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A Comprehensive Comparison of Bovine and Porcine Decellularized Pericardia: New Insights for Surgical Applications

Authors :
Dario Gregori
Andrea Filippi
Luca Vedovelli
Eleonora Dal Sasso
Massimo Marchesan
Filippo Romanato
Gino Gerosa
Giorgio De Rossi
Sotirios Korossis
Willem F. Wolkers
Giulia Borile
Sugat Ratna Tuladhar
Andrea Bagno
Sabra Zouhair
Cátia Fidalgo
Laura Iop
Source :
Biomolecules, Biomolecules, Vol 10, Iss 3, p 371 (2020), Volume 10, Issue 3
Publication Year :
2020

Abstract

Xenogeneic pericardium-based substitutes are employed for several surgical indications after chemical shielding, limiting their biocompatibility and therapeutic durability. Adverse responses to these replacements might be prevented by tissue decellularization, ideally removing cells and preserving the original extracellular matrix (ECM). The aim of this study was to compare the mostly applied pericardia in clinics, i.e. bovine and porcine tissues, after their decellularization, and obtain new insights for their possible surgical use. Bovine and porcine pericardia were submitted to TRICOL decellularization, based on osmotic shock, detergents and nuclease treatment. TRICOL procedure resulted in being effective in cell removal and preservation of ECM architecture of both species&rsquo<br />scaffolds. Collagen and elastin were retained but glycosaminoglycans were reduced, significantly for bovine scaffolds. Tissue hydration was varied by decellularization, with a rise for bovine pericardia and a decrease for porcine ones. TRICOL significantly increased porcine pericardial thickness, while a non-significant reduction was observed for the bovine counterpart. The protein secondary structure and thermal denaturation profile of both species&rsquo<br />scaffolds were unaltered. Both pericardial tissues showed augmented biomechanical compliance after decellularization. The ECM bioactivity of bovine and porcine pericardia was unaffected by decellularization, sustaining viability and proliferation of human mesenchymal stem cells and endothelial cells. In conclusion, decellularized bovine and porcine pericardia demonstrate possessing the characteristics that are suitable for the creation of novel scaffolds for reconstruction or replacement: differences in water content, thickness and glycosaminoglycans might influence some of their biomechanical properties and, hence, their indication for surgical use.

Details

ISSN :
2218273X
Volume :
10
Issue :
3
Database :
OpenAIRE
Journal :
Biomolecules
Accession number :
edsair.doi.dedup.....9316a604daf73d3e97986449092d15b6