Elsayed Yahya, Lekakou Constantina, Labeed Fatima, Tomlins Paul
Advanced Materials Group, University of Surrey, Guildford, Surrey, GU2 7XH, United Kingdom.
Centre of Biomedical Engineering, University of Surrey, Guildford, Surrey, GU2 7XH, United Kingdom.
J Biomed Mater Res A. 2016 Jan;104(1):313-21. doi: 10.1002/jbm.a.35565. Epub 2015 Oct 5.
Crosslinked, multi-layer electrospun gelatin fiber scaffolds with generally ±45 degree fiber orientation have been used to grow human umbilical vein smooth muscle cells (HUVSMCs) to create a vascular tunica media graft. Scaffolds of different fiber diameter (2-5 μm in wet state), pore size, and porosity (16-21% in wet state) were assessed in terms of cell adherence and viability, cell proliferation, and migration in both in-plane and transverse directions through the scaffold as a function of time under static cell culture conditions. HUVSMC cell viability reached between 80 and 92% for all scaffolds after 9 days in culture. HUVSMCs adhered, elongated, and orientated in the fiber direction, and migrated through a scaffold thickness of 200-235 μm 9 days post-seeding under static conditions. The best scaffold was then used to assess the tissue engineering of HUVSMCs under dynamic conditions for a rotating, cell seeded, tubular scaffold in the bioreactor containing the culture medium. Dynamic conditions almost doubled the rate of cell proliferation through the scaffold, forming full tissue throughout a scaffold of 250-300 μm thickness 6 days post-seeding.
具有大致±45度纤维取向的交联多层电纺明胶纤维支架已被用于培养人脐静脉平滑肌细胞(HUVSMC),以创建血管中膜移植物。在静态细胞培养条件下,评估了不同纤维直径(湿态下为2 - 5μm)、孔径和孔隙率(湿态下为16 - 21%)的支架在细胞黏附、活力、细胞增殖以及细胞在支架平面内和横向迁移随时间的变化情况。培养9天后,所有支架上的HUVSMC细胞活力达到80%至92%。在静态条件下接种9天后,HUVSMC细胞黏附、伸长并沿纤维方向排列,并穿过200 - 235μm厚度的支架。然后使用最佳支架在动态条件下评估HUVSMC的组织工程,该动态条件是在装有培养基的生物反应器中对旋转的、接种细胞的管状支架而言。动态条件使细胞通过支架的增殖速率几乎翻倍,在接种6天后在250 - 300μm厚度的整个支架上形成完整组织。