author_facet Brouty‐Boyé, D.
Macieira‐Coelho, A.
Fiszman, M.
Gresser, I.
Brouty‐Boyé, D.
Macieira‐Coelho, A.
Fiszman, M.
Gresser, I.
author Brouty‐Boyé, D.
Macieira‐Coelho, A.
Fiszman, M.
Gresser, I.
spellingShingle Brouty‐Boyé, D.
Macieira‐Coelho, A.
Fiszman, M.
Gresser, I.
International Journal of Cancer
Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
Cancer Research
Oncology
author_sort brouty‐boyé, d.
spelling Brouty‐Boyé, D. Macieira‐Coelho, A. Fiszman, M. Gresser, I. 0020-7136 1097-0215 Wiley Cancer Research Oncology http://dx.doi.org/10.1002/ijc.2910120126 <jats:title>Abstract</jats:title><jats:p>Interferon inhibits multiplication of murine leukemia L1210 cells and the effect is evident 18 h after subcultivation. At this time a significant decrease in the synthesis of total RNA and protein was observed in interferon‐treated cultures compared to control cultures. Likewise, the formation of polyribosomes was inhibited in interferon‐treated cultures although no effect was observed on the formation of the