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Regenerative Medicine Institute at CÚRAM SFI Research Centre, School of Medicine, National University of Ireland Galway (NUIG), Galway, Ireland
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Department of Clinical Biochemistry, SUHCG, GUH, Galway, Ireland
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Lambe Institute for Translational Research, School of Medicine, NUIG, Galway, Ireland
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Regenerative Medicine Institute at CÚRAM SFI Research Centre, School of Medicine, National University of Ireland Galway (NUIG), Galway, Ireland
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Newcastle upon Tyne NHS Hospitals Foundation Trust, Newcastle upon Tyne, UK
NIHR Newcastle Biomedical Research Centre, Newcastle upon Tyne, UK
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Introduction
Inactivating mutations in CYP24A1, encoding vitamin D-24-hydroxylase, can lead to an accumulation of active vitamin D metabolites and consequent hypercalcaemia. Patient (infantile and adult) presentation is varied and includes mild-severe hypercalcaemia, hypercalciuria, nephrocalcinosis and nephrolithiasis. This study aimed to characterize the clinical and biochemical phenotypes of a family with two CYP24A1 missense variants.
Methods
The proband and seven family members underwent detailed clinical and biochemical evaluation. Laboratory measurements included serum calcium, intact parathyroid hormone (iPTH), vitamin D metabolites and urine calcium and creatinine.
Results
The proband presented during the second trimester of a planned pregnancy with flu-like symptoms. Laboratory tests showed elevated adjusted calcium of 3.27 (upper reference limit (URL: 2.30) mmol/L), suppressed iPTH (<6 ng/L), elevated 25(OH)D (264 (URL: 55) nmol/L) and elevated 1,25(OH)D (293 (URL: <280) pmol/L). Ionized calcium was 1.55 (URL: 1.28) mmol/L. Sanger sequencing revealed two heterozygous missense variants in the CYP24A1: p.(Arg439Cys), R439C and p.(Trp275Arg), W275R. The proband’s brother and sister had the same genotype. The brother had intermittent hypercalcaemia and hypervitaminosis D. Only the sister had a history of nephrolithiasis. The proband’s daughter and two nephews were heterozygous for the R439C variant. The proband and her brother frequently had elevated 25(OH)D:24,25(OH)2D ratios (>50) during follow-up.
Conclusions
W275R is a new pathogenic CYP24A1 mutation in compound heterozygotic form with R439C in this family.
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Background
Hypoparathyroidism is characterised by hypocalcaemia, and standard management is with an active vitamin D analogue and adequate oral calcium intake (dietary and/or supplements). Little is described in the literature about the impact of intercurrent illnesses on calcium homeostasis in children with hypoparathyroidism.
Methods
We describe three children with hypoparathyroidism in whom intercurrent illnesses led to hypocalcaemia and escalation of treatment with alfacalcidol (1-hydroxycholecalciferol) and calcium supplements.
Results
Three infants managed with standard treatment for hypoparathyroidism (two with homozygous mutations in GCMB2 gene and one with Sanjad-Sakati syndrome) developed symptomatic hypocalcaemia (two infants developed seizures) following respiratory or gastrointestinal illnesses. Substantial increases in alfacalcidol doses (up to three times their pre-illness doses) and calcium supplementation were required to achieve acceptable serum calcium concentrations. However, following resolution of illness, these children developed an increase in serum calcium and hypercalciuria, necessitating rapid reduction to pre-illness dosages of alfacalcidol and oral calcium supplementation.
Conclusion
Intercurrent illness may precipitate symptomatic hypocalcaemia in children with hypoparathyroidism, necessitating increase in dosages of alfacalcidol and calcium supplements. Close monitoring is required on resolution of the intercurrent illness, with timely reduction of dosages of active analogues of vitamin D and calcium supplements to prevent hypercalcaemia, hypercalciuria and nephrocalcinosis.
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Department of General Surgery, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China
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Department of General Surgery, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China
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Department of General Surgery, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China
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Objective
The aim was to explore the effects of preoperative calcium and activated vitamin D3 supplementation on post-thyroidectomy hypocalcemia and hypo-parathyroid hormone-emia (hypo-PTHemia).
Methods
A total of 209 patients were randomly divided into control group (CG) and experimental group (EG). Oral calcium and activated vitamin D3 supplementation were preoperatively administered to EG, whereas a placebo was administered to CG. Data on serum calcium, phosphorus, and PTH concentrations before operation, on postoperative day 1 (POPD1), at postoperative week 3 (POPW3), and on the length of postoperative hospitalization were collected.
