Chondrichthyan cartilage: new discoveries in morphology and the composition of the extracellular matrix

Many chondrichthyans, or cartilaginous fishes with skeletons made entirely of cartilage and known for their regenerative abilities, inhabit high-hydrostatic-pressure environments. We hypothesise that basic research on chondrichthyan cartilage will fill knowledge gaps currently holding back progress in cartilage tissue engineering. Here, we qualitatively and quantitatively characterise the cellular and extracellular matrix of native cartilage in two species of chondrichthyans (a shark and a ray) using immunohistochemical markers (collagen-I, collagen-II, Ki67, elastin, Sox9, Gata1, Lyve-1, α-SMA and vWF), histological staining (Haematoxylin and Eosin, Safranin O, Masson’s Trichome and Picrosirius Red) and scanning electron microscopy. We reveal a network of canals akin to vascular capillaries, which may act as chondrogenic and hematopoietic centres mediating growth and regeneration. The implications of the existence of specialised capillaries within hyaline cartilage are far-reaching, and uncovering their specific roles may fill knowledge gaps about the mechanisms underlying adult chondrogenesis.

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Publication Details

Journal
Communications Biology
Published
2026-09-16
DOI
https://doi.org/10.1038/s42003-026-10855-z
Primary Topic
Ichthyology and Marine Biology
Type
article
Field-Weighted Citation Impact
0.00

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article

Chondrichthyan cartilage: new discoveries in morphology and the composition of the extracellular matrix

Flávia Medeiros Savi, Dietmar W. Hutmacher, Shaun P. Collin, Travis J. Klein et al.
Communications Biology
Ichthyology and Marine Biology
article

Chondrichthyan cartilage: new discoveries in morphology and the composition of the extracellular matrix

Flávia Medeiros Savi, Dietmar W. Hutmacher, Shaun P. Collin, Travis J. Klein, Gonçalo Costa
article en

Abstract

Many chondrichthyans, or cartilaginous fishes with skeletons made entirely of cartilage and known for their regenerative abilities, inhabit high-hydrostatic-pressure environments. We hypothesise that basic research on chondrichthyan cartilage will fill knowledge gaps currently holding back progress in cartilage tissue engineering. Here, we qualitatively and quantitatively characterise the cellular and extracellular matrix of native cartilage in two species of chondrichthyans (a shark and a ray) using immunohistochemical markers (collagen-I, collagen-II, Ki67, elastin, Sox9, Gata1, Lyve-1, α-SMA and vWF), histological staining (Haematoxylin and Eosin, Safranin O, Masson’s Trichome and Picrosirius Red) and scanning electron microscopy. We reveal a network of canals akin to vascular capillaries, which may act as chondrogenic and hematopoietic centres mediating growth and regeneration. The implications of the existence of specialised capillaries within hyaline cartilage are far-reaching, and uncovering their specific roles may fill knowledge gaps about the mechanisms underlying adult chondrogenesis.

Communications Biology
Queensland University of Technology (AU), La Trobe University (AU)
Queensland University of Technology, National Institutes of Health
Life below water
Openalex Percentile: Top 8%
Ichthyology and Marine Biology
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