Wang Tun, Liao Sheng, Lu Peng, He Zhenyu, Cheng Siyuan, Wang Tianjian, Cheng Zibo, An Yangyang, Wang Mo, Shu Chang
Department of Vascular Surgery, The Second Xiangya Hospital, Central South University, Changsha, 410011, China.
Institute of Vascular Diseases, Central South University, Changsha, 410011, China.
Mater Today Bio. 2024 Dec 12;30:101402. doi: 10.1016/j.mtbio.2024.101402. eCollection 2025 Feb.
Decellularized tissue-engineered vascular grafts (dTEVGs) exhibit superior biocompatibility, anti-infection properties and repair potential, contributing to better patency and making them a more ideal choice for arteriovenous grafts (AVGs) in hemodialysis compared to chemically synthesized grafts. However, the unsatisfactory reendothelialization and smooth muscle remodeling of current dTEVGs limit their advantages. In this study, we investigated the use of elastase to improve the porosity of elastic fiber layers in dTEVGs, aiming to promote cell infiltration and achieve superior reendothelialization and smooth muscle remodeling. Our findings revealed that elastase treatment induced scattered cracks and holes in the elastic fiber layers of dTEVGs. Porous dTEVGs demonstrated increased cell infiltration in rat subcutaneous tissue. In the rat AVG models, mildly elastase-treated dTEVGs significantly improved cell infiltration and graft remodeling, including adequate smooth muscle cell (SMC) repopulation, impressive reendothelization and regeneration of the extracellular matrix, without stenosis, dilation or disintegration of the grafts. This study demonstrates that porous dTEVGs promote reendothelization, smooth muscle remodeling and extracellular matrix regeneration while retaining a stable graft structure, enhancing durability and puncture resistance in hemodialysis.
去细胞化组织工程血管移植物(dTEVGs)具有卓越的生物相容性、抗感染特性和修复潜力,与化学合成移植物相比,有助于实现更好的通畅性,使其成为血液透析中动静脉移植物(AVGs)更理想的选择。然而,目前dTEVGs的内皮化和平滑肌重塑效果不尽人意,限制了它们的优势。在本研究中,我们研究了使用弹性蛋白酶来改善dTEVGs中弹性纤维层的孔隙率,旨在促进细胞浸润并实现卓越的内皮化和平滑肌重塑。我们的研究结果表明,弹性蛋白酶处理在dTEVGs的弹性纤维层中诱导了分散的裂缝和孔洞。多孔dTEVGs在大鼠皮下组织中显示出细胞浸润增加。在大鼠AVG模型中,轻度弹性蛋白酶处理的dTEVGs显著改善了细胞浸润和移植物重塑,包括充足的平滑肌细胞(SMC)重新填充、令人印象深刻的内皮化和细胞外基质再生,且移植物无狭窄、扩张或崩解。本研究表明,多孔dTEVGs在保持稳定移植物结构的同时促进内皮化、平滑肌重塑和细胞外基质再生,增强了血液透析中的耐用性和抗穿刺性。