Abstract
At least seven compounds synthesized by cultured cells in amounts which should suffice for sustained growth have nevertheless proved under certain conditions necessary for survival (asparagine, cystine, glutamine, homocystine inositol, pyruvate, serine). In every instance so far examined, that requirement has been population-dependent, disappearing at cell densities sufficiently large to bring the concentration in the medium and in the cellular pool to metabolically effective levels before the cells died of the specific deficiency. At population densities of less than 100 cells per ml, serine was required by all cultured cells so far studied. With more exigent strains, such as the RT6 strain of rabbit fibroblast and the P388 mouse leukemia, the serine requirement disappeared only at populations in excess of 50,000 and 150,000 cells per ml, respectively. The requirement for pyruvate by the latter cell as an alternative to serine also disappeared at that population density. In a cystine-free medium there were population-dependent requirements for cystine, homocystine, or serine, depending on the experimental conditions. With methionine and glucose as cystine precursors, the critical population density permitting cellular survival and growth was in excess of 200,000 cells/ml. The provision of homocystine as an intermediate reduced the critical population density to 10,000 to 60,000 cells/ml; with the further provision of serine, the critical cell concentration permitting growth was reduced to 50 to 500 cells/ml. Cells adapted to glutamic acid, and capable of utilizing it as a substitute for glutamine, nevertheless required exogeneous glutamine at cellular densities of less than 50,000 cells per ml. In some experiments, the provision of asparagine reduced the critical population density to 10,000 cells/ml, presumably because of its glutamine-sparing action. Inositol is required by most cell lines, despite their demonstrated capacity to synthesize it from glucose. With at least one cell line (HeLa), sustained growth was occasionally achieved in an inositol-free medium if the population density was maintained in excess of 240,000 cells/ml. The possible implications of these findings with respect to the loss of specific organ functions in dispersed cell culture are discussed.
Keywords
TISSUE CULTURE/metabolism
MeSH Terms
Animals
Cell Count
Cell Culture Techniques
Cell Line
Cell Proliferation
Cells, Cultured
Glucose
Glutamine
Humans
Mammals
Mice
Serine
Tissue Culture Techniques/metabolism
Chemicals
Glutamine
Serine
Glucose
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
EAGLE H
PIEZ K
References (21)
21 references, click to expand
-
The biosynthesis of meso-inositol by cultured mammalian cells, and the parabiotic growth of inositol-dependent and inositol-independent strains.
J Biol Chem. 1960 Jul;235:1891-3
PMID: 13819084
-
The growth response of mammalian cells in tissue culture to L-glutamine and L-glutamic acid.
J Biol Chem. 1956 Feb;218(2):607-16
PMID: 13295214
-
The intracellular amino acid concentrations required for protein synthesis in cultured human cells.
J Biol Chem. 1961 Jul;236:2039-42
PMID: 13725477
-
The effect of cell population density on the amino acid requirements for poliovirus synthesis in HeLa cells.
J Exp Med. 1959 Sep 1;110:445-50
PMID: 13814142
-
Gel filtration: a method for desalting and group separation.
Nature. 1959 Jun 13;183(4676):1657-9
PMID: 13666849
-
Measurement of cell growth in tissue culture with a phenol reagent (folin-ciocalteau).
Proc Soc Exp Biol Med. 1956 Feb;91(2):305-7
PMID: 13297784
-
A quantitative study of the relationship between tryptophan and niacin in Neurospora.
J Biol Chem. 1952 Jan;194(1):269-78
PMID: 14927616
-
A modified procedure for the automatic analysis of amino acids.
Anal Biochem. 1960 Nov;1:187-201
PMID: 13735644
-
The utilization of phenylalanine and tyrosine for protein synthesis by human cells in tissue culture.
J Biol Chem. 1957 Oct;228(2):847-61
PMID: 13475365
-
The inhibition by glutamine of glutamyl transferase formation in cultures of human cells.
Biochim Biophys Acta. 1958 Feb;27(2):435-6
PMID: 13522759
-
Serial propagation of 3 strains of rabbit fibroblasts; their susceptibility to infection with vaccinia virus.
Proc Soc Exp Biol Med. 1956 Nov;93(2):200-4
PMID: 13379462
-
The biosynthesis of cystine in human cell cultures.
J Biol Chem. 1961 May;236:1425-8
PMID: 13725478
-
The free amino acid pool of cultured human cells.
J Biol Chem. 1958 Mar;231(1):533-45
PMID: 13538989
-
Myo-Inositol as an essential growth factor for normal and malignant human cells in tissue culture.
J Biol Chem. 1957 May;226(1):191-205
PMID: 13428752
-
Amino acid metabolism in mammalian cell cultures.
Science. 1959 Aug 21;130(3373):432-7
PMID: 13675766
-
Requirements for growth of single human cells.
Science. 1959 Jan 30;129(3344):252-4
PMID: 13624712
-
Response of CO2-deficient human cells in vitro to normal cell extracts.
Proc Soc Exp Biol Med. 1958 Dec;99(3):599-601
PMID: 13614435
-
Modern approaches to the study of mammalian cells in culture.
Experientia. 1960 Sep 15;16:385-98
PMID: 13773037
-
The role of glutamine in protein biosynthesis in tissue culture.
J Biol Chem. 1957 Aug;227(2):929-41
PMID: 13463014
-
Nutritional requirements for growth of a mouse lymphoma in cell culture.
Exp Cell Res. 1960 Nov;21:430-8
PMID: 13713878
-
Carbon dioxide metabolism in the Jensen and JA sarcomas in vitro.
Cancer Res. 1961 Sep;21:997-1000
PMID: 13773835