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Abnormal Bone Tissue Organization and Osteocyte Lacunocanalicular Network in Early‐Onset Osteoporosis Due to SGMS2 Mutations
- Source :
- JBMR Plus, JBMR Plus, Vol 5, Iss 11, Pp n/a-n/a (2021)
- Publication Year :
- 2021
- Publisher :
- John Wiley & Sons, Inc., 2021.
-
Abstract
- Pathological variants in SGMS2, encoding sphingomyelin synthase 2 (SMS2), result in a rare autosomal dominant skeletal disorder with cranial doughnut lesions. The disease manifests as early-onset osteoporosis or a more severe skeletal dysplasia with low bone mineral density, frequent fractures, long-bone deformities, and multiple sclerotic cranial lesions. The exact underlying molecular features and skeletal consequences, however, remain elusive. This study investigated bone tissue characteristics in two adult males with a heterozygous SGMS2 mutation p.Arg50* and significant bone fragility. Transiliac bone biopsy samples from both (patient 1: 61 years; patient 2: 29 years) were analyzed by bone histomorphometry, confocal laser scanning microscopy, and quantitative backscattered electron imaging (qBEI). Bone histomorphometry portrayed largely normal values for structural and turnover parameters, but in both patient 1 and patient 2, respectively, osteoid thickness (-1.80 SD, -1.37 SD) and mineralizing surface (-1.03 SD, -2.73 SD) were reduced and osteoid surface increased (+9.03 SD, +0.98 SD), leading to elevated mineralization lag time (+8.16 SD, +4.10 SD). qBEI showed low and heterogeneous matrix mineralization (CaPeak -2.41 SD, -3.72 SD; CaWidth +7.47 SD, +4.41 SD) with a chaotic arrangement of collagenous fibrils under polarized light. Last, osteocyte lacunae appeared abnormally large and round in shape and the canalicular network severely disturbed with short-spanned canaliculi lacking any orderliness or continuity. Taken together, these data underline a central role for functional SMS2 in bone matrix organization and mineralization, lacunocanalicular network, and in maintaining skeletal strength and integrity. These data bring new knowledge on changes in bone histology resulting from abnormal sphingomyelin metabolism and aid en route to better understanding of sphingolipid-related skeletal disorders. (c) 2021 The Authors. JBMR Plus published by Wiley Periodicals LLC on behalf of American Society for Bone and Mineral Research.
- Subjects :
- Pathology
medicine.medical_specialty
CONFOCAL LASER SCANNING MICROSCOPY
Endocrinology, Diabetes and Metabolism
Osteoporosis
030209 endocrinology & metabolism
Diseases of the musculoskeletal system
Bone canaliculus
Bone tissue
03 medical and health sciences
0302 clinical medicine
Skeletal disorder
Medicine
Orthopedics and Sports Medicine
BONE HISTOMORPHOMETRY
030304 developmental biology
OSTEOGENESIS
Bone mineral
Orthopedic surgery
0303 health sciences
business.industry
Osteoid
MINERALIZATION DENSITY DISTRIBUTION
SPHINGOMYELIN SYNTHASE 2
Original Articles
medicine.disease
SPHINGOMYELIN METABOLISM
medicine.anatomical_structure
RC925-935
Dysplasia
EARLY-ONSET OSTEOPOROSIS
3121 General medicine, internal medicine and other clinical medicine
Osteocyte
IMPERFECTA
EARLY‐ONSET OSTEOPOROSIS
Original Article
QUANTITATIVE BACKSCATTERED ELECTRON IMAGING
business
RD701-811
Subjects
Details
- Language :
- English
- ISSN :
- 24734039
- Volume :
- 5
- Issue :
- 11
- Database :
- OpenAIRE
- Journal :
- JBMR Plus
- Accession number :
- edsair.doi.dedup.....735cbce7e73ffe43805246ab59de8080