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首页> 外文期刊>Artificial cells, blood substitutes, and biotechnology >Convection and hemoglobin-based oxygen carrier enhanced oxygen transport in a hepatic hollow fiber bioreactor.
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Convection and hemoglobin-based oxygen carrier enhanced oxygen transport in a hepatic hollow fiber bioreactor.

机译:对流和基于血红蛋白的氧气载体增强了肝脏中空纤维生物反应器中的氧气传输。

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摘要

Hepatic hollow fiber bioreactors are a promising class of bioartificial liver assist device (BLAD). The development of this type of device is currently hindered by limited oxygen transport to cultured hepatocytes, due to low solubility of oxygen in aqueous media. In order to increase the oxygen spectrum to cultured hepatocytes housed within a hollow fiber bioreactor, several different engineering strategies were explored in this study. These included: supplementing the circulating media stream of the hollow fiber bioreactor with a hemoglobin-based oxygen carrier (bovine red blood cells) with defined oxygen binding and release kinetics and operating the bioreactor with media flow through the hollow fiber membrane into the extracapillary space (ECS). We hypothesize that these two strategies can be used to improve hepatocyte oxygenation and possibly attain an in vivo-like pO(2) spectrum, similar to that observed in vivo in the liver sinusoid. This work is significant, since provision of an in vivo-like pO(2) spectrum should create a fully functional BLAD that could potentially bridge thousands of liver failure patients towards native liver regeneration of damaged tissue or, if necessary, orthotopic liver transplantation.
机译:肝中空纤维生物反应器是一种有前途的生物人工肝辅助装置(BLAD)。由于氧气在水性介质中的溶解度低,目前这种类型的设备的发展受到氧气向培养的肝细胞的有限运输的阻碍。为了增加容纳在中空纤维生物反应器中的培养肝细胞的氧谱,本研究探索了几种不同的工程策略。其中包括:用具有确定的氧结合和释放动力学的血红蛋白基氧气载体(牛红细胞)为中空纤维生物反应器的循环介质流补充,并在介质流过中空纤维膜进入毛细管外空间时操作生物反应器ECS)。我们假设这两种策略可用于改善肝细胞氧合,并可能获得类似于肝脏正弦波体内观察到的体内样pO(2)谱。这项工作意义重大,因为提供体内类似的pO(2)谱应能创建功能齐全的BLAD,这可能会桥接成千上万的肝功能衰竭患者与受损组织的天然肝再生或必要时进行原位肝移植。

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