首页> 外文期刊>The international journal of artificial organs >Hepatocyte organoid culture in elliptic hollow fibers to develop a hybrid artificial liver.
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Hepatocyte organoid culture in elliptic hollow fibers to develop a hybrid artificial liver.

机译:在椭圆形中空纤维中进行肝细胞类器官培养,以发展杂交人工肝。

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A novel organoid culture was developed in which hepatocytes maintain high liver functions for more than several weeks in vitro. The main disadvantage of tissue-engineered organoids is the lack of a blood vessel structure between the aggregated cells. Because of depletion of oxygen, the thickness from the surface of an organoid at which hepatocytes can survive is limited. This study showed that a rat hepatocyte organoid that forms by using centrifugal force in a hollow fiber (HF) had a survival limit thickness of about 80 - 100 microm from the surface of the organoid. Based on the value, we designed an elliptic HF having less than 150 microm minor diameter by using a simple annealing method. All hepatocytes were supplied with oxygen and formed an organoid without a dead cell layer in this HF A hepatocyte organoid in an elliptic HF maintained ammonia removal activity twice as high as in the original HF for at least one month during culture. Albumin secretion activity of an organoid in an elliptic HF was also maintained for at least one month and was the same level as that of liver in a living body. In conclusion, organoid culture by using an elliptic HF seems to be a promising technique to develop a hybrid artificial liver.
机译:开发了一种新颖的类器官培养物,其中肝细胞在体外能维持较高的肝功能超过几周。组织工程类器官的主要缺点是在聚集细胞之间缺乏血管结构。由于氧气的消耗,肝细胞可以存活的器官表面的厚度受到限制。这项研究表明,利用中空纤维(HF)中的离心力形成的大鼠肝细胞类器官的生存极限距离类器官表面约80至100微米。基于该值,我们通过使用简单的退火方法设计了直径小于150微米的椭圆形HF。在此HF中,所有肝细胞都被供以氧气并形成没有死细胞层的类器官。在培养期间至少一个月,椭圆形HF中的肝细胞类器官的氨去除活性是原始HF的两倍。椭圆形HF中类器官的白蛋白分泌活性也维持至少一个月,并且与活体内肝脏的水平相同。总之,通过使用椭圆形HF进行类器官培养似乎是开发混合人工肝的有前途的技术。

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