Developmentally Inspired, Mechanical-Metabolic Dual Gradient Osteochondral Constructs Bridging Regeneration and Therapeutic Screening

  • Choi, Yurim
  • Jang, Wonjun
  • Kang, Raehui
  • Batjargal, Ulziituya
  • Song, Jihyeon
  • ... Kim, Junhyung
  • 외 6명
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초록

The osteochondral interface is a finely tuned junction between cartilage and bone, coordinated by gradients in mechanics and metabolism. Recreating this complexity in vitro has remained elusive. Here, we present a developmentally inspired, dual-gradient 3D-printed construct that unites native-like stiffness and metabolic microenvironments to drive spatially resolved regeneration and model osteoarthritis in a phase-specific manner. Human bone marrow-derived mesenchymal stem cell spheroids are placed in soft, hypoxic niches to promote chondrogenesis, and in stiff, vascular-rich regions to induce osteogenesis-preserving cartilage-bone crosstalk within one platform. This integration of gradients amplifies extracellular matrix formation beyond single-cue designs through the synergistic effect of porosity and stiffness. Furthermore, its anisotropic architecture maintains cartilage-bone crosstalk and allows drug response assessment, highlighting its potential as a physiologically relevant platform for osteoarthritis modeling and therapy screening. By bridging functional regeneration with preclinical drug screening, this model offers a physiologically relevant translational platform for advancing both osteochondral repair and disease research.

키워드

3D bioprintingdrug screeningdual gradientsmechanotransductionmesenchymal stem cellsosteoarthritisosteochondral interfaceMESENCHYMAL STROMAL CELLSOSTEOGENIC DIFFERENTIATIONSTEM-CELLSTISSUEANGIOGENESISEXPRESSIONOSTEOARTHRITISINHIBITORCARTILAGEHYPOXIA
제목
Developmentally Inspired, Mechanical-Metabolic Dual Gradient Osteochondral Constructs Bridging Regeneration and Therapeutic Screening
저자
Choi, YurimJang, WonjunKang, RaehuiBatjargal, UlziituyaSong, JihyeonPark, SoojinKim, MinseokCho, HyobumKim, JunhyungZhang, Yu ShrikeKim, Han-JunLee, Junmin
DOI
10.1002/advs.202516602
발행일
2026-04
유형
Article
저널명
Advanced Science
13
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