Massaro Maria Stefania, Kochová Petra, Pálek Richard, Rosendorf Jáchym, Červenková Lenka, Dahmen Uta, Liška Václav, Moulisová Vladimíra
Biomedical Center, Faculty of Medicine in Pilsen, Charles University, Pilsen, Czechia.
New Technologies for Information Society-NTIS, University of West Bohemia, Pilsen, Czechia.
Front Bioeng Biotechnol. 2022 May 16;10:833244. doi: 10.3389/fbioe.2022.833244. eCollection 2022.
The use of biologically derived vessels as small-diameter vascular grafts in vascular diseases is currently intensely studied. Vessel decellularization provides a biocompatible scaffold with very low immunogenicity that avoids immunosuppression after transplantation. Good scaffold preservation is important as it facilitates successful cell repopulation. In addition, mechanical characteristics have to be carefully evaluated when the graft is intended to be used as an artery due to the high pressures the vessel is subjected to. Here, we present a new and fast decellularization protocol for porcine carotid arteries, followed by investigation of the quality of obtained vessel scaffolds in terms of maintenance of important extracellular matrix components, mechanical resistance, and compatibility with human endothelial cells. Our results evidence that our decellularization protocol minimally alters both the presence of scaffold proteins and their mechanical behavior and human endothelial cells could adhere to the scaffold . We conclude that if a suitable protocol is used, a high-quality decellularized arterial scaffold of non-human origin can be promptly obtained, having a great potential to be recellularized and used as an arterial graft in transplantation medicine.
目前,生物衍生血管作为小直径血管移植物在血管疾病中的应用正在深入研究。血管去细胞化提供了一种生物相容性支架,免疫原性极低,可避免移植后的免疫抑制。良好的支架保存很重要,因为它有助于细胞成功重新填充。此外,当移植物打算用作动脉时,由于血管承受的高压,必须仔细评估其机械特性。在此,我们提出了一种用于猪颈动脉的新的快速去细胞化方案,随后从重要细胞外基质成分的维持、机械抗性以及与人内皮细胞的相容性方面对获得的血管支架质量进行研究。我们的结果表明,我们的去细胞化方案对支架蛋白的存在及其机械行为的改变最小,并且人内皮细胞可以粘附在支架上。我们得出结论,如果使用合适的方案,可以迅速获得高质量的非人类来源的去细胞化动脉支架,具有很大的潜力在移植医学中重新细胞化并用作动脉移植物。