Department of Otolaryngology, the Second Affiliated Hospital, Air Force Medical University, Xi'an, China.
Department of Otolaryngology, Shaanxi Provincial People's Hospital, Xi'an, China.
J Biomater Appl. 2021 Apr;35(9):1208-1217. doi: 10.1177/0885328220985662. Epub 2021 Jan 21.
As an excellent xenotransplant, the pig trachea can be decellularized and cryopreserved to reduce its immunogenicity. However, few reports are found on the changes of its mechanical properties after cryopreservation and decellularization.
To evaluate the structure and biomechanical properties in pig tracheal scaffolds resulting from decellularized and cryopreserved.
Twenty-five pig tracheal segments were separated into five groups: untreated (group A), only decellularized (group B), only cryopreserved (group C), decellularized after cryopreserved (group D) and cryopreserved after decellularized (group E). Tracheal segments were subjected to uniaxial tension or compression using a universal testing machine to determine structural biomechanical changes.
It showed that there was no statistically significant difference in the tensile strength of the trachea in each group. The compressive strength of group B, C and D were same as the group A ( > 0.05), while the group E was lower than that of the group A ( < 0.05).Conclusions and significance: The histological examination of the decellularization after cryopreservation shows that the removal of epithelial cells and submucosal cells is more thorough, and the biomechanical structure of the trachea is better preserved. This proved to be a new method to prepare xenotransplantation of trachea graft.
猪气管作为一种优秀的异种移植物,可以经过去细胞和冷冻保存来降低其免疫原性。然而,关于冷冻保存和去细胞化后其机械性能变化的报道却很少。
评估脱细胞和冷冻保存后的猪气管支架的结构和生物力学特性。
将 25 个猪气管段分为五组:未处理组(A 组)、仅去细胞组(B 组)、仅冷冻保存组(C 组)、冷冻保存后去细胞组(D 组)和去细胞后冷冻保存组(E 组)。使用万能试验机对气管段进行单轴拉伸或压缩测试,以确定结构生物力学变化。
结果表明,各组气管的拉伸强度无统计学差异。B、C 和 D 组的压缩强度与 A 组相同(>0.05),而 E 组的压缩强度低于 A 组(<0.05)。
冷冻保存后去细胞的组织学检查表明,上皮细胞和黏膜下细胞的去除更彻底,气管的生物力学结构得到更好的保留。这为制备异种移植气管移植物提供了一种新方法。