A Multidisciplinary and a Comprehensive Approach to Reducing Fragility Fractures in Preterm Infants
Saif Al Saif1,2,3, Mohammad Maghoula1, Amir Babiker2,3,4
1Neonatal Department, King Abdulaziz Medical City, Ministry of National Guard Health Affairs, Riyadh, Saudi Arabia.
Insights
Fragility fractures in preterm infants, often linked to metabolic bone disease of prematurity (MBDP), were significantly reduced by a specialized Neonatal Bone Health Programme (NBHP). This program optimized nutrition and handling, decreasing fracture incidence from 12.5% to zero.
Area of Science:
- Neonatology
- Pediatric Orthopedics
- Neonatal Nutrition
Background:
- Preterm infants, especially those with very low or extremely low birth weight, are at risk for metabolic bone disease of prematurity (MBDP).
- MBDP leads to skeletal demineralization, decreased bone strength, and increased fracture risk, often exacerbated by secondary hyperparathyroidism.
- Fractures in these infants can occur from routine handling and are often asymptomatic, detected incidentally on radiographs.
Purpose of the Study:
- To implement and evaluate a comprehensive, multidisciplinary Neonatal Bone Health Programme (NBHP).
- The primary goal was to reduce fragility fractures in high-risk neonates.
- Key strategies included optimizing enteral and parenteral nutrition, maintaining a specific calcium-to-phosphate ratio, biochemical monitoring, and safe infant handling.
Main Methods:
- A Neonatal Bone Health Programme (NBHP) was instituted in 2015.
- The program focused on optimizing nutrition (calcium-to-phosphate ratio ≥1.3:1), biochemical monitoring, and safe handling practices.
- High-risk infants underwent regular radiographic monitoring.
Main Results:
- Following the implementation of the NBHP, the incidence of bone fractures in at-risk neonates decreased from 12.5% to zero.
- This reduction was observed over an 18-month period after the program's initiation.
- The program successfully minimized fragility fractures without compromising essential care practices like physiotherapy and skin-to-skin contact.
Conclusions:
- A multidisciplinary Neonatal Bone Health Programme (NBHP) is highly effective in preventing fragility fractures in preterm infants.
- Optimizing nutritional support, particularly the calcium-to-phosphate ratio, and implementing safe handling protocols are crucial for bone health in high-risk neonates.
- The NBHP demonstrates a successful model for reducing bone complications in vulnerable preterm populations.
Abstract:
With advances in neonatal care, bone fractures prior to discharge from the hospital in preterm infants receiving contemporary neonatal care, are rare. Nevertheless, such fractures do occur in very low birth weight and extremely low birth weight infants who go on to develop metabolic bone disease of prematurity (MBDP), with or without secondary hyperparathyroidism. MBDP is a multifactorial disorder arising from the disruption of bone mass accrual due to premature birth, postnatal immobilisation, and loss of placental oestrogen resulting in bone loss, inadequate provision of bone minerals from enteral and parenteral nutrition, and medications that leach out bone minerals from the skeleton. All of these factors lead to skeletal demineralisation and a decrease in bone strength and an increased risk of fractures of the long bones and ribs. Secondary hyperparathyroidism resulting from phosphate supplements, or enteral/parenteral feeds with a calcium-tophosphate ratio of < 1.3:1.0 leads to subperiosteal bone resorption, cortical thinning, and further skeletal weakening. Such fractures may occur from routine handling and procedures such as cannulation. Most fractures are asymptomatic and often come to light incidentally on radiographs performed for other indications. In 2015, we instituted a comprehensive and multidisciplinary Neonatal Bone Health Programme (NBHP), the purpose of which was to reduce fragility fractures in highrisk neonates, by optimising enteral and parenteral nutrition, including maintaining calcium-tophosphate ratio ≥1.3:1, milligram to milligram, biochemical monitoring of MBDP, safe-handling of at-risk neonates, without compromising passive physiotherapy and skin-to-skin contact with parents. The at-risk infants in the programme had radiographs of the torso and limbs at 4 weeks and after 8 weeks from enrolment into the program or before discharge. Following the introduction of the NBHP, the bone fracture incidence reduced from 12.5% to zero over an 18-month period.
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