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  5. The Influence of Feeder Cell-Derived Extracellular Matrix Density on Thymic Epithelial Cell Culture

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Article
en
2023

The Influence of Feeder Cell-Derived Extracellular Matrix Density on Thymic Epithelial Cell Culture

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0 Files

en
2023
Vol 9 (5)
Vol. 9
DOI: 10.1021/acsbiomaterials.3c00148

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Rui L Reis
Rui L Reis

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Catarina S. Silva
Rute D. Pinto
Ricardo A. Pires
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Abstract

The thymus is responsible for the selection and development of T cells, having an essential role in the establishment of adaptive immunity. Thymic epithelial cells (TECs) are key players in T cell development interacting with thymocytes in the thymic 3D environment. Feeder-layer cells have been frequently used as platforms for the successful establishment of TEC cultures. Nevertheless, the role of the feeder cell-derived extracellular matrix (ECM) on TEC cultures was not previously reported. Therefore, this work aimed at assessing the effect of the ECM produced by feeder cells cultured at two different densities on the establishment of TEC culture. Due to the high surface area and porosity, electrospun fibrous meshes were used to support ECM deposition. The feeder cell-derived ECM was efficiently recovered after decellularization, maintaining the composition of major proteins. All the decellularized matrices were permeable and showed an increase in surface mechanical properties after decellularization. TEC cultures confirmed that the ECM density impacts cellular performance, with higher densities showing a decreased cellular activity. Our findings provide evidence that feeder cell-derived ECM is a suitable substrate for TEC culture and can potentially be applied in thymus bioengineering.

How to cite this publication

Catarina S. Silva, Rute D. Pinto, Ricardo A. Pires, Margarida Correia‐Neves, Rui L Reis, Nuno L. Alves, Albino Martins, Nuno M. Neves (2023). The Influence of Feeder Cell-Derived Extracellular Matrix Density on Thymic Epithelial Cell Culture. , 9(5), DOI: https://doi.org/10.1021/acsbiomaterials.3c00148.

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Publication Details

Type

Article

Year

2023

Authors

8

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/acsbiomaterials.3c00148

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