PEER-REVIEWED PUBLICATION

2026

Cellularized Thermoformed Scaffolds with Human Septal Chondrocytes Support In Vivo Cartilage Maturation for Auricular Reconstruction

A tensile test divider icon

Muiรฑos-Lรณpez E, Arroyo I, et al.

Journal of Functional Biomaterials

Clรญnica Universidad de Navarra, Instituto de Investigaciรณn Sanitaria de Navarra, Cima Universidad de Navarra, Leartiker S. Coop.

RESEARCH SUMMARY
This study developed a tissue-engineered auricular cartilage platform combining a 3D-printed and thermoformed poly(lactide-b-ethylene glycol) scaffold with clinical-grade alginate and human nasal septal chondrocytes. Initial in vitro experiments compared nasal septum and costal cartilage chondrocytes and found that both maintained high viability after encapsulation, but nasal septal chondrocytes showed greater extracellular matrix deposition and were selected for subsequent studies. Simplified 1 x 1 cm cellularized PLA-PEG/alginate constructs and full ear-shaped thermoformed constructs were then implanted subcutaneously in immunodeficient mice. After 12 weeks, cellularized constructs showed cartilage-like extracellular matrix formation, glycosaminoglycan deposition, collagen type II expression, limited collagen type X expression, and human Ku80 staining demonstrating that newly formed cartilage was predominantly produced by the implanted human cells. Transcriptomic analysis of the ear-shaped constructs showed strong upregulation of cartilage matrix and maturation genes including COL2A1, ACAN, PRG4, COMP, MATN4, and ELN, together with activation of extracellular matrix organization and chondrogenic pathways. UniVert compression measurements showed that cellularization and subsequent tissue formation changed the mechanical response of the simplified constructs, particularly at higher deformation, with cellularized constructs exhibiting lower Young’s modulus and a more sustained, tissue-like mechanical response compared with acellular controls. Although the constructs showed robust cartilage maturation, some fine auricular anatomical detail was lost as alginate degraded. Overall, the study demonstrates the potential of human nasal septal chondrocytes combined with PLA-PEG and alginate scaffolds for clinically relevant engineered auricular cartilage reconstruction.
CellScale hexagons, without text

CELLSCALE INSTRUMENT USED

UniVert

A CellScale UniVert was used to mechanically characterize simplified 1 x 1 cm PLA-PEG/alginate scaffolds after in vivo implantation. The paper identifies the instrument as a UniVert CellScale tensile test machine, but it was operated in compression using 30 mm diameter stainless steel plates and a 200 N load cell with ยฑ0.5% accuracy. Samples were manually preloaded to 1 N and compressed at a deformation rate of 25% per minute until reaching 50% deformation. Throughout testing, constructs were maintained in DMEM cell culture medium at 37 ยฐC to simulate physiological conditions. The mechanical analysis compared acellular PLA-PEG/alginate controls with human nasal chondrocyte-laden constructs matured in vivo, and supplementary experiments also assessed the contribution of alginate to the PLA-PEG scaffold response. At low deformation of approximately 5-10%, the authors concluded that load was primarily supported by the alginate hydrogel, whereas at higher deformation of approximately 20-30%, the PLA-PEG framework increasingly carried the load. After 12 weeks in vivo, cell-laden constructs exhibited a lower Young’s modulus and a more sustained mechanical response than empty scaffolds, particularly at higher deformation. These UniVert results supported the conclusion that deposition of new cartilage extracellular matrix improved the biomechanical behaviour of the engineered tissue during in vivo maturation.
AUTHORS

Emma Muiรฑos-Lรณpez, Iรฑigo Arroyo, Olatz Guaresti, Uzuri Urtaza, Arantza Barco-Martรญn, Asier Ullate-Agote, Tania Lรณpez-Martรญnez, Ane M. Zaldua, Manuel M. Mazo, Froilรกn Granero-Moltรณ, Bernardo Hontanilla.

PUBLICATION DETAILS
JOURNAL

Journal of Functional Biomaterials

YEAR

2026

INSTITUTIONS

Clรญnica Universidad de Navarra, Instituto de Investigaciรณn Sanitaria de Navarra, Cima Universidad de Navarra, Leartiker S. Coop.

COUNTRIES

Spain

INSTRUMENT USED

UniVert

TESTING METHODS

Compression TestingHydrated and Temperature Controlled Testing

RESEARCH APPLICATIONS

Cartilage and Meniscus MechanicsCell Laden HydrogelsScaffold Mechanical Testing

Related Publications:

Instrument Used:
Year:
Testing Method:
Research Application:
Country:

Contact Sales

Product of Interest:
CellScale hexagon shapes