year age group where a slight increase was noted. RANKL concentrations were also significantly different between Tanner stages, with highest concentrations seen at Tanner 3 (p = 0.0481), and zBMI (p = 0.001). OPG was inversely correlated with zBMI, but not influenced by gender, age, or Tanner stage.
Conclusion:
We showed significant difference in RANKL levels by age, Tanner stage, and zBMI. OPG was inversely correlated with zBMI. Insight into circulating levels of RANKL, OPG and RANKL: OPG in healthy children may be a potential tool to better understand disease states in pediatrics. Future studies are needed to evaluate the clinical significance of RANKL and OPG levels for diagnostic and therapeutic purposes in this population.
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