Microstructural differences in the osteochondral unit of terrestrial and aquatic mammals

Publication date

2023-11-27

Authors

Mancini, Irina A.D.
Levato, RiccardoORCID 0000-0002-3795-3804
Ksiezarczyk, Marlena M.
Castilho, Miguel
Chen, Michael
van Rijen, Mattie H. P.ISNI 0000000388228984
Ijsseldijk, Lonneke L.
Kik, Marja
van Weeren, P. René
Malda, JosORCID 0000-0002-9241-7676

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Document Type

Article
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Abstract

During evolution, animals have returned from land to water, adapting with morpho-logical modifications to life in an aquatic environment. We compared the osteochondral units of the humeral head of marine and terrestrial mammals across species spanning a wide range of body weights, focusing on microstructural organization and biomechanical performance. Aquatic mammals feature cartilage with essentially random collagen fiber configuration, lacking the depth-dependent, arcade-like organization characteristic of terrestrial mammalian species. They have a less stiff articular cartilage at equilibrium with a significantly lower peak modulus, and at the osteochondral interface do not have a calcified cartilage layer, displaying only a thin, highly porous subchondral bone plate. This totally different constitution of the osteochondral unit in aquatic mammals reflects that accommodation of loading is the primordial function of the osteochondral unit. Recognizing the crucial importance of the microarchitecture-function relationship is pivotal for understanding articular biology and, hence, for the development of durable functional regenerative approaches for treatment of joint damage, which are thus far lacking.

Keywords

General Neuroscience, General Biochemistry,Genetics and Molecular Biology, General Immunology and Microbiology

Citation

Mancini, I A D, Levato, R, Ksiezarczyk, M M, Castilho, M D, Chen, M, van Rijen, M H P, Ijsseldijk, L L, Kik, M, van Weeren, P R & Malda, J 2023, 'Microstructural differences in the osteochondral unit of terrestrial and aquatic mammals', eLife, vol. 12, e80936. https://doi.org/10.7554/eLife.80936