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Published on: March 29, 2018
Diverse effects of c-src deficiency on molar tooth development and eruption in mice
Atsushi Miyata1, Otto Baba, Tsuyoshi Oda
1Section of Periodontology, Department of Hard Tissue Engineering, Tokyo Medical and Dental University Graduate School, Tokyo, Japan.
Abstract:
C-src deficiency is characterized by osteopetrosis due to impaired bone resorption by hypofunctional osteoclasts and the resultant failure of tooth eruption. In preliminary observations, we frequently encountered erupted molars in c-src deficient mice unlike in other osteopetrotic animals. Here we examine the effects of c-src deficiency on the development of molar teeth with an emphasis on the spatial relation of growing teeth with the surrounding bones. In c-src deficient mice, the magnitude of tooth impaction differed considerably among the types of molars; all maxillary 1st molars were totally impacted deep in the alveolar sockets, whereas most mandibular 1st molars fully erupted into oral cavity. Distribution of osteoclasts in the alveolar bone was identical among all types of molars, and electron microscopy revealed signs of bone resorbing activity in these osteoclasts despite the absence of a ruffled border. From early development, the alveolar space was much narrower in the upper molar tooth germs than in the lower ones in both wild type and homozygous animals, and particularly so in the upper 1st molars. Current observations thus indicate a significant contribution of "hypofunctional osteoclasts" in c-src deficient mice in molar tooth development except for the upper 1st molars, which appear to require highly functional osteoclasts to gain sufficient space for them to grow normally. Taken together, these findings on the seemingly tooth-type specific effects of c-src deficiency on the development and eruption of molar teeth in c-src deficient mice can be attributed to the given differential spatial relation of the respective tooth germs with the surrounding bones in the presence of hypofunctional osteoclasts.
Insights
C-src deficiency impairs osteoclast function, leading to osteopetrosis and tooth impaction. However, c-src deficient mice show varied molar eruption, influenced by tooth type and spatial bone relations.
Area of Science:
- Cell Biology
- Developmental Biology
- Orthodontics
Background:
- C-src deficiency causes osteopetrosis due to impaired osteoclast bone resorption and tooth eruption failure.
- Preliminary observations noted erupted molars in c-src deficient mice, contrasting with other osteopetrotic models.
Purpose of the Study:
- To investigate the impact of c-src deficiency on molar tooth development and eruption.
- To analyze the spatial relationship between developing teeth and surrounding bone in c-src deficient mice.
Main Methods:
- Comparative analysis of molar tooth impaction in c-src deficient mice.
- Histological examination of osteoclast distribution and morphology.
- Electron microscopy to assess osteoclast resorbing activity.
- Evaluation of alveolar bone space during tooth development.
Main Results:
- Tooth impaction severity varied among molar types in c-src deficient mice.
- Maxillary 1st molars were impacted, while mandibular 1st molars erupted.
- Osteoclasts in c-src deficient mice showed resorbing activity without ruffled borders.
- Narrower alveolar spaces were observed in upper molar germs, especially the 1st molars.
Conclusions:
- Hypofunctional osteoclasts in c-src deficiency contribute to molar development, except for upper 1st molars requiring highly functional osteoclasts.
- Differential spatial relationships of tooth germs and surrounding bone explain tooth-type specific effects of c-src deficiency on molar development and eruption.

