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Egg Yolk Lipoprotein, a New Supplement for the Growth of Mammalian Cells in Serum-free Medium : Egg Yolk Lipoprotein for Serum-free Growth of Cells

Overview
Journal Cytotechnology
Specialties Biotechnology
Genetics
Date 2012 Feb 24
PMID 22358568
Citations 14
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Abstract

Egg yolk lipoprotein promoted growth of a wide variety of mammalian cell lines, including plasma-cytomas and epithelial cell lines, in serum-free medium. The lipoprotein was active for cell growth when used with insulin, transferrin, ethanolamine and selenite. The most active lipoprotein fraction (YLP-pI7.5) was purified to give a single peak by chromatofocusing and gel filtration, and was homogeneous on a 0.35% agarose gel electrophoretogram. The lipoprotein was characterised as a very low density lipoprotein with a protein content of only 1.3%. This lipoprotein had an optimal concentration of 300 μg/ml (4 μg protein/ml). It was easily separable from proteinous molecules secreted into the serum-free medium by the cells, since it floated on the surface of the medium after addition of ammonium sulfate, to precipitate protein, and centrifugation. An associated structure of lipid and protein seemed to be still necessary for the lipoprotein to exhibit a growth promoting activity.

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References
1.
Takazawa Y, Tokashiki M, Murakami H, Yamada K, Omura H . High-Density culture of mouse-human hybridoma in serum-free defined medium. Biotechnol Bioeng. 1988; 31(2):168-72. DOI: 10.1002/bit.260310210. View

2.
Shipley G, HAM R . Multiplication of Swiss 3T3 cells in a serum-free medium. Exp Cell Res. 1983; 146(2):249-60. DOI: 10.1016/0014-4827(83)90127-1. View

3.
BAGINSKI E, FOA P, ZAK B . Microdetermination of inorganic phosphate, phospholipids, and total phosphate in biologic materials. Clin Chem. 1967; 13(4):326-32. View

4.
Murakami H, Hashizume S, Ohashi H, Shinohara K, Yasumoto K, Nomoto K . Human-human hybridomas secreting antibodies specific to human lung carcinoma. In Vitro Cell Dev Biol. 1985; 21(10):593-6. DOI: 10.1007/BF02620891. View

5.
Bauer R, Arthur L, Fine D . Propagation of mouse mammary tumor cell lines and production of mouse mammary tumor virus in a serum-free medium. In Vitro. 1976; 12(8):558-63. DOI: 10.1007/BF02797439. View