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首页> 外文期刊>Tissue engineering >Efficacy of engineered liver tissue based on poly-L-lactic acid scaffolds and fetal mouse liver cells cultured with oncostatin M, nicotinamide, and dimethyl sulfoxide.
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Efficacy of engineered liver tissue based on poly-L-lactic acid scaffolds and fetal mouse liver cells cultured with oncostatin M, nicotinamide, and dimethyl sulfoxide.

机译:基于瘤胃抑素M,烟酰胺和二甲基亚砜培养的聚L-乳酸支架和胎鼠肝细胞对工程肝组织的功效。

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摘要

To assess the feasibility of liver tissue equivalents based on selective propagation and differentiation of hepatocyte progenitors in three-dimensional (3D) culture, the efficacy of fetal mouse liver cells cultured in poly-L-lactic acid (PLLA) scaffolds in the presence of nicotinamide, dimethyl sulfoxide, and oncostatin M was investigated both in vitro and in vivo. The albumin production of PLLA-cultured fetal mouse liver cells in the presence of these three factors was remarkably enhanced with culture time, and after 4 weeks it attained almost the same production found in adult mouse hepatocytes cultured for 3 days in PLLA scaffolds, based on the unit DNA amount. In addition, implantation of engineered liver tissue based on this in vitro PLLA culture system into the peritoneal cavity of 70% hepatectomized mice showed a remarkably higher presence of albumin-positive engrafted cells 15 days after the operation when compared with fetal mouse liver cells or adult mouse hepatocytes freshly isolated and cultured for 1 day. These results demonstrate that the basic concept regarding the engineering of liver tissue equivalents based on in vitro selective propagation and differentiation of hepatocyte progenitors in 3D biodegradable scaffolds shows promise for future liver tissue engineering.
机译:要评估在三维(3D)培养中基于肝细胞祖细胞的选择性繁殖和分化的肝组织等效物的可行性,在烟酰胺存在下在聚L-乳酸(PLLA)支架中培养的胎鼠肝细胞的功效,二甲基亚砜和制抑素M均已在体外和体内进行了研究。在存在这三个因素的情况下,在培养这三种因子的情况下培养的PLLA培养的胎儿小鼠肝细胞的白蛋白产量显着提高,并在4周后达到了与在PLLA支架中培养3天的成年小鼠肝细胞几乎相同的产量。单位DNA量。此外,与胎儿小鼠肝细胞或成年小鼠相比,在手术后15天将基于体外PLLA培养系统的工程肝组织植入70%肝切除小鼠的腹腔中,其白蛋白阳性移植细胞的存在显着增加。新鲜分离的小鼠肝细胞并培养1天。这些结果表明,基于肝细胞祖细胞在3D可生物降解支架中的体外选择性繁殖和分化,有关肝组织等效工程的基本概念显示了未来肝组织工程的前景。

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