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Functional Maturation of Induced Pluripotent Stem Cell Hepatocytes in Extracellular Matrix—A Comparative Analysis of Bioartificial Liver Microenvironments

机译:细胞外基质中诱导的多能干细胞肝细胞的功能成熟—生物人工肝微环境的比较分析

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摘要

Induced pluripotent stem cells (iPSCs) are new diagnostic and potentially therapeutic tools to model disease and assess the toxicity of pharmaceutical medications. A common limitation of cell lineages derived from iPSCs is a blunted phenotype compared with fully developed, endogenous cells. We examined the influence of novel three-dimensional bioartificial microenvironments on function and maturation of hepatocyte-like cells differentiated from iPSCs and grown within an acellular, liver-derived extracellular matrix (ECM) scaffold. In parallel, we also compared a bioplotted poly-l-lactic acid (PLLA) scaffold that allows for cell growth in three dimensions and formation of cell-cell contacts but is infused with type I collagen (PLLA-collagen scaffold) alone as a “deconstructed” control scaffold with narrowed biological diversity. iPSC-derived hepatocytes cultured within both scaffolds remained viable, became polarized, and formed bile canaliculi-like structures; however, cells grown within ECM scaffolds had significantly higher P450 (CYP2C9, CYP3A4, CYP1A2) mRNA levels and metabolic enzyme activity compared with iPSC hepatocytes grown in either bioplotted PLLA collagen or Matrigel sandwich control culture. Additionally, the rate of albumin synthesis approached the level of primary cryopreserved hepatocytes with lower transcription of fetal-specific genes, α-fetoprotein and CYP3A7, compared with either PLLA-collagen scaffolds or sandwich culture. These studies show that two acellular, three-dimensional culture systems increase the function of iPSC-derived hepatocytes. However, scaffolds derived from ECM alone induced further hepatocyte maturation compared with bioplotted PLLA-collagen scaffolds. This effect is likely mediated by the complex composition of ECM scaffolds in contrast to bioplotted scaffolds, suggesting their utility for in vitro hepatocyte assays or drug discovery.
机译:诱导多能干细胞(iPSC)是新的诊断和潜在治疗工具,可用于建模疾病和评估药物的毒性。与完全发育的内源性细胞相比,源自iPSC的细胞谱系的常见局限性是表型迟钝。我们检查了新型三维生物人工微环境的影响和功能从iPSCs分化并生长在无细胞,肝源性细胞外基质(ECM)支架内的肝细胞样细胞的成熟。同时,我们还比较了生物印迹的聚L-乳酸(PLLA)支架,该支架可以使细胞在三个维度上生长并形成细胞与细胞的接触,但是单独注入了I型胶原蛋白(PLLA-胶原支架)作为“解构的”控制支架,生物学多样性变窄。在两个支架中培养的iPSC来源的肝细胞仍保持活力,极化并形成胆小管样结构。然而,与在生物标绘的PLLA胶原或基质胶三明治控制培养物中生长的iPSC肝细胞相比,在ECM支架中生长的细胞具有显着更高的P450(CYP2C9,CYP3A4,CYP1A2)mRNA水平和代谢酶活性。此外,与PLLA胶原蛋白支架或三明治培养相比,白蛋白合成的速率接近具有低温的胎儿特定基因,α-胎蛋白和CYP3A7转录的原代冻存肝细胞的水平。这些研究表明,两个无细胞的三维培养系统可增强iPSC衍生的肝细胞的功能。但是,与生物图绘制的PLLA-胶原蛋白支架相比,单独源自ECM的支架诱导了进一步的肝细胞成熟。与生物绘图支架相反,这种作用可能是由ECM支架的复杂组成介导的,表明它们可用于体外肝细胞测定或药物发现。

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