Jiang Bin, Suen Rachel, Wertheim Jason A, Ameer Guillermo A
Department of Surgery, Feinberg School of Medicine, Northwestern University , Chicago, Illinois 60611, United States.
Department of Surgery, Jesse Brown VA Medical Center , Chicago, Illinois 60612, United States.
Biomacromolecules. 2016 Dec 12;17(12):3940-3948. doi: 10.1021/acs.biomac.6b01330. Epub 2016 Nov 29.
Thrombosis within small-diameter vascular grafts limits the development of bioartificial, engineered vascular conduits, especially those derived from extracellular matrix (ECM). Here we describe an easy-to-implement strategy to chemically modify vascular ECM by covalently linking a collagen binding peptide (CBP) to heparin to form a heparin derivative (CBP-heparin) that selectively binds a subset of collagens. Modification of ECM with CBP-heparin leads to increased deposition of functional heparin (by ∼7.2-fold measured by glycosaminoglycan composition) and a corresponding reduction in platelet binding (>70%) and whole blood clotting (>80%) onto the ECM. Furthermore, addition of CBP-heparin to the ECM stabilizes long-term endothelial cell attachment to the lumen of ECM-derived vascular conduits, potentially through recruitment of heparin-binding growth factors that ultimately improve the durability of endothelialization in vitro. Overall, our findings provide a simple yet effective method to increase deposition of functional heparin on the surface of ECM-based vascular grafts and thereby minimize thrombogenicity of decellularized tissue, overcoming a significant challenge in tissue engineering of bioartificial vessels and vascularized organs.
小口径血管移植物内的血栓形成限制了生物人工工程血管导管的发展,尤其是那些源自细胞外基质(ECM)的导管。在此,我们描述了一种易于实施的策略,通过将胶原结合肽(CBP)与肝素共价连接来化学修饰血管ECM,形成一种选择性结合部分胶原蛋白的肝素衍生物(CBP-肝素)。用CBP-肝素修饰ECM会导致功能性肝素的沉积增加(通过糖胺聚糖组成测定增加约7.2倍),并相应减少血小板在ECM上的结合(>70%)和全血凝血(>80%)。此外,向ECM中添加CBP-肝素可稳定内皮细胞长期附着在ECM衍生血管导管的管腔内,这可能是通过募集肝素结合生长因子实现的,最终改善了体外内皮化的耐久性。总体而言,我们的研究结果提供了一种简单而有效的方法,可增加功能性肝素在基于ECM的血管移植物表面的沉积,从而将脱细胞组织的血栓形成倾向降至最低,克服了生物人工血管和血管化器官组织工程中的一项重大挑战。