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首页> 外文期刊>European journal of cardio-thoracic surgery: Official journal of the European Association for Cardio-thoracic Surgery >Tissue engineering in cardiovascular surgery: MTT, a rapid and reliable quantitative method to assess the optimal human cell seeding on polymeric meshes.
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Tissue engineering in cardiovascular surgery: MTT, a rapid and reliable quantitative method to assess the optimal human cell seeding on polymeric meshes.

机译:心血管外科的组织工程:MTT,一种快速可靠的定量方法,用于评估聚合物网上最佳的人体细胞接种。

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OBJECTIVE: Currently used valve substitutes for valve replacement have certain disadvantages that limit their long-term benefits such as poor durability, risks of infection, thromboembolism or rejection. A tissue engineered autologous valve composed of living tissue is expected to overcome these shortcomings with natural existing biological mechanisms for growth, repair, remodeling and development. The aim of the study was to improve cell seeding methods for developing tissue-engineered valve tissue. METHODS: Human aortic myofibroblasts were seeded on polyglycolic acid (PGA) meshes. Cell attachment and growth of myofibroblasts on the PGA scaffolds with different seeding intervals were compared to determine an optimal seeding interval. In addition, scanning electron microscopy study of the seeded meshes was also performed to document tissue development. RESULTS: There was a direct correlation between cell numbers assessed by direct counting and MTT(3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltertra-zoliu m bromide) assay. Both attach rate and cell growth seeded on meshes with long intervals (24 and 36 h) were significantly higher than those seeded with short intervals (2 and 12 h) (P<0.01), there was no significant difference between 24- and 36-h seeding interval. Scanning electron microscopy also documented more cell attachment with long seeding intervals resulting in a more solid tissue like structure. CONCLUSION: It is feasible to use human aortic myofibroblasts to develop a new functional tissue in vitro. Twenty-four hours is an optimal seeding interval for seeding human aortic myofibroblasts on PGA scaffolds and MTT test is a rapid and reliable quantitative method to assess the optimal human cell seeding on polymeric meshes.
机译:目的:目前使用的瓣膜替代品具有某些缺点,限制了它们的长期利益,例如耐久性差,感染风险,血栓栓塞或排斥。预期由活组织组成的组织工程化自体瓣膜将利用生长,修复,重塑和发展的自然现有生物学机制克服这些缺点。该研究的目的是改善用于组织工程瓣膜组织的细胞接种方法。方法:将人主动脉成肌纤维细胞接种在聚乙醇酸(PGA)网上。比较具有不同接种间隔的PGA支架上成纤维细胞的细胞附着和生长,以确定最佳接种间隔。此外,还对种子网进行了扫描电子显微镜研究,以证明组织发育。结果:直接计数和MTT(3- [4,5-二甲基噻唑-2-基] -2,5-二苯基四溴化溴甲烷)测定评估的细胞数之间存在直接相关性。间隔较长(24和36 h)的网片上的贴附率和细胞生长均显着高于间隔较短(2和12 h)的网片上的贴壁速率和细胞生长(P <0.01),24-和36- h播种间隔。扫描电子显微镜还记录了更多的细胞附着和较长的播种间隔,从而产生了更坚固的组织样结构。结论:利用人主动脉成肌纤维细胞体外开发新的功能组织是可行的。 24小时是在PGA支架上播种人主动脉成肌纤维细胞的最佳播种间隔,而MTT试验是一种快速可靠的定量方法,用于评估在聚合网片上播种的最佳人类细胞。

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