Literature DB >> 23649803

Elastin fibers display a versatile microfibril network in articular cartilage depending on the mechanical microenvironments.

Bo He1, Jian Ping Wu, Hong Hui Chen, Thomas Brett Kirk, Jiake Xu.   

Abstract

Elastin fibers are major extracellular matrix macromolecules that are critical in maintaining the elasticity and resilience of tissues such as blood vessels, lungs and skins. However, the role of elastin in articular cartilage is poorly defined. The present study investigated the organization of elastin fiber in articular cartilage, its relationship to collagen fibers and the architecture of elastin fibers from different mechanical environments by using a kangaroo model. Five morphologies of elastin fibers were identified: Straight fiber, straight fiber with branches, branching fibers directly associated with chondrocyte, wave fiber and fine elastin. The architecture of the elastin network varied significantly with cartilage depth. In the most superficial layer of tibial plateau articular cartilage, dense elastin fibers formed a distinctive cobweb-like meshwork which was parallel to the cartilage surface. In the superficial zone, elastin fibers were well organized in a preferred orientation which was parallel to collagen fibers. In the deep zone, no detectable elastin fiber was found. Moreover, differences in the organization of elastin fibers were also observed between articular cartilage from the tibial plateau, femoral condyle, and distal humerus. This study unravels the detailed microarchitecture of elastin fibers which display a well-organized three-dimensional versatile network in articular cartilage. Our findings imply that elastin fibers may play a crucial role in maintaining the integrity, elasticity, and the mechanical properties of articular cartilage, and that the local mechanical environment affects the architectural development of elastin fibers.
Copyright © 2013 Orthopaedic Research Society.

Entities:  

Keywords:  articular cartilage; collagen fibers; elastin fibers, mechanical environment, kangaroo

Mesh:

Substances:

Year:  2013        PMID: 23649803     DOI: 10.1002/jor.22384

Source DB:  PubMed          Journal:  J Orthop Res        ISSN: 0736-0266            Impact factor:   3.494


  9 in total

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4.  A composite scaffold of Wharton's jelly and chondroitin sulphate loaded with human umbilical cord mesenchymal stem cells repairs articular cartilage defects in rat knee.

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Review 6.  High-resolution measurements of the multilayer ultra-structure of articular cartilage and their translational potential.

Authors:  Bo He; Jian Ping Wu; Thomas Brett Kirk; John A Carrino; Chuan Xiang; Jiake Xu
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7.  Stratification of knee osteoarthritis: two major patient subgroups identified by genome-wide expression analysis of articular cartilage.

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Review 8.  Protein and Polysaccharide-Based Magnetic Composite Materials for Medical Applications.

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Review 9.  Aggrecan, the Primary Weight-Bearing Cartilage Proteoglycan, Has Context-Dependent, Cell-Directive Properties in Embryonic Development and Neurogenesis: Aggrecan Glycan Side Chain Modifications Convey Interactive Biodiversity.

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  9 in total

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