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A novel design of bioartificial kidneys with improved cell performance and haemocompatibility

机译:一种新颖的生物人工肾脏设计,具有改善的细胞性能和血液相容性

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Treatment with bioartificial kidneys had beneficial effects in animal experiments and improved survival of critically ill patients with acute kidney injury in a Phase II clinical trial. However, a Phase II b clinical trial failed. This and other results suggested various problems with the current design of bioartificial kidneys. We propose a novel design to improve various properties of device, including haemocompatibility and cell performance. An important feature of the novel design is confinement of the blood to the lumina of the hollow fibre membranes. This avoids exposure of the blood to the non-haemocompatible outer surfaces of hollow fibre membranes, which usually occurs in bioartificial kidneys. We use these outer surfaces as substrate for cell growth. Our results show that commercial hollow fibre membranes can be directly applied in the bioreactor when human primary renal proximal tubular cells are grown in this configuration, and no coatings are required for the formation of robust and functional renal epithelia. Furthermore, we demonstrate that the bioreactor unit produces significant amounts of interleukins. This result helps to understand the immunomodulatory effects of bioartificial kidneys, which have been observed previously. The novel bioartificial kidney design outlined here and the results obtained would be expected to improve the safety and performance of bioartificial kidneys and to contribute to a better understanding of their effects.
机译:在第二阶段临床试验中,用生物人工肾进行治疗在动物实验中具有有益效果,并改善了患有急性肾损伤的危重患者的生存率。但是,IIb期临床试验失败。该结果和其他结果提示了当前生物人工肾脏设计的各种问题。我们提出了一种新颖的设计来改善设备的各种特性,包括血液相容性和细胞性能。新颖设计的重要特征是将血液限制在中空纤维膜的腔内。这避免了血液暴露于生物人工肾脏中通常发生的中空纤维膜的非血液相容性外表面。我们将这些外表面用作细胞生长的基质。我们的结果表明,当以这种配置培养人原代肾近端肾小管细胞时,可以将商业化的中空纤维膜直接应用于生物反应器,并且不需要涂层即可形成坚固而功能强大的肾上皮。此外,我们证明了生物反应器单元会产生大量的白介素。该结果有助于理解先前已经观察到的生物人工肾脏的免疫调节作用。这里概述了新颖的生物人工肾脏设计,预期获得的结果将改善生物人工肾脏的安全性和性能,并有助于更好地了解其作用。

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