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首页> 外文期刊>The international journal of artificial organs >Adhesion and function of rat liver cells adherent to silk fibroin/collagen blend films.
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Adhesion and function of rat liver cells adherent to silk fibroin/collagen blend films.

机译:粘附于丝素蛋白/胶原蛋白混合膜的大鼠肝细胞的粘附和功能。

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摘要

Collagen is often used in bioartificial livers as a biomimetic coating to promote liver cell adhesion and differentiation. Animal proteins are expensive and expose the host to risks of cross-species infection due to contamination with prions. Silk fibroin (SF) is a biocompatible protein produced by Bombyx mori silk worms and possibly an alternative to collagen. We prepared SF-collagen blend films with different SF content adherent to the bottom of standard tissue culture dishes, and characterized their surface morphology by SEM, their wettability and examined them for their capacity to support rat liver cell adhesion and metabolism. Cell metabolism was characterized by estimating the rate at which cells eliminated ammonia and synthesized urea for up to 48h of culture. SF-containing films were smooth, clear and more wettable than collagen. Cells readily adhered, formed junctions and small size aggregates on all films. As many cells adhered on SF as on collagen films. Cell adhesion to high collagen content blend films could not be reliably estimated because cells dwelt in the large cavities in the film. The effect of SF on cell metabolism differed with the investigated metabolic pathway. However, cells on SF-containing films eliminated ammonia and synthesized urea at rates generally comparable to, for urea synthesis at times higher than, that of cells on collagen. These results suggest that silk fibroin is a suitable substratum for liver cell attachment and culture, and a potential alternative to collagen as a biomimetic coating.
机译:胶原蛋白通常在生物人工肝中用作仿生涂层,以促进肝细胞粘附和分化。动物蛋白价格昂贵,并且由于病毒的污染,使宿主面临跨物种感染的风险。丝素蛋白(SF)是家蚕的生物相容性蛋白质,可能是胶原蛋白的替代品。我们制备了附着在标准组织培养皿底部的具有不同SF含量的SF-胶原蛋白共混膜,并通过SEM表征了其表面形态,润湿性,并检查了它们支持大鼠肝细胞粘附和代谢的能力。通过估计细胞在长达48h的培养中消除氨和合成尿素的速率来表征细胞代谢。含SF的薄膜比胶原蛋白光滑,透明且更易润湿。细胞容易粘附,在所有膜上形成结点和小尺寸聚集体。与胶原膜上一样多的细胞粘附在SF上。无法可靠地估计细胞对高胶原含量的混合膜的粘附性,因为细胞驻留在膜的大腔中。 SF对细胞代谢的影响与所研究的代谢途径不同。然而,含SF膜上的细胞以通常比胶原蛋白上的细胞高的速率可比的速率去除氨和合成的尿素,对于尿素合成而言通常是这样。这些结果表明,丝素蛋白是用于肝细胞附着和培养的合适基质,并且是作为仿生涂层的胶原蛋白的潜在替代品。

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