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Fabrication of Cellulose-Gelatin Based Endothelialed Vascular Graft with SMCs/ADSCs Seeding in Bioreactor

机译:基于纤维素 - 明胶基于生物反应器的SMC / ADSC播种的纤维素 - 明胶的制备

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Cardiovascular disease (CVD) is a major health issue over the worldwide. The application of tissue engineering technology holds great promise for improving outcomes in CVD patients. Currently, the use of synthetic vascular grafts has several limitations, including thrombogenicity, increased risk of infection, and lack of growth potential. Natural vascular grafts have many advantages including excellent degradation, biocompatibility, but low mechanical property. Therefore, to form a biodegradable and antithrombotic vessel graft as temporary substitute is a problem to overcome in recent researches. The purpose of our study is using natural materials to rapidly form an endothelialized vascular graft in vitro. We utilized cellulose and gelatin to fabricate a composite scaffold. In order to enhance the mechanical property and decrease the degradation rate of scaffold, we added genipin to crosslink cellulose and gelatin. We mixed the cellulose, gelatin, and genipin solution, and injected solution into self-made mold to form tubular hydrogel. At last, we could obtain the tubular scaffold by freeze-drying. With regard to fabrication of vascular graft, the smooth muscle cells (SMCs) extracted from rabbit's carotid arteries would be seeded into scaffold to secret the collagen and elastic fiber, while adipose derived stem cell (AD-SCs) would be seeded onto the lumen of scaffold as the source of endothelial cells. The material property of scaffold were analyzed by swelling test, biocompability, and FTIR. Moreover, we observe the SMCs distribution and extracellular matrix (ECM) deposition of vascular graft by histology.
机译:心血管疾病(CVD)是全世界的主要健康问题。组织工程技术的应用对改善CVD患者的结果具有很大的承诺。目前,合成血管移植物的使用具有几个限制,包括血栓形成性,感染的风险增加以及缺乏生长潜力。天然血管移植物具有许多优点,包括出色的降解,生物相容性,但机械性能低。因此,为了形成可生物降解的和抗血栓性血管移植物,因为临时替代品是最近的研究克服的问题。我们研究的目的是使用天然材料在体外快速形成内皮血管移植物。我们利用纤维素和明胶制备复合支架。为了提高力学性能并降低支架的降解速率,我们将Genipin添加到交联纤维素和明胶中。我们将纤维素,明胶和Genipin溶液混合,并将溶液注入自制成的模具中以形成管状水凝胶。最后,我们可以通过冷冻干燥获得管状支架。关于血管移植物的制备,从兔子的颈动脉中提取的平滑肌细胞(SMC)将接种成支架才能沉积胶原蛋白和弹性纤维,而脂肪衍生的干细胞(Ad-Scs)将被接种在腔内脚手架作为内皮细胞的来源。通过溶胀试验,生物编译和FTIR分析支架的材料性能。此外,我们通过组织学观察SMCs分布和细胞外基质(ECM)沉积血管移植物。

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