Covalent grafting of PEG and heparin improves biological performance of electrospun vascular grafts for carotid artery replacement

生物相容性 体内 内膜增生 肝素 生物医学工程 医学 PEG比率 材料科学 药理学 外科 内科学 平滑肌 财务 冶金 经济 生物技术 生物
作者
Tonghe Zhu,Hongbing Gu,Hongmei Zhang,Hongsheng Wang,Huitang Xia,Xiumei Mo,Jinglei Wu
出处
期刊:Acta Biomaterialia [Elsevier BV]
卷期号:119: 211-224 被引量:73
标识
DOI:10.1016/j.actbio.2020.11.013
摘要

Rapid endothelialization of small-diameter vascular grafts remains a significant challenge in clinical practice. In addition, compliance mismatch causes intimal hyperplasia and finally leads to graft failure. To achieve compliance match and rapid endothelialization, we synthesized low-initial-modulus poly(ester-urethane)urea (PEUU) elastomer and prepared it into electrospun tubular grafts and then functionalized the grafts with poly(ethylene glycol) (PEG) and heparin via covalent grafting. The PEG- and heparin-functionalized PEUU ([email protected]) graft had comparable mechanical properties with the native blood vessel. In vitro data demonstrated that the grafts are of good cytocompatibility and blood compatibility. Covalent grafting of PEG and heparin significantly promoted the adhesion, spreading, and proliferation of human umbilical vein endothelial cells (HUVECs) and upregulated the expression of vascular endothelial cell-related genes, as well as increased the capability of grafts in preventing platelet deposition. In vivo assessments indicated good biocompatibility of the [email protected] graft as it did not induce severe immune responses. Replacement of resected carotid artery with the [email protected] graft in a rabbit model showed that the graft was capable of rapid endothelialization, initiated vascular remodeling, and maintained patency. This study demonstrates the [email protected] vascular graft with compliance match and efficacious antithrombosis might find opportunities for bioactive blood vessel substitutes.
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