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Published on: March 6, 2019
Morphology and development of a novel murine skeletal dysplasia
Marta Marchini1,2, Elizabeth Silva Hernandez3, Campbell Rolian2,3
1Department of Cell Biology and Anatomy, Cumming School of Medicine, University of Calgary, Calgary, Canada.
Background:
Limb bones develop and grow by endochondral ossification, which is regulated by specific cell and molecular pathways. Changes in one or more of these pathways can have severe effects on normal skeletal development, leading to skeletal dysplasias. Many skeletal dysplasias are known to result from mis-expression of major genes involved in skeletal development, but the etiology of many skeletal dysplasias remains unknown. We investigated the morphology and development of a mouse line with an uncharacterized mutation exhibiting a skeletal dysplasia-like phenotype (Nabo).
Methods:
We used µCT scanning and histology to comprehensively characterize the phenotype and its development, and to determine the developmental stage when this phenotype first appears.
Results:
Nabo mice have shorter limb elements compared to wildtype mice, while clavicles and dermal bones of the skull are not affected. Nabo embryos at embryonic stage E14 show shorter limb cartilage condensations. The tibial growth plate in Nabo mice is wider than in wildtype, particularly in the proliferative zone, however proliferative chondrocytes show less activity than wildtype mice. Cell proliferation assays and immunohistochemistry against the chondrogenic marker Sox9 suggest relatively lower, spatially-restricted, chondrocyte proliferation activity in Nabo. Bone volume and trabecular thickness in Nabo tibiae are also decreased compared to wildtype.
Discussion:
Our data suggest that the Nabo mutation affects endochondral ossification only, with the strongest effects manifesting in more proximal limb structures. The phenotype appears before embryonic stage E14, suggesting that outgrowth and patterning processes may be affected. Nabo mice present a combination of skeletal dysplasia-like characteristics not present in any known skeletal dysplasia. Further genomic and molecular analysis will help to identify the genetic basis and precise developmental pathways involved in this unique skeletal dysplasia.
Insights
The Nabo mutation in mice causes skeletal dysplasia by impacting endochondral ossification, leading to shorter limb bones and altered growth plate development before embryonic stage E14.
Area of Science:
- Skeletal Biology
- Developmental Biology
- Genetics
Background:
- Endochondral ossification is crucial for limb bone development.
- Disruptions in skeletal development can lead to skeletal dysplasias.
- The genetic basis for many skeletal dysplasias remains unknown.
Purpose of the Study:
- Investigate the morphology and development of a novel mouse line with a skeletal dysplasia-like phenotype, termed Nabo.
- Characterize the uncharacterized mutation affecting skeletal development.
Main Methods:
- Utilized micro-computed tomography (µCT) scanning and histology for comprehensive phenotype characterization.
- Determined the developmental stage at which the skeletal phenotype first appears.
- Conducted cell proliferation assays and immunohistochemistry for Sox9 to assess chondrocyte activity.
Main Results:
- Nabo mice exhibit shorter limb elements but unaffected clavicles and skull dermal bones.
- Embryos at E14 show shorter limb cartilage condensations and wider tibial growth plates with reduced chondrocyte proliferation.
- Decreased bone volume and trabecular thickness were observed in Nabo tibiae compared to wildtype.
Conclusions:
- The Nabo mutation specifically affects endochondral ossification, particularly in proximal limb structures.
- The observed phenotype suggests potential impacts on outgrowth and patterning processes prior to E14.
- Nabo mice display a unique skeletal dysplasia-like phenotype, necessitating further genetic and molecular investigation.
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