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1. Unusual Cortical Phenotype After Hematopoietic Stem Cell Transplantation in a Patient With Osteopetrosis

2. Genome-wide association study in 79,366 European-ancestry individuals informs the genetic architecture of 25-hydroxyvitamin D levels

3. Erratum: Large meta-analysis of genome-wide association studies identifies five loci for lean body mass

4. Large meta-analysis of genome-wide association studies identifies five loci for lean body mass

5. Bone marrow transplantation as a therapy for autosomal dominant osteopetrosis type 2 in mice

8. Cover, Volume 43, Issue 2

10. Novel PHEX gene locus-specific database: Comprehensive characterization of vast number of variants associated with X-linked hypophosphatemia (XLH)

11. Meta‐Analysis of Genomewide Association Studies Reveals Genetic Variants for Hip Bone Geometry

12. Disentangling the genetics of lean mass

13. Contributors

14. The discovery of FGF23—a historic view

15. Autoimmune hyperphosphatemic tumoral calcinosis in a patient with FGF23 autoantibodies

16. FGF23 and the Regulation of Phosphorus Metabolism

17. Chloroquine increases osteoclast activity in vitro but does not improve the osteopetrotic bone phenotype of ADO2 mice

18. Genetic diseases resulting from disordered FGF23/klotho biology

19. Genetic Variants Associated with Circulating Parathyroid Hormone

20. OR13-3 Effects of Iron Isomaltoside versus Ferric Carboxymaltose on Hormonal Control of Phosphate Homeostasis: The PHOSPHARE-IDA04/05 Randomized Controlled Trials

21. SUN-532 Interferon Gamma-1b Does Not Increase Markers of Bone Resorption in Autosomal Dominant Osteopetrosis

22. A comprehensive locus specific database of PHEX gene variants associated with X-linked hypophosphatemia vastly increases the number of known variants

23. A Mutation in the Dmp1 Gene Alters Phosphate Responsiveness in Mice

24. Phenotypic and Genotypic Characterization and Treatment of a Cohort With Familial Tumoral Calcinosis/Hyperostosis-Hyperphosphatemia Syndrome

25. Effects of Iron Isomaltoside vs Ferric Carboxymaltose on Hypophosphatemia in Iron-Deficiency Anemia

26. Interferon Gamma-1b Does Not Increase Markers of Bone Resorption in Autosomal Dominant Osteopetrosis

27. Severe FGF23-based hypophosphataemic osteomalacia due to ferric carboxymaltose administration

28. Osteoblast-Specific Overexpression of Human WNT16 Increases Both Cortical and Trabecular Bone Mass and Structure in Mice

29. Interferon Gamma, but not Calcitriol Improves the Osteopetrotic Phenotypes in ADO2 Mice

30. Autoimmune hyperphosphatemic tumoral calcinosis

31. Diagnosis and Management of Osteopetrosis: Consensus Guidelines From the Osteopetrosis Working Group

32. Large meta-analysis of genome-wide association studies identifies five loci for lean body mass

33. SIBLING family genes and bone mineral density: Association and allele-specific expression in humans

34. High-Resolution Genome Screen for Bone Mineral Density in Heterogeneous Stock Rat

35. The Case | Ectopic calcifications in a child

36. Meta-analysis of genome-wide studies identifies WNT16 and ESR1 SNPs associated with bone mineral density in premenopausal women

37. Bone Mass and Strength are Significantly Improved in Mice Overexpressing Human WNT16 in Osteocytes

38. Serum fibroblast growth factor 23, serum iron and bone mineral density in premenopausal women

39. Phenotypic and Genotypic Characterization and Treatment of a Cohort With Familial Tumoral Calcinosis/Hyperostosis-Hyperphosphatemia Syndrome

41. Contributors

42. regSNPs: a strategy for prioritizing regulatory single nucleotide substitutions

43. Approach to the Hypophosphatemic Patient

44. APhexmutation in a murine model of X-linked hypophosphatemia alters phosphate responsiveness of bone cells

45. Dietary Phosphate Restriction Normalizes Biochemical and Skeletal Abnormalities in a Murine Model of Tumoral Calcinosis

46. Overexpression of WNT16 Does Not Prevent Cortical Bone Loss Due to Glucocorticoid Treatment in Mice

47. Clinical variability of familial tumoral calcinosis caused by novelGALNT3mutations

48. Genome-Wide Association Study of Bone Mineral Density in Premenopausal European-American Women and Replication in African-American Women

49. Replication of Previous Genome-wide Association Studies of Bone Mineral Density in Premenopausal American Women

50. Identification of genes influencing skeletal phenotypes in congenic P/NP rats

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