Department of Chemical and Biological Engineering, University at Buffalo, The State University of New York, Amherst, NY, 14260-4200, USA.
Nationwide Children's Hospital, Columbus, OH, 43215, USA.
Adv Healthc Mater. 2022 Nov;11(22):e2200890. doi: 10.1002/adhm.202200890. Epub 2022 Sep 30.
A strategy to recruit monocytes (MCs) from blood to regenerate vascular tissue from unseeded (cell-free) tissue engineered vascular grafts is presented. When immobilized on the surface of vascular grafts, the fusion protein, H2R5 can capture blood-derived MC under static or flow conditions in a shear stress dependent manner. The bound MC turns into macrophages (Mϕ) expressing both M1 and M2 phenotype specific genes. When H2R5 functionalized acellular-tissue engineered vessels (A-TEVs) are implanted into the mouse aorta, they remain patent and form a continuous endothelium expressing both endothelial cell (EC) and MC specific proteins. Underneath the EC layer, multiple cells layers are formed coexpressing both smooth muscle cell (SMC) and MC specific markers. Lineage tracing analysis using a novel CX3CR1-confetti mouse model demonstrates that fluorescently labeled MC populates the graft lumen by two and four weeks postimplantation, providing direct evidence in support of MC/Mϕ recruitment to the graft lumen. Given their abundance in the blood, circulating MCs may be a great source of cells that contribute directly to the endothelialization and vascular wall formation of acellular vascular grafts under the right chemical and biomechanical cues.
提出了一种从血液中招募单核细胞 (MC) 以从未播种 (无细胞) 组织工程血管移植物中再生血管组织的策略。当固定在血管移植物表面时,融合蛋白 H2R5 可以在静态或流动条件下,以剪切应力依赖的方式捕获血液来源的 MC。结合的 MC 变成表达 M1 和 M2 表型特异性基因的巨噬细胞 (Mϕ)。当 H2R5 功能化的无细胞组织工程血管 (A-TEV) 被植入小鼠主动脉时,它们保持通畅并形成连续的内皮细胞,表达内皮细胞 (EC) 和 MC 特异性蛋白。在 EC 层下方,形成了多层细胞,共同表达平滑肌细胞 (SMC) 和 MC 特异性标志物。使用新型 CX3CR1-confetti 小鼠模型进行的谱系追踪分析表明,荧光标记的 MC 在植入后两周和四周填充移植物管腔,这直接证明了 MC/Mϕ 募集到移植物管腔中。鉴于它们在血液中的丰富程度,循环 MC 可能是直接有助于细胞的丰富来源内皮化和无细胞血管移植物的血管壁形成在正确的化学和生物力学线索下。