Results
The serum calcium, phosphorus, and PTH concentrations, as well as the incidence of postoperative hypocalcemia and hypo-PTHemia, did not significantly differ between EG and CG. Subgroup analysis revealed that the serum calcium concentrations of the experimental bilateral thyroidectomy subgroup (eBTS) on POPD1 and POPW3 were higher than that of the control bilateral thyroidectomy subgroup (cBTS) (P < 0.05); the reduction of serum calcium in eBTS on POPD1 and POPW3 was less than those in cBTS (P < 0.05). However, significant differences were not observed between the unilateral thyroidectomy subgroups (UTS) (P > 0.05). Moreover, the incidence of postoperative hypocalcemia in cBTS on POPD1 was significantly higher than that in eBTS (65.9% vs 41.7%) (P < 0.05). The length of hospitalization in cBTS (3.55 ± 1.89 days) was significantly longer than that (2.79 ± 1.15 days) in eBTS (P < 0.05).
Conclusion
Short-term preoperative prophylactic oral calcium and activated vitamin D3 supplementation could effectively reduce the incidence of postoperative hypocalcemia and decrease the length of postoperative hospitalization in patients who have undergone bilateral thyroidectomy.
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Background
Accumulating evidence from animal and human studies suggests that vitamin D is involved in many functions of the reproductive system in both genders.
Aim
The aim of this review was to provide an overview on the effects of vitamin D on polycystic ovary syndrome (PCOS) in women and androgen metabolism in men.
Methods
We performed a systematic literature search in PubMed for relevant English language publications published from January 2012 until September 2017.
Results and discussion
The vitamin D receptor and vitamin D-metabolizing enzymes are found in reproductive tissues of women and men. In women, vitamin D status has been associated with several features of PCOS. In detail, cross-sectional data suggest a regulatory role of vitamin D in PCOS-related aspects such as ovulatory dysfunction, insulin resistance as well as hyperandrogenism. Moreover, results from randomized controlled trials (RCTs) suggest that vitamin D supplementation may be beneficial for metabolic, endocrine and fertility aspects in PCOS. In men, vitamin D status has been associated with androgen levels and hypogonadism. Further, there is some evidence for a favorable effect of vitamin D supplementation on testosterone concentrations, although others failed to show a significant effect on testosterone levels.
Conclusion
In summary, vitamin D deficiency is associated with adverse fertility outcomes including PCOS and hypogonadism, but the evidence is insufficient to establish causality. High-quality RCTs are needed to further evaluate the effects of vitamin D supplementation in PCOS women as well as on androgen levels in men.
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Department of Health Sciences, Department of Epidemiology and Biostatistics, Department of Public Health, Department of General Practice, Department of Internal Medicine and Cardiovascular Research Institute Maastricht, Department of Internal Medicine, Faculty of Earth and Life Sciences, EMGO Institute for Health and Care Research, VU University Amsterdam, De Boelelaan 1085, 1081 HV Amsterdam, The Netherlands
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Objective
A disturbed vitamin D–parathyroid hormone (PTH)–calcium axis may play a role in the pathogenesis of heart failure. Therefore, we investigated whether lower 25-hydroxyvitamin D (25(OH)D) and higher PTH are cross sectionally and after 8 years of follow-up associated with higher B-type natriuretic peptide (BNP) levels in older men and women.
Design and methods
We measured baseline 25(OH)D, PTH, and BNP in 502 subjects in 2000–2001 in the Hoorn Study, a population-based cohort. Follow-up BNP was available in 2007–2009 in 278 subjects. Subjects were categorized according to season- and sex-specific quartiles of 25(OH)D and PTH at baseline. We studied the association of 25(OH)D and PTH quartiles with BNP using linear regression analyses adjusting for confounders. Analyses were stratified by kidney function estimated glomerular filtration rate (eGFR; ≤60 ml/min per 1.73 m2) because of significant interaction.
Results
At baseline, subjects had a mean age of 69.9±6.6 years, mean 25(OH)D level was 52.2±19.5 nmol/l and mean PTH 6.1±2.4 pmol/l. Cross sectionally, 25(OH)D was associated with BNP in subjects with impaired kidney function (eGFR ≤60 ml/min) only. The association attenuated after adjustment for PTH. PTH was cross sectionally associated with BNP, also in subjects with impaired kidney function only: regression coefficient of highest quartile 9.9 pmol/l (95% confidence interval 2.5, 17.4) with a significant trend across quartiles. Neither 25(OH)D nor PTH was associated with BNP in longitudinal analyses.
