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Recent Discoveries in Monogenic Disorders of Childhood Bone Fragility
Riikka E Mäkitie1, Anders J Kämpe2, Fulya Taylan2
1Folkhälsan Institute of Genetics, University of Helsinki, P. O. Box 63, FIN-00014, Helsinki, Finland.
Insights
Recent genetic discoveries have identified new causes of primary osteoporosis in children beyond osteogenesis imperfecta. Early diagnosis and care are crucial for managing this condition and ensuring optimal bone health.
Area of Science:
- Pediatric Endocrinology
- Genetics
- Skeletal Biology
Background:
- Primary osteoporosis in children presents significant skeletal morbidity.
- Classical forms are often linked to osteogenesis imperfecta.
Purpose of the Study:
- To review current knowledge on primary osteoporosis in children.
- To highlight recent genetic findings influencing diagnosis and understanding.
Main Methods:
- Review of recent genetic research, including next-generation sequencing.
- Analysis of identified genetic loci associated with monogenic osteoporosis.
Main Results:
- Several new genetic loci for monogenic inherited osteoporosis identified beyond collagen pathways.
- Defects in intracellular cascades (e.g., WNT1, PLS3, XYLT2) impact bone cell function.
- Primary osteoporosis leads to growth issues, poor bone mass, and fractures in children.
Conclusions:
- Genetic research is expanding the definition of primary osteoporosis.
- Early diagnosis and intervention are critical for pediatric bone health.
- Future research may uncover more genetic factors and therapeutic targets.
Purpose Of Review:
This review summarizes our current knowledge on primary osteoporosis in children with focus on recent genetic findings.
Recent Findings:
Advances in genetic research, particularly next-generation sequencing, have found several genetic loci that associate with monogenic forms of inherited osteoporosis, widening the scope of primary osteoporosis beyond classical osteogenesis imperfecta. New forms of primary osteoporosis, such as those related to WNT1, PLS3, and XYLT2, have identified defects outside the extracellular matrix components and collagen-related pathways, in intracellular cascades directly affecting bone cell function. Primary osteoporosis can lead to severe skeletal morbidity, including abnormal longitudinal growth, compromised bone mass gain, and noticeable fracture tendency beginning at childhood. Early diagnosis and timely care are warranted to ensure the best achievable bone health. Future research will most likely broaden the spectrum of primary osteoporosis, hopefully provide more insight into the genetics governing bone health, and offer new targets for treatment.
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