首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Application of a rotating bioreactor consisting of low-cost and ready-to-use medical disposables for in vitro evaluation of the endothelialization efficiency of small-caliber vascular prostheses
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Application of a rotating bioreactor consisting of low-cost and ready-to-use medical disposables for in vitro evaluation of the endothelialization efficiency of small-caliber vascular prostheses

机译:包含低成本和即用型一次性医疗用旋转生物反应器的应用在体外评估小口径人工血管的内皮化效率

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The incomplete endothelialization of especially small-caliber vascular prostheses after implantation in patients is a major disadvantage in cardiovascular interventions. The lack of an endothelium leads to the occurrence of thrombosis at the luminal surface of artificial vascular prostheses. Thus, the development of new graft materials and coatings for induction of complete endothelialization on the implant surfaces is a promising approach to improve hemocompatibility and maintain long-term graft patency. In this study, we designed a rotation model to evaluate the early endothelial cell (EC) seeding efficiency of different small-caliber vascular devices, such as stents and vascular grafts. The suitability of the designed rotation model for endothelialization studies was investigated by seeding and cultivation of prostheses with ECs followed by scanning electron microscopy. Furthermore, the viability of attached ECs was determined by calcein acetoxymethyl ester (AM) staining. The rotation model consisting of low-cost medical disposables enabled sterile incubation and cultivation of ECs with vascular devices. Simultaneously, the rotation of the bioreactor ensured a uniform distribution and adhesion of cells to the devices. Calcein AM staining of adherent cells on prostheses revealed excellent cell viability. Moreover, using the designed rotation model, an influence of different coatings and materials on the adhesion and spreading of ECs was demonstrated. The rotating bioreactor described and used in this study not only saves time and money but is also eminently useful for the accelerated preclinical evaluation of the endothelialization efficiency of different materials and surface coatings of small-caliber vascular devices.
机译:植入患者后,特别是小口径的血管假体的不完全内皮化是心血管干预的主要缺点。内皮的缺乏导致在人造血管假体的腔表面发生血栓形成。因此,开发用于在植入物表面上诱导完全内皮化的新型移植物材料和涂层是改善血液相容性并保持长期移植物通畅性的有前途的方法。在这项研究中,我们设计了一种旋转模型,以评估不同小口径血管装置(例如支架和血管移植物)的早期内皮细胞(EC)播种效率。设计的旋转模型对内皮化研究的适用性是通过用EC植入和种植假体,然后进行扫描电子显微镜研究的。此外,通过钙黄绿素乙酰氧基甲基酯(AM)染色确定附着的EC的活力。由低成本医疗一次性物品组成的轮换模型实现了无菌培养和带有血管装置的EC的培养。同时,生物反应器的旋转确保了细胞对装置的均匀分布和粘附。假体上贴壁细胞的钙黄绿素AM染色显示了出色的细胞活力。此外,使用设计的旋转模型,证明了不同涂层和材料对EC的附着力和扩散的影响。在这项研究中描述和使用的旋转生物反应器不仅节省时间和金钱,而且对于加速临床前评估小口径血管装置的不同材料和表面涂层的内皮化效率非常有用。

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