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A simple and efficient method for preparing partially purified phosvitin from egg yolk using ethanol and salts

机译:一种简单高效的方法,使用乙醇和盐从蛋黄中制备部分纯化的磷光蛋白

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The objective of this study was to develop a new protocol that could be used for large-scale separation of phosvitin from egg yolk using ethanol and salts. Yolk granules, which contain phosvitin, were precipitated after diluting egg yolk with 9 volumes of distilled water. The pH of the yolk solution was adjusted to pH 4.0 to 8.0 using 6 N HCl or NaOH, and then yolk granules containing phosvitin was separated by centrifugation at 3,220 x g for 30 min. Lipids and phospholipids were removed from the insoluble yolk granules using 85% ethanol. The optimal volumes and concentration of ethanol in removing lipids from the precipitants were determined. After centrifugation, the lipid-free precipitants were homogenized with 9 volumes of ammonium sulfate [(NH4)(2)SO4] or NaCl to extract phosvitin. The optimal pH and concentration of (NH4)(2)SO4 or NaCl for the highest recovery rate and purity for phosvitin in final solution were determined. At pH 6.0, all the phosvitin in diluted egg yolk solution was precipitated. Among the (NH4)(2)SO4 and NaCl conditions tested, 10% (NH4)(2)SO4 or 10% NaCl at pH 4.0 yielded the greatest phosvitin extraction from the lipid-free precipitants. The recovery rates of phosvitin using (NH4)(2)SO4 and NaCl were 72 and 97%, respectively, and their purity was approximately 85%. Salt was removed from the extract using ultrafiltration. The salt-free phosvitin solution was concentrated using ultrafiltration, the impurities were removed by centrifugation, and the resulting solution was freeze-dried. The partially purified phosvitin was suitable for human use because ethanol was the only solvent used to remove lipids, (NH4)(2)SO4 or NaCl was used to extract phosvitin, and ultrafiltration was used to remove salt and concentrate the extract. The developed method was simple and suitable for a large-scale preparation of partially purified phosvitin.
机译:这项研究的目的是开发一种新的协议,该协议可用于使用乙醇和盐从蛋黄中大规模分离出磷脂酰肌醇。用9倍体积的蒸馏水稀释蛋黄后,会沉淀出含有磷脂酰肌醇的蛋黄颗粒。使用6 N HCl或NaOH将蛋黄溶液的pH调节至4.0至8.0,然后通过以3,220 x g离心30分钟分离出含有磷脂酰肌醇的蛋黄颗粒。使用85%的乙醇从不溶的卵黄颗粒中除去脂质和磷脂。确定了从沉淀物中去除脂质的最佳乙醇体积和浓度。离心后,将无脂质的沉淀剂与9体积的硫酸铵[(NH4)(2)SO4]或NaCl匀浆以提取磷光蛋白。确定了最佳pH和(NH4)(2)SO4或NaCl的浓度,以使最终溶液中的磷脂酶的回收率和纯度最高。在pH 6.0时,沉淀的蛋黄溶液中所有的磷脂酶都沉淀出来。在测试的(NH4)(2)SO4和NaCl条件中,pH 4.0时10%(NH4)(2)SO4或10%NaCl可从无脂质沉淀物中提取最大的磷脂。使用(NH4)(2)SO4和NaCl回收磷霉素的回收率分别为72%和97%,其纯度约为85%。使用超滤从提取物中除去盐。使用超滤浓缩无盐的磷酸肌醇溶液,通过离心除去杂质,并将所得溶液冷冻干燥。由于乙醇是唯一用于去除脂质的溶剂,部分纯化的磷光蛋白适合人类使用,(NH4)(2)SO4或NaCl用于提取磷光蛋白,超滤用于去除盐和浓缩提取物。所开发的方法简单,适用于大规模制备部分纯化的磷光蛋白。

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