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包埋于胶原凝胶中的猪肝细胞球状体的扩展肝脏特异性功能。

Extended liver-specific functions of porcine hepatocyte spheroids entrapped in collagen gel.

作者信息

Lazar A, Mann H J, Remmel R P, Shatford R A, Cerra F B, Hu W S

机构信息

Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis 55455-0132, USA.

出版信息

In Vitro Cell Dev Biol Anim. 1995 May;31(5):340-6. doi: 10.1007/BF02634282.

Abstract

The potential use of porcine hepatocytes in a bioartificial liver device requires large quantities of viable and highly active cells. To facilitate the scaling up of the system, liver specific activities of hepatocytes should be maximized. One way of enhancing the specific activities is to cultivate hepatocytes as multicellular spheroids. Freshly isolated porcine hepatocytes form spheroids when cultivated in suspended cultures. These spheroids exhibit higher activities for a number of liver specific functions compared to hepatocytes cultivated as monolayers. However, these activities decreased in a few days in culture. Entrappment of spheroids in collagen gel sustained their metabolic activities at a stable level over 21 days. Production of albumin and urea by spheroid hepatocytes entrapped in collagen gels were 2 to 3 times higher than those by freshly isolated single cells. P-450 activity was demonstrated by metabolism of lidocaine to its main metabolite, monoethylglycinexylidide. Phase II drug metabolism was demonstrated by glucuronidation of 4-methylumbelliferone. This work shows that porcine hepatocyte spheroids entrapped in collagen maintain differentiated functions for an extended time period. Such hepatocyte spheroid entrappment system may facilitate the development of a bioartificial liver support device.

摘要

猪肝细胞在生物人工肝装置中的潜在应用需要大量有活力且高度活跃的细胞。为便于扩大该系统规模,应使肝细胞的肝脏特异性活性最大化。增强特异性活性的一种方法是将肝细胞培养成多细胞球体。新鲜分离的猪肝细胞在悬浮培养时会形成球体。与单层培养的肝细胞相比,这些球体在多种肝脏特异性功能方面表现出更高的活性。然而,这些活性在培养几天后会下降。将球体包埋在胶原凝胶中可使其代谢活性在21天内维持在稳定水平。胶原凝胶包埋的球体肝细胞产生白蛋白和尿素的量比新鲜分离的单个细胞高2至3倍。利多卡因代谢为其主要代谢产物单乙基甘氨酰二甲苯酰胺证明了P - 450活性。4 - 甲基伞形酮的葡萄糖醛酸化证明了Ⅱ相药物代谢。这项工作表明,胶原包埋的猪肝细胞球体在较长时间内维持分化功能。这种肝细胞球体包埋系统可能有助于生物人工肝支持装置的开发。

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