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Alleviating liver failure conditions using an integrated hybrid cryogel based cellular bioreactor as a bioartificial liver support

机译:使用集成的基于混合冷冻凝胶的细胞生物反应器作为生物人工肝支持缓解肝脏衰竭状况

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摘要

Conventionally, some bioartificial liver devices are used with separate plasmapheresis unit to separate out plasma from whole blood and adsorbent column to detoxify plasma before it passes through a hepatocytes-laden bioreactor. We aim to develop a hybrid bioreactor that integrates the separate modules in one compact design improving the efficacy of the cryogel based bioreactor as a bioartificial liver support. A plasma separation membrane and an activated carbon cloth are placed over a HepG2-loaded cryogel scaffold in a three-chambered bioreactor design. This bioreactor is consequently connected extracorporeally to a rat model of acute liver failure for 3 h and major biochemical parameters studied. Bilirubin and aspartate transaminase showed a percentage decrease of 20–60% in the integrated bioreactor as opposed to 5–15% in the conventional setup. Urea and ammonia levels which showed negligible change in the conventional setup increase (40%) and decrease (18%), respectively in the integrated system. Also, an overall increase of 5% in human albumin in rat plasma indicated bioreactor functionality in terms of synthetic functions. These results were corroborated by offline evaluation of patient plasma. Hence, integrating the plasmapheresis and adsorbent units with the bioreactor module in one compact design improves the efficacy of the bioartificial liver device.
机译:常规地,一些生物人工肝装置与分离的血浆置换单元一起使用,以从全血中分离出血浆,并在其通过载有肝细胞的生物反应器之前通过吸附剂柱对血浆进行解毒。我们旨在开发一种混合生物反应器,该混合生物反应器以一种紧凑的设计集成各个模块,从而提高了基于冷冻凝胶的生物反应器作为生物人工肝支持物的功效。在三腔生物反应器设计中,将血浆分离膜和活性炭布放在装有HepG2的冷冻凝胶支架上。因此,该生物反应器在体外连接了一个急性肝衰竭3h的大鼠模型,并研究了主要的生化参数。胆红素和天冬氨酸转氨酶在集成生物反应器中的百分比降低了20–60%,而在常规设置中降低了5–15%。在常规系统中,尿素和氨水平的变化可忽略不计,分别增加(40%)和减少(18%)。同样,在大鼠血浆中人白蛋白的总体增加5%表明就合成功能而言生物反应器的功能。这些结果通过对患者血浆的离线评估得到了证实。因此,将血浆置换术和吸附剂单元与生物反应器模块集成在一个紧凑的设计中可以提高生物人工肝装置的功效。

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