Literature DB >> 24063947

The plastic nature of the human bone-periodontal ligament-tooth fibrous joint.

Sunita P Ho1, Michael P Kurylo, Kathryn Grandfield, Jonathan Hurng, Ralf-Peter Herber, Mark I Ryder, Virginia Altoe, Shaul Aloni, Jian Q Feng, Samuel Webb, Grayson W Marshall, Donald Curtis, Joy C Andrews, Piero Pianetta.   

Abstract

This study investigates bony protrusions within a narrowed periodontal ligament space (PDL-space) of a human bone-PDL-tooth fibrous joint by mapping structural, biochemical, and mechanical heterogeneity. Higher resolution structural characterization was achieved via complementary atomic force microscopy (AFM), nano-transmission X-ray microscopy (nano-TXM), and microtomography (MicroXCT™). Structural heterogeneity was correlated to biochemical and elemental composition, illustrated via histochemistry and microprobe X-ray fluorescence analysis (μ-XRF), and mechanical heterogeneity evaluated by AFM-based nanoindentation. Results demonstrated that the narrowed PDL-space was due to invasion of bundle bone (BB) into PDL-space. Protruded BB had a wider range with higher elastic modulus values (2-8GPa) compared to lamellar bone (0.8-6GPa), and increased quantities of Ca, P and Zn as revealed by μ-XRF. Interestingly, the hygroscopic 10-30μm interface between protruded BB and lamellar bone exhibited higher X-ray attenuation similar to cement lines and lamellae within bone. Localization of the small leucine rich proteoglycan biglycan (BGN) responsible for mineralization was observed at the PDL-bone interface and around the osteocyte lacunae. Based on these results, it can be argued that the LB-BB interface was the original site of PDL attachment, and that the genesis of protruded BB identified as protrusions occurred as a result of shift in strain. We emphasize the importance of bony protrusions within the context of organ function and that additional study is warranted.
© 2013. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Alveolar bone; Bone functional adaptation; Bone–PDL–tooth fibrous joint; Bundle bone; Discontinuities; Periodontal ligament

Mesh:

Substances:

Year:  2013        PMID: 24063947      PMCID: PMC3938967          DOI: 10.1016/j.bone.2013.09.007

Source DB:  PubMed          Journal:  Bone        ISSN: 1873-2763            Impact factor:   4.398


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  16 in total

1.  Multiscale biomechanical responses of adapted bone-periodontal ligament-tooth fibrous joints.

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7.  The effect of aging on the nanostructure of murine alveolar bone and dentin.

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8.  Effect of proteoglycans at interfaces as related to location, architecture, and mechanical cues.

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9.  Mechanoadaptive strain and functional osseointegration of dental implants in rats.

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