Wang Xu, Fu Hanmei, Wu Huibin, Peng Xiaohua, Peng Xu, Yu Xixun, Liu Hui, Wu Junmei, Luo Ling, Yan Shan, Cheng Xinglin, Zhou Xiong, Yuan Xiangyang
School of Acupuncture and Tuina, Chengdu University of Traditional Chinese Medicine, Chengdu 610075, China.
College of Science, Sichuan Agricultural University, Ya'an 625014, China.
Regen Biomater. 2024 Jul 1;11:rbae074. doi: 10.1093/rb/rbae074. eCollection 2024.
The performance of biological-originated blood vessels in clinical remains disappointing due to fast occlusion caused by acute thrombosis or long-standing inflammation. How to prevent rapid degradation and inhibit acute inflammation but maintain their high bioactivity is still a significant challenge. As a bioactive polyphenol in various traditional Chinese medicine, Corilagin (Cor) exhibits excellent anticoagulant, anti-inflammatory and rapid ROS consumption properties. Inspired by abundant supramolecular interactions in organisms, we selected it to crosslink tissues via purely H-bonds to simulate these natural interactions without introducing potential toxic aldehyde or carboxyl groups. Results show that 2 mg/ml was selected as the optimal Cor concentration to form a stable crosslinking network (FI > 95%) and effectively delay their degradation. Cor modification not only enhances ECs adhesion and monolayer function via accelerating VEGF and TGF-β secretion but also promotes macrophage transformation from pro-inflammatory M1 phenotype to anti-inflammatory M2 ones. and studies implied that Cor-crosslinked samples exhibited low platelet accumulation and decreased thrombin generation. evaluation further confirmed that Cor-introducing could effectively consume ROS, thus exhibiting rapid endothelialization, suppressed inflammation and reduced mineral deposition. Overall, Cor crosslinking provided a bright future for blood vessels' long-term patency and adapted to various blood-contacting surfaces.
由于急性血栓形成或长期炎症导致的快速闭塞,生物源性血管在临床上的表现仍然令人失望。如何防止其快速降解并抑制急性炎症,同时保持其高生物活性,仍然是一个重大挑战。作为各种传统中药中的一种生物活性多酚,柯里拉京(Cor)具有优异的抗凝、抗炎和快速消耗活性氧的特性。受生物体内丰富的超分子相互作用的启发,我们选择它通过纯粹的氢键交联组织,以模拟这些自然相互作用,而不引入潜在的有毒醛基或羧基。结果表明,选择2mg/ml作为最佳的Cor浓度,以形成稳定的交联网络(FI>95%)并有效延缓其降解。Cor修饰不仅通过加速VEGF和TGF-β分泌增强内皮细胞的粘附和单层功能,还促进巨噬细胞从促炎M1表型向抗炎M2表型转变。 和 研究表明,Cor交联的样品表现出低血小板聚集和凝血酶生成减少。 评估进一步证实,引入Cor可以有效消耗活性氧,从而表现出快速内皮化、抑制炎症和减少矿物质沉积。总体而言,Cor交联为血管的长期通畅提供了光明前景,并适用于各种血液接触表面。