Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", Politecnico di Milano, Milan, Italy.
Biomed Res Int. 2013;2013:918753. doi: 10.1155/2013/918753. Epub 2013 Jun 20.
Small caliber vessels substitutes still remain an unmet clinical need; few autologous substitutes are available, while synthetic grafts show insufficient patency in the long term. Decellularization is the complete removal of all cellular and nuclear matters from a tissue while leaving a preserved extracellular matrix representing a promising tool for the generation of acellular scaffolds for tissue engineering, already used for various tissues with positive outcomes. The aim of this work is to investigate the effect of a detergent-enzymatic decellularization protocol on swine arteries in terms of cell removal, extracellular matrix preservation, and mechanical properties. Furthermore, the effect of storage at -80°C on the mechanical properties of the tissue is evaluated. Swine arteries were harvested, frozen, and decellularized; histological analysis revealed complete cell removal and preserved extracellular matrix. Furthermore, the residual DNA content in decellularized tissues was far low compared to native one. Mechanical testings were performed on native, defrozen, and decellularized tissues; no statistically significant differences were reported for Young's modulus, ultimate stress, compliance, burst pressure, and suture retention strength, while ultimate strain and stress relaxation of decellularized vessels were significantly different from the native ones. Considering the overall results, the process was confirmed to be suitable for the generation of acellular scaffolds for vascular tissue engineering.
小口径血管替代品仍然是未满足的临床需求;可用的自体替代品很少,而合成移植物在长期内显示出不足的通畅性。脱细胞化是指从组织中完全去除所有细胞和核物质,同时保留保留的细胞外基质,这是用于组织工程的无细胞支架生成的有前途的工具,已经用于各种组织并取得了积极的结果。本研究旨在研究去污剂-酶法脱细胞化方案对猪动脉在细胞去除、细胞外基质保留和机械性能方面的影响。此外,还评估了 -80°C 储存对组织机械性能的影响。采集、冷冻和脱细胞化猪动脉;组织学分析显示完全去除细胞和保留细胞外基质。此外,与天然组织相比,脱细胞组织中的残留 DNA 含量要低得多。对天然、解冻和脱细胞化组织进行了机械测试;杨氏模量、极限应力、顺应性、爆裂压力和缝线保持强度均无统计学差异,而脱细胞化血管的极限应变和应力松弛与天然组织有显著差异。考虑到整体结果,该过程被证实适用于用于血管组织工程的无细胞支架的生成。