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Biomimetic urothelial tissue models for the in vitro evaluation of barrier physiology and bladder drug efficacy

机译:仿生尿道上皮组织模型,用于体外评估屏障生理学和膀胱药物疗效

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摘要

The bladder is an important tissue in which to evaluate xenobiotic drug interactions and toxicities due to the concentration of parent drug and hepatic/enteric-derived metabolites in the urine as a result of renal excretion. Breaching of the barrier provided by the bladder epithelial lining (the urothelium) can expose the underlying tissues to urine and cause harmful effects (e.g., cystitis or cancer). Human urothelium is most commonly represented in vitro as immortalized or established cancer-derived cell lines, but the compromised ability of such cells to undergo differentiation and barrier formation means that nonimmortalized, normal human urothelial (NHU) cells provide a more relevant cell culture system. The impressive capacity for urothelial self-renewal in vivo can be harnessed in vitro to generate experimentally-useful quantities of NHU cells, which can subsequently be differentiated to form a functional or "biomimetic" urothelium. When seeded onto permeable membranes, these barrier-forming human urothelial tissue models enable the modeling of serum and luminal (intravesical) exposure to drugs and metabolites, thus supporting efficacy/toxicity assessments. Biomimetic human urothelial constructs provide a potential step along the preclinical trail and may support the extrapolation from rodent in vivo data to determine human relevance. Early evidence is beginning to demonstrate that human urothelium in vitro can provide information that supersedes conventional rodent studies, but further validation is needed to support widespread adoption.
机译:膀胱是评估异种药物相互作用和毒性的重要组织,这是由于肾脏排泄导致尿液中母体药物和肝/肠源性代谢产物的浓度升高所致。破坏膀胱上皮衬里(尿道上皮)提供的屏障可能会使下层组织暴露于尿液并引起有害影响(例如膀胱炎或癌症)。人尿路上皮在体外最常被表示为永生化或已建立的癌症衍生细胞系,但是此类细胞经历分化和形成屏障的能力受损,意味着永生化的正常人尿道上皮(NHU)细胞提供了更相关的细胞培养系统。体内尿路上皮自我更新的惊人能力可以在体外利用,以产生实验有用量的NHU细胞,随后可以将其分化形成功能性或“仿生”尿道上皮。将这些形成障碍的人尿道上皮组织模型播种到可渗透膜上后,就可以对药物和代谢产物的血清和管腔(膀胱内)暴露进行建模,从而支持功效/毒性评估。仿生人类尿道上皮构建物提供了沿着临床前试验的潜在步骤,并可能支持从啮齿动物体内数据推断来确定人类相关性。早期证据开始证明体外人尿路上皮可以提供取代常规啮齿动物研究的信息,但需要进一步验证以支持广泛采用。

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