Kondrup J, Bro B, Dich J, Grunnet N, Thieden H I
Lab Invest. 1980 Aug;43(2):182-90.
A procedure for fractionation of hepatocytes according to density is presented. Hepatocytes were prepared from rats fed an ethanol-containing liquid diet, a liquid diet without ethanol, or a chow diet. The hepatocytes were fractionated in a Metrizamide density gradient and the cell fractions obtained were characterized with respect to protein synthesis, fatty acid oxidation, and esterification and ATP content. From ethanol-fed rats, two fractions of hepatocytes were obtained, one with a density of approximately 1.04 gm. per ml. and one with a density of ca. 1.08 gm. per ml. Cells from the lighter fraction contained 3 times more triacylglycerol than cells from the heavier fraction. Fifty per cent of the cells from the lighter fraction contained large (greater than 5 micron) lipid droplets as compared to 6% in the heavier fraction. The average yield from a 170-gm. rat of lipid-rich and lipid-poor cells was about 65 x 10(6) and 170 x 10(6) cells, respectively. Electron micrographs of the liver before perfusion and of the isolated and washed cell fraction revealed intact ultrastructure. Fractionation of hepatocyte suspensions from rats fed a high fat liquid diet without ethanol or a chow diet normally yielded two cell fractions with densities of ca. 1.08 and 1.10 gm. per ml. and 1.10 and 1.12 gm. per ml., respectively. The metabolic capacity of the cell fractions was unaltered by the fractionation procedure as judged by the ATP content, the rate of palmitate oxidation and esterification, and the rate of protein synthesis.
本文介绍了一种根据密度对肝细胞进行分级分离的方法。肝细胞取自喂食含乙醇液体饲料、不含乙醇液体饲料或普通饲料的大鼠。肝细胞在甲泛葡胺密度梯度中进行分级分离,对获得的细胞级分进行蛋白质合成、脂肪酸氧化、酯化及ATP含量的特性分析。从喂食乙醇的大鼠中获得了两个肝细胞级分,一个密度约为1.04克/毫升,另一个密度约为1.08克/毫升。较轻级分的细胞所含三酰甘油比更重级分的细胞多3倍。较轻级分中50%的细胞含有大的(大于5微米)脂滴,而较重级分中这一比例为6%。一只170克重的大鼠,富含脂质和脂质贫乏细胞的平均产量分别约为65×10⁶和170×10⁶个细胞。灌注前肝脏以及分离和洗涤后的细胞级分的电子显微镜照片显示超微结构完整。从喂食不含乙醇的高脂肪液体饲料或普通饲料的大鼠中分离肝细胞悬液,通常可得到两个细胞级分,密度分别约为1.08和1.10克/毫升以及1.10和1.12克/毫升。根据ATP含量、棕榈酸氧化和酯化速率以及蛋白质合成速率判断,分级分离过程未改变细胞级分的代谢能力。