Human adult, pediatric and microtia auricular cartilage harbor fibronectin-adhering progenitor cells with regenerative ear reconstruction potential

Publication date

2022-09-16

Authors

Otto, Iris A.
Bernal, Paulina NunezORCID 0000-0002-0875-5438
Rikkers, Margot
Rijen, Mattie H.P. van
Mensinga, AnneloesISNI 0000000393806208
Kon, Moshe
Breugem, Corstiaan C.
Levato, R.ISNI 0000000492906546
Malda, JosORCID 0000-0002-9241-7676ISNI 0000000388144393

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Advisors

Supervisors

Document Type

Article
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License

cc_by_nc_nd

Abstract

Remaining challenges in auricular cartilage tissue engineering include acquiring sufficient amounts of regeneration-competent cells and subsequent production of high-quality neocartilage. Progenitor cells are a resident subpopulation of native cartilage, displaying a high proliferative and cartilage-forming capacity, yet their potential for regenerative medicine is vastly understudied. In this study, human auricular cartilage progenitor cells were newly identified in healthy cartilage and, importantly, in microtia-impaired chondral remnants. Their cartilage repair potential was assessed via in vitro 3D culture upon encapsulation in a gelatin-based hydrogel, and subsequent biochemical, mechanical, and histological analyses. Auricular cartilage progenitor cells demonstrate a potent ability to proliferate without losing their multipotent differentiation ability and to produce cartilage-like matrix in 3D culture. As these cells can be easily obtained through a non-deforming biopsy of the healthy ear or from the otherwise redundant microtia remnant, they can provide an important solution for long-existing challenges in auricular cartilage tissue engineering.

Keywords

Bioengineering, Health sciences, Tissue engineering, General, SDG 3 - Good Health and Well-being

Citation

Otto, I A, Bernal, P N, Rikkers, M, Rijen, M H P V, Mensinga, A, Kon, M, Breugem, C C, Levato, R & Malda, J 2022, 'Human adult, pediatric and microtia auricular cartilage harbor fibronectin-adhering progenitor cells with regenerative ear reconstruction potential', iScience, vol. 25, no. 9, 104979, pp. 1-20. https://doi.org/10.1016/j.isci.2022.104979