Conclusion
This study showed overall no strong association between 25(OH)D and BNP. However, PTH was associated with BNP in subjects with impaired kidney function and may point to a potential role in myocardial function.
Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
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Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
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Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
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Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
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Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
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Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
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Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
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Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
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Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
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Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
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Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
Service d'Endocrinologie et Diabétologie de l'Enfant, Service de Pédiatrie générale – Consultation de rhumatologie, Service d'Endocrinologie et des Maladies de la Reproduction, Service d'ORL et chirurgie cervico-maxillo-faciale, Université Paris 11, Centre de Référence des Maladies Rares du Métabolisme du Calcium et du Phosphore, Service d'Odontologie-Maladies Rares Hôpital Bretonneau 2 rue Carpeaux, Université Paris Descartes 12 Rue de l'École de Médecine, Service Rhumatologie B Hôpital Cochin, Centre de Référence des Maladies Rares des Maladies Auto-Inflammatoires Rares de l'Enfant, Service d'explorations fonctionnelles rénales, Service de Chirurgie infantile orthopédique, Association de patients RVRH-XLH, Hôpital Bicêtre, APHP, 78 rue du Général Leclerc, 94270 Le Kremlin Bicêtre, France
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In children, hypophosphatemic rickets (HR) is revealed by delayed walking, waddling gait, leg bowing, enlarged cartilages, bone pain, craniostenosis, spontaneous dental abscesses, and growth failure. If undiagnosed during childhood, patients with hypophosphatemia present with bone and/or joint pain, fractures, mineralization defects such as osteomalacia, entesopathy, severe dental anomalies, hearing loss, and fatigue. Healing rickets is the initial endpoint of treatment in children. Therapy aims at counteracting consequences of FGF23 excess, i.e. oral phosphorus supplementation with multiple daily intakes to compensate for renal phosphate wasting and active vitamin D analogs (alfacalcidol or calcitriol) to counter the 1,25-diOH-vitamin D deficiency. Corrective surgeries for residual leg bowing at the end of growth are occasionally performed. In absence of consensus regarding indications of the treatment in adults, it is generally accepted that medical treatment should be reinitiated (or maintained) in symptomatic patients to reduce pain, which may be due to bone microfractures and/or osteomalacia. In addition to the conventional treatment, optimal care of symptomatic patients requires pharmacological and non-pharmacological management of pain and joint stiffness, through appropriated rehabilitation. Much attention should be given to the dental and periodontal manifestations of HR. Besides vitamin D analogs and phosphate supplements that improve tooth mineralization, rigorous oral hygiene, active endodontic treatment of root abscesses and preventive protection of teeth surfaces are recommended. Current outcomes of this therapy are still not optimal, and therapies targeting the pathophysiology of the disease, i.e. FGF23 excess, are desirable. In this review, medical, dental, surgical, and contributions of various expertises to the treatment of HR are described, with an effort to highlight the importance of coordinated care.
Department of Nutritional Sciences, University of Toronto, Toronto, Ontario, Canada
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Department of Epidemiology, Dalla Lana School of Public Health, University of Toronto, Toronto, Ontario, Canada
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Department of Nutritional Sciences, University of Toronto, Toronto, Ontario, Canada
Department of Paediatrics, Hospital for Sick Children and University of Toronto, Toronto, Ontario, Canada
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Intrauterine growth restriction (IUGR) reflects inadequate growth in-utero and is prevalent in low resource settings. This study aimed to assess the association of maternal delivery parathyroid hormone (PTH) – a regulator of bone turnover and calcium homeostasis – with newborn anthropometry, to identify regulators of PTH, and to delineate pathways by which maternal PTH regulates birth size using path analysis. This was a cross-sectional analysis of data from participants (n = 537) enrolled in the Maternal Vitamin D for Infant Growth trial in Dhaka, Bangladesh. Primary exposures were maternal delivery intact PTH (iPTH) or whole PTH (wPTH) and outcomes were gestational age- and sex-standardized z-scores for birth length (LAZ), weight (WAZ), and head circumference (HCAZ). Hypothesized regulators of PTH included calcium and protein intake, vitamin D, magnesium, fibroblast-like growth factor-23 (FGF23), and C-reactive protein. Maternal iPTH was not associated with birth size in linear regression analyses; however, in path analysis models, every SD increase in log(iPTH) was associated with 0.08SD (95% CI: 0.002, 0.162) higher LAZ. In linear regression and path analysis models, wPTH was positively associated with WAZ. Vitamin D suppressed PTH, while FGF23 was positively associated with PTH. In path analysis models, higher magnesium was negatively associated with LAZ; FGF23 was positively associated and protein intake was negatively associated with LAZ, WAZ, and HCAZ. Higher maternal PTH in late pregnancy is unlikely to contribute to IUGR. Future studies should investigate maternal FGF23, magnesium and protein intake as regulators of fetal growth, particularly in settings where food insecurity and IUGR are public health problems.
