Abstract

BackgroundAmelogenin is required for normal enamel formation and is the most abundant protein in developing enamel.Methods Amelx +/+, Amelx +/−, and Amelx −/− molars and incisors from C57BL/6 mice were characterized using RT‐PCR, Western blotting, dissecting and light microscopy, immunohistochemistry (IHC), transmission electron microscopy (TEM), scanning electron microscopy (SEM), backscattered SEM (bSEM), nanohardness testing, and X‐ray diffraction.ResultsNo amelogenin protein was detected by Western blot analyses of enamel extracts from Amelx −/− mice. Amelx −/− incisor enamel averaged 20.3 ± 3.3 μm in thickness, or only 1/6th that of the wild type (122.3 ± 7.9 μm). Amelx −/− incisor enamel nanohardness was 1.6 Gpa, less than half that of wild‐type enamel (3.6 Gpa). Amelx +/− incisors and molars showed vertical banding patterns unique to each tooth. IHC detected no amelogenin in Amelx −/− enamel and varied levels of amelogenin in Amelx +/− incisors, which correlated positively with enamel thickness, strongly supporting lyonization as the cause of the variations in enamel thickness. TEM analyses showed characteristic mineral ribbons in Amelx +/+ and Amelx −/− enamel extending from mineralized dentin collagen to the ameloblast. The Amelx −/− enamel ribbons were not well separated by matrix and appeared to fuse together, forming plates. X‐ray diffraction determined that the predominant mineral in Amelx −/− enamel is octacalcium phosphate (not calcium hydroxyapatite). Amelx −/− ameloblasts were similar to wild‐type ameloblasts except no Tomes’ processes extended into the thin enamel. Amelx −/− and Amelx +/− molars both showed calcified nodules on their occlusal surfaces. Histology of D5 and D11 developing molars showed nodules forming during the maturation stage.ConclusionAmelogenin forms a resorbable matrix that separates and supports, but does not shape early secretory‐stage enamel ribbons. Amelogenin may facilitate the conversion of enamel ribbons into hydroxyapatite by inhibiting the formation of octacalcium phosphate. Amelogenin is necessary for thickening the enamel layer, which helps maintain ribbon organization and development and maintenance of the Tomes’ process.

Highlights

  • 1. Kim J-W, Simmer JP, Hu YY, Lin BP-L, Boyd C, Wright JT, et al Amelogenin p.M1T and p.W4S mutations underlying hypoplastic X-linked amelogenesis imperfecta

  • No amelogenin protein was detected in the enamel organ epithelia or enamel matrix of D5 first molars in Amelx-/- mice

  • Backscatter electron microscopy images of the 5 Amelx+/mandibular incisor cross-sections used for nanohardness testing and the hardness (Gpa) at each indent site

Read more

Summary

Introduction

1. Kim J-W, Simmer JP, Hu YY, Lin BP-L, Boyd C, Wright JT, et al Amelogenin p.M1T and p.W4S mutations underlying hypoplastic X-linked amelogenesis imperfecta. DNA diagnosis of X-linked amelogenesis imperfecta using PCR detection method of the human amelogenin gene.

Results
Conclusion
Full Text
Paper version not known

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call

Disclaimer: All third-party content on this website/platform is and will remain the property of their respective owners and is provided on "as is" basis without any warranties, express or implied. Use of third-party content does not indicate any affiliation, sponsorship with or endorsement by them. Any references to third-party content is to identify the corresponding services and shall be considered fair use under The CopyrightLaw.