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Bioceramic-mediated chondrocyte hypertrophy promotes calcified cartilage formation for rabbit osteochondral defect repair. | LitMetric

AI Article Synopsis

  • Osteochondral tissue is made up of articular cartilage and subchondral bone, with a unique interface; researchers are creating multilayered scaffolds to help repair defects in this tissue.
  • The study developed a bilayer graft using RGD-modified chondroitin sulfate cryogel to support the growth of hyaline and hypertrophic cartilage, incorporating whitlockite to enhance chondrocyte maturation.
  • Results showed that the bilayer graft improved cartilage regeneration and integration compared to a single-layer graft, highlighting its potential for effective osteochondral defect repair in a rabbit model.

Article Abstract

Osteochondral tissue is a highly specialized and complex tissue composed of articular cartilage and subchondral bone that are separated by a calcified cartilage interface. Multilayered or gradient scaffolds, often in conjunction with stem cells and growth factors, have been developed to mimic the respective layers for osteochondral defect repair. In this study, we designed a hyaline cartilage-hypertrophic cartilage bilayer graft (RGD/RGDW) with chondrocytes. Previously, we demonstrated that RGD peptide-modified chondroitin sulfate cryogel (RGD group) is chondro-conductive and capable of hyaline cartilage formation. Here, we incorporated whitlockite (WH), a Mg-containing calcium phosphate, into RGD cryogel (RGDW group) to induce chondrocyte hypertrophy and form collagen X-rich hypertrophic cartilage. This is the first study to use WH to produce hypertrophic cartilage. Chondrocytes-laden RGDW cryogel exhibited significantly upregulated expression of hypertrophy markers and formed ectopic hypertrophic cartilage , which mineralized into calcified cartilage in bone microenvironment. Subsequently, RGD cryogel and RGDW cryogel were combined into bilayer (RGD/RGDW group) and implanted into rabbit osteochondral defect, where RGD layer supports hyaline cartilage regeneration and bioceramic-containing RGDW layer promotes calcified cartilage formation. While the RGD group (monolayer) formed hyaline-like neotissue that extends into the subchondral bone, the RGD/RGDW group (bilayer) regenerated hyaline cartilage tissue confined to its respective layer and promoted osseointegration for integrative defect repair.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11228467PMC
http://dx.doi.org/10.1016/j.bioactmat.2024.06.018DOI Listing

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