hrp0084p1-20 | Bone | ESPE2015

24-Hydroxylase Polymorphism as a Possible Contributor to the Increased 1,25(OH)2D in African Americans

Carpenter Thomas O , Cole David E C , Ardeshirpour Laleh , Salehpour Shadab

Background: States of vitamin D insufficiency are important determinants of rickets, as well as osteoporosis and other common complex disorders like diabetes, cancer, and infectious diseases. Although, serum concentrations of the vitamin D metabolites are primarily driven by vitamin D supply (by diet or cutaneous synthesis), there is emerging evidence to suggest that single nucleotide variants (SNVs) are important genetic determinants.Objective and hypot...

hrp0089fc2.1 | Bone, Growth Plate & Mineral Metabolism 1 | ESPE2018

Burosumab, a Fully Human anti-FGF23 Monoclonal Antibody, for X-linked Hypophosphatemia (XLH): Sustained Improvement in two Phase 2 Trials in Affected Children 1–12 years old

Linglart Agnes , van't Hoff William , Whyte Michael P. , Imel Erik , Portale Anthony A. , Boot Annemieke , Hogler Wolfgang , Padidela Raja , Mao Meng , Skrinar Alison , Martin Javier San , Carpenter Thomas O.

In XLH, excess fibroblast growth factor 23 (FGF23) causes hypophosphatemia and consequent rickets, skeletal deformities, and growth impairment. The efficacy and safety of burosumab, a fully human monoclonal antibody against FGF23, was evaluated in two Phase 2 trials in children with XLH. In CL201, 52 children with XLH (5–12 years old, Tanner ≤2) were randomized 1:1 to receive subcutaneous burosumab every 2 (Q2W) or 4 (Q4W) weeks, with doses titrated up to 2 mg/kg to...

hrp0092fc2.1 | Bone, Growth Plate and Mineral Metabolism Session 1 | ESPE2019

Continued Improvement in Clinical Outcomes with Burosumab, a Fully Human Anti-FGF23 Monoclonal Antibody: Results from a 3-Year, Phase 2, Clinical Trial in Children with X-Linked Hypophosphatemia (XLH)

Linglart Agnès , Carpenter Thomas O. , Högler Wolfgang , Imel Erik A. , Portale Anthony A. , Boot Annemieke , Padidela Raja , Van't Hoff William , Mao Meng , Skrinar Alison , Scott Roberts Mary , San Martin Javier , Whyte Michael P.

In children with XLH, excess FGF23 causes hypophosphatemia with consequent rickets, skeletal deformities, and impaired growth and mobility. We previously reported that burosumab improved phosphate homeostasis and rickets in children with XLH. Here, we report final data from this Phase 2 Study CL201 (NCT02163577).Fifty-two children with XLH (5-12 years old, Tanner ≤ 2) were randomized 1:1 to receive subcutaneous burosumab every 2 (Q2W) or 4 (Q4W) we...

hrp0092fc2.2 | Bone, Growth Plate and Mineral Metabolism Session 1 | ESPE2019

Benefits of Long-Term Burosumab Persist in 11 Girls with X-Linked Hypophosphatemia (XLH) Who Transitioned into Adolescence During the Phase 2 CL201 Trial

Boot Annemieke , Carpenter Thomas O. , Högler Wolfgang , Imel Erik A. , Portale Anthony A. , Linglart Agnès , Padidela Raja , Van't Hoff William , Mao Meng , Skrinar Alison , Scott Roberts Mary , San Martin Javier , Whyte Michael P.

In children with XLH, excess FGF23 causes hypophosphatemia with consequent rickets, skeletal deformities, and impaired growth and mobility. We reported that burosumab improved phosphate homeostasis and rickets in children with XLH. Here, we present data on 11/52 subjects (all girls) who developed fused growth plates during the phase 2 study CL201 (NCT02163577).In CL201, 52 subjects (Baseline: 5-12 years-old, Tanner ≤ 2) were randomized 1:1 to recei...