Differentiation in vitro: Effects of Sephadex Fractions of Chick Embryo Extract
- 2 September 1966
- journal article
- research article
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 153 (3740), 1116-1119
- https://doi.org/10.1126/science.153.3740.1116
Abstract
Chicken embryo extract has been fractionated into high-and low-molecular-weight components on Sephadex G-25. Media supplemented with the low-molecular-weight fraction (L) support full differentiation in clones of cartilage and of pigmented retina cells from chicken embryos. Growth rates of such cultures in L-supplemented media are greater than in media without embryo extract, and plating efficiencies are higher than in media with or without whole embryo extract. The high-molecular-weight fraction (H) in low concentrations also stimulates growth and plating efficiency, but inhibits the expression of differentiation.This publication has 15 references indexed in Scilit:
- Changes in melanogenesis during the dedifferentiation of chick retinal pigment cells in cell cultureDevelopmental Biology, 1963
- Clonal Analysis of MyogenesisScience, 1963
- An improved nutrient solution for diploid Chinese hamster and human cell linesExperimental Cell Research, 1963
- The stability of embryonic chick thyroid cells in vitro as judged by morphological and physiological criteriaDevelopmental Biology, 1962
- Proteolysis in Stored Serum and its Possible Significance in Cell CultureNature, 1960
- Nutrition Needs of Mammalian Cells in Tissue CultureScience, 1955
- THE SPECIFIC AMINO ACID REQUIREMENTS OF A HUMAN CARCINOMA CELL (STRAIN HELA) IN TISSUE CULTUREThe Journal of Experimental Medicine, 1955
- The Effect of Ultracentrifugation and Hyaluronidase on the Filtrability of Chick-Embryo Extract for Tissue Culture2JNCI Journal of the National Cancer Institute, 1953
- Relation of Oxygen and Temperature in the Preservation of Tissues by RefrigerationExperimental Biology and Medicine, 1949
- ARTIFICIAL ACTIVATION OF THE GROWTH IN VITRO OF CONNECTIVE TISSUEThe Journal of Experimental Medicine, 1913