Hydrogels are biomaterials that, thanks to their unique hydrophilic and biomimetic characteristics, are used to support cell growth and attachment and promote tissue regeneration. The use of decellularized extracellular matrix (dECM) from different tissues or organs significantly demonstrated to be far superior to other types of hydrogel since it recapitulates the native tissue’s ECM composition and bioactivity. Different muscle injuries and malformations require the application of patches or fillers to replenish the defect and boost tissue regeneration. Herein, we develop, produce, and characterize a porcine diaphragmatic dECM-derived hydrogel for diaphragmatic applications. We obtain a tissue-specific biomaterial able to mimic the complex structure of skeletal muscle ECM; we characterize hydrogel properties in terms of biomechanical properties, biocompatibility, and adaptability for in vivo applications. Lastly, we demonstrate that dECM-derived hydrogel obtained from porcine diaphragms can represent a useful biological product for diaphragmatic muscle defect repair when used as relevant acellular stand-alone patch.

Boso, D., Carraro, E., Maghin, E., Todros, S., Dedja, A., Giomo, M., et al. (2021). Porcine decellularized diaphragm hydrogel: a new option for skeletal muscle malformations. BIOMEDICINES, 9(7) [10.3390/biomedicines9070709].

Porcine decellularized diaphragm hydrogel: a new option for skeletal muscle malformations

De Coppi, Paolo;
2021-01-01

Abstract

Hydrogels are biomaterials that, thanks to their unique hydrophilic and biomimetic characteristics, are used to support cell growth and attachment and promote tissue regeneration. The use of decellularized extracellular matrix (dECM) from different tissues or organs significantly demonstrated to be far superior to other types of hydrogel since it recapitulates the native tissue’s ECM composition and bioactivity. Different muscle injuries and malformations require the application of patches or fillers to replenish the defect and boost tissue regeneration. Herein, we develop, produce, and characterize a porcine diaphragmatic dECM-derived hydrogel for diaphragmatic applications. We obtain a tissue-specific biomaterial able to mimic the complex structure of skeletal muscle ECM; we characterize hydrogel properties in terms of biomechanical properties, biocompatibility, and adaptability for in vivo applications. Lastly, we demonstrate that dECM-derived hydrogel obtained from porcine diaphragms can represent a useful biological product for diaphragmatic muscle defect repair when used as relevant acellular stand-alone patch.
2021
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore MEDS-20/A - Pediatria generale e specialistica
English
diaphragmatic hernia
extracellular matrix
hydrogel
skeletal muscle
tissue engineering
Boso, D., Carraro, E., Maghin, E., Todros, S., Dedja, A., Giomo, M., et al. (2021). Porcine decellularized diaphragm hydrogel: a new option for skeletal muscle malformations. BIOMEDICINES, 9(7) [10.3390/biomedicines9070709].
Boso, D; Carraro, E; Maghin, E; Todros, S; Dedja, A; Giomo, M; Elvassore, N; De Coppi, P; Pavan, Pg; Piccoli, M
Articolo su rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/417516
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