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一种创新的无戊二醛制备策略对牛心包进行心脏替代物的血液相容性调节,该策略采用核黄素/紫外线交联和电子辐照。

Hemocompatibility tuning of an innovative glutaraldehyde-free preparation strategy using riboflavin/UV crosslinking and electron irradiation of bovine pericardium for cardiac substitutes.

作者信息

Dittfeld Claudia, Welzel Cindy, König Ulla, Jannasch Anett, Alexiou Konstantin, Blum Ekaterina, Bronder Saskia, Sperling Claudia, Maitz Manfred F, Tugtekin Sems-Malte

机构信息

Department of Cardiac Surgery, Carl Gustav Carus Faculty of Medicine, Technische Universität Dresden, Heart Centre Dresden, Germany.

Department of Cardiac Surgery, Carl Gustav Carus Faculty of Medicine, Technische Universität Dresden, Heart Centre Dresden, Germany.

出版信息

Biomater Adv. 2023 Apr;147:213328. doi: 10.1016/j.bioadv.2023.213328. Epub 2023 Feb 4.

DOI:10.1016/j.bioadv.2023.213328
PMID:36764200
Abstract

Hemocompatibility tuning was adopted to explore and refine an innovative, GA-free preparation strategy combining decellularization, riboflavin/UV crosslinking, and low-energy electron irradiation (SULEEI) procedure. A SULEEI-protocol was established to avoid GA-dependent deterioration that results in insufficient long-term aortic valve bioprosthesis durability. Final SULEEI-pericardium, intermediate steps and GA-fixed reference pericardium were exposed in vitro to fresh human whole blood to elucidate effects of preparation parameters on coagulation and inflammation activation and tissue histology. The riboflavin/UV crosslinking step showed to be less efficient in inactivating extracellular matrix (ECM) protein activity than the GA fixation, leading to tissue-factor mediated blood clotting. Intensifying the riboflavin/UV crosslinking with elevated riboflavin concentration and dextran caused an enhanced activation of the complement system. Yet activation processes induced by the previous protocol steps were quenched with the final electron beam treatment step. An optimized SULEEI protocol was developed using an intense and extended, trypsin-containing decellularization step to inactivate tissue factor and a dextran-free, low riboflavin, high UV crosslinking step. The innovative and improved GA-free SULEEI-preparation protocol results in low coagulant and low inflammatory bovine pericardium for surgical application.

摘要

采用血液相容性调节方法来探索和完善一种创新的、无戊二醛的制备策略,该策略结合了脱细胞、核黄素/紫外线交联和低能电子辐照(SULEEI)程序。建立了一种SULEEI方案,以避免依赖戊二醛导致的降解,这种降解会导致主动脉瓣生物假体长期耐久性不足。将最终的SULEEI心包、中间步骤以及经戊二醛固定的参考心包在体外暴露于新鲜人全血中,以阐明制备参数对凝血、炎症激活和组织组织学的影响。核黄素/紫外线交联步骤在使细胞外基质(ECM)蛋白活性失活方面不如戊二醛固定有效,导致组织因子介导的血液凝固。用升高的核黄素浓度和右旋糖酐强化核黄素/紫外线交联会导致补体系统的激活增强。然而,先前方案步骤诱导的激活过程在最终的电子束处理步骤中被淬灭。使用强烈且延长的含胰蛋白酶脱细胞步骤来使组织因子失活,并采用无右旋糖酐、低核黄素、高紫外线交联步骤,开发出了一种优化的SULEEI方案。创新且改进的无戊二醛SULEEI制备方案可得到用于外科手术的低凝血性和低炎症性的牛心包。

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