Evaluation of Structural Viability of Porcine Tracheal Scaffolds after 3 and 6 Months of Storage under Three Different Protocols

Author:

Guimaraes Alberto Bruning1,Correia Aristides Tadeu1,da Silva Ronaldo Soares1,dos Santos Elizabete Silva1,de Souza Xavier Costa Natalia2ORCID,Dolhnikoff Marisa2ORCID,Maizato Marina3ORCID,Cestari Idagene Aparecida3,Pego-Fernandes Paulo Manuel1,Guerreiro Cardoso Paulo Francisco1

Affiliation:

1. Organ and Tissue Laboratory, LIM 61, Division of Thoracic Surgery, Instituto do Coracao do Hospital das Clinicas HCFMUSP, Faculdade de Medicina da Universidade de Sao Paulo, Sao Paulo 05403-904, Brazil

2. Laboratorio de Poluicao Atmosferica Experimental (LIM05), Departamento de Patologia, Faculdade de Medicina FMUSP, Universidade de Sao Paulo, Sao Paulo 01246-000, Brazil

3. Bioengenharia, Instituto do Coração do Hospital das Clinicas HCFMUSP, Faculdade de Medicina da Universidade de Sao Paulo, Sao Paulo 05403-904, Brazil

Abstract

Tracheal replacement with a bioengineered tracheal substitute has been developed for long-segment tracheal diseases. The decellularized tracheal scaffold is an alternative for cell seeding. It is not defined if the storage scaffold produces changes in the scaffold’s biomechanical properties. We tested three protocols for porcine tracheal scaffold preservation immersed in PBS and alcohol 70%, in the fridge and under cryopreservation. Ninety-six porcine tracheas (12 in natura, 84 decellularized) were divided into three groups (PBS, alcohol, and cryopreservation). Twelve tracheas were analyzed after three and six months. The assessment included residual DNA, cytotoxicity, collagen contents, and mechanical properties. Decellularization increased the maximum load and stress in the longitudinal axis and decreased the maximum load in the transverse axis. The decellularization of the porcine trachea produced structurally viable scaffolds, with a preserved collagen matrix suitable for further bioengineering. Despite the cyclic washings, the scaffolds remained cytotoxic. The comparison of the storage protocols (PBS at 4 °C, alcohol at 4 °C, and slow cooling cryopreservation with cryoprotectants) showed no significant differences in the amount of collagen and in the biomechanical properties of the scaffolds. Storage in PBS solution at 4 °C for six months did not change the scaffold mechanics.

Publisher

MDPI AG

Subject

Bioengineering

Reference42 articles.

1. Tracheal replacement: A critical review;Grillo;Ann. Thorac. Surg.,2002

2. Tracheal replacement;Etienne;Eur. Respir. J.,2018

3. Advances in tracheal reconstruction;Haykal;Plast. Reconstr. Surg. Glob. Open.,2014

4. An introduction to starting a biobank;Harati;Methods Mol. Biol.,2019

5. Aspects of modern biobank activity—comprehensive review;Paskal;Pathol. Oncol. Res.,2018

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