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Metabolic bone disease of prematurity: causes, recognition, prevention, treatment and long-term consequences
Amish Chinoy1,2, Mohamed Zulf Mughal1,2, Raja Padidela1,2
1Department of Paediatric Endocrinology, Royal Manchester Children's Hospital, Manchester, UK.
Insights
Metabolic bone disease of prematurity (MBDP) causes bone demineralization in preterm infants. Understanding calcium and phosphate homeostasis, guided by parathyroid hormone levels, is key to effective treatment.
Area of Science:
- Neonatology
- Pediatric Endocrinology
- Bone Metabolism
Background:
- Metabolic bone disease of prematurity (MBDP) leads to skeletal demineralization and fractures in preterm infants.
- Prenatal mineral accretion is reduced, and postnatal mineral intake is challenging.
- Medications, immobilization, and hormonal changes exacerbate bone loss.
Purpose of the Study:
- To review the pathophysiology of MBDP.
- To highlight the diagnostic challenges and the role of parathyroid hormone (PTH).
- To guide treatment strategies based on calcium and phosphate homeostasis.
Main Methods:
- Review of calcium and phosphate homeostasis.
- Analysis of factors contributing to MBDP.
- Emphasis on the role of plasma parathyroid hormone.
Main Results:
- MBDP results from prenatal and postnatal factors impacting mineral accumulation.
- Plasma PTH is crucial in identifying the cause as calcipaenia or phosphopaenia.
- Current practices like isolated phosphate supplementation can worsen MBDP.
Conclusions:
- Accurate diagnosis and treatment of MBDP require understanding calcium-phosphate balance.
- Plasma PTH levels are vital for determining the etiology of MBDP.
- Tailored supplementation considering calcium-to-phosphate ratios is essential for managing MBDP.
Abstract:
Metabolic bone disease of prematurity (MBDP) is characterised by skeletal demineralisation, and in severe cases it can result in fragility fractures of long bones and ribs during routine handling. MBDP arises from prenatal and postnatal factors. Infants who are born preterm are deprived of fetal mineral accumulation, 80% of which occurs in the third trimester. Postnatally, it is difficult to maintain a comparable intake of minerals, and medications, such as corticosteroids and diuretic therapy, lead to bone resorption. With improvements in neonatal care and nutrition, the incidence of MBDP in preterm infants appears to have decreased, although the recent practice of administering phosphate supplements alone will result in secondary hyperparathyroidism and associated bone loss, worsening MBDP. Postnatal immobilisation and loss of placental supply of oestrogen also contribute to skeletal demineralisation. There is no single diagnostic or screening test for MBDP, with pitfalls existing for most radiological and biochemical investigations. By reviewing the pathophysiology of calcium and phosphate homeostasis, one can establish that plasma parathyroid hormone is important in determining the aetiology of MBDP - primarily calcipaenia or phosphopaenia. This will then direct treatment with the appropriate supplements while considering optimal physiological calcium to phosphate ratios.
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