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Our knowledge of vitamin D has come a long way since the 100 years it took for doctors to accept, between 1860 and 1890, that both sunlight and cod liver oil (a well-known folk remedy) cured and prevented rickets. Vitamins D2/D3 were discovered exactly a hundred years ago, and over the last 50 years vitamin D has been found to have many effects on virtually all human tissues and not just on bone health, while mechanisms affecting the actions of vitamin D at the cellular level are increasingly understood, but deficiency persists globally. Observational studies in humans have shown that better provision of vitamin D is strongly associated, dose-wise, with reductions in current and future health risks in line with the known actions of vitamin D. Randomised controlled trials, commonly accepted as providing a ‘gold standard’ for assessing the efficacy of new forms of treatment, have frequently failed to provide supportive evidence for the expected health benefits of supplementation. Such RCTs, however, have used designs evolved for testing drugs while vitamin D is a nutrient; the appreciation of this difference is critical to identifying health benefits from existing RCT data and for improving future RCT design. This report aims, therefore, to provide a brief overview of the evidence for a range of non-bony health benefits of vitamin D repletion; to discuss specific aspects of vitamin D biology that can confound RCT design and how to allow for them.
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X-linked hypophosphataemia (XLH) is caused by a pathogenic variant in the PHEX gene, which leads to elevated circulating FGF23. High FGF23 causes hypophosphataemia, reduced active vitamin D concentration and clinically manifests as rickets in children and osteomalacia in children and adults. Conventional therapy for XLH includes oral phosphate and active vitamin D analogues but does not specifically treat the underlying pathophysiology of elevated FGF23-induced hypophosphataemia. In addition, adherence to conventional therapy is limited by frequent daily dosing and side effects such as gastrointestinal symptoms, secondary hyperparathyroidism and nephrocalcinosis. Burosumab, a recombinant human IgG1 MAB that binds to and inhibits the activity of FGF23, is administered subcutaneously every 2 weeks. In clinical trials (phase 2 and 3) burosumab was shown to improve phosphate homeostasis that consequently resolves the skeletal/non-skeletal manifestations of XLH. Burosumab was licensed in Europe (February 2018) with the National Institute for Health and Care Excellence, UK approving use within its marketing authorisation in October 2018. In this publication, the British Paediatric and Adolescent Bone Group (BPABG) reviewed current evidence and provide expert recommendations for care pathway and management of XLH with burosumab.
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The first adjunctive hormone therapy for chronic hypoparathyroidism, recombinant human parathyroid hormone (1–84) (rhPTH(1–84)) was approved by the FDA in January 2015. Since the approval of rhPTH(1–84), growing interest has developed in other agents to treat this disorder in both the scientific community and among pharmaceutical companies. For several reasons, conventional therapy with calcium and activated vitamin D supplementation, magnesium supplementation as needed, and occasionally thiazide-type diuretic therapy remains the mainstay of treatment, while endocrinologists and patients are constantly challenged by limitations of conventional treatment. Serum calcium fluctuations, increased urinary calcium, hyperphosphatemia, and a constellation of symptoms that limit mental and physical functioning are frequently associated with conventional therapy. Understanding how conventional treatment and hormone therapy work in terms of pharmacokinetics and pharmacodynamics is key to effectively managing chronic hypoparathyroidism. Multiple questions remain regarding the effectiveness of PTH adjunctive therapy in preventing or slowing the onset and progression of the classical complications of hypoparathyroidism, such as chronic kidney disease, calcium-containing kidney stones, cataracts, or basal ganglia calcification. Several studies point toward an improvement in the quality of life during replacement therapy. This review will discuss current clinical and research challenges posed by treatment of chronic hypoparathyroidism.
Key points:
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Conventional therapy with calcium and activated forms of vitamin D are currently the mainstays of treatment for most patients with chronic hypoparathyroidism.
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Hormone therapy can be administered through FDA-approved once-daily rhPTH(1–84), or off-label multiple-daily injections of teriparatide. The former is the only FDA-approved drug, with safety and efficacy supported by a randomized placebo-controlled trial and open-label long-term extension trial data.
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Twice-daily teriparatide has been used in children safely for up to 10 years.
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New pharmacological options that replace the deficient hormone wi ll likely be available within the next few years.