Institute of Bioengineering and Nanotechnology, The Nanos, Singapore 138669, Singapore.
J Cell Mol Med. 2013 Apr;17(4):497-507. doi: 10.1111/jcmm.12029. Epub 2013 Mar 11.
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.
生物人工肾在动物实验中具有有益的效果,并在一项 II 期临床试验中改善了急性肾损伤危重病患者的生存率。然而,一项 IIb 期临床试验失败了。这些和其他结果表明,当前生物人工肾的设计存在各种问题。我们提出了一种新的设计,以改善设备的各种性能,包括血液相容性和细胞性能。新设计的一个重要特点是将血液限制在中空纤维膜的内腔中。这避免了血液暴露于中空纤维膜的不具有血液相容性的外表面,这在生物人工肾中通常会发生。我们将这些外表面用作细胞生长的基质。我们的结果表明,当在这种配置中生长人原代肾近端肾小管细胞时,可以将商业中空纤维膜直接应用于生物反应器中,并且不需要涂层即可形成坚固且功能齐全的肾上皮。此外,我们证明该生物反应器单元会产生大量白细胞介素。这一结果有助于理解先前观察到的生物人工肾的免疫调节作用。这里概述的新型生物人工肾设计和获得的结果有望提高生物人工肾的安全性和性能,并有助于更好地了解其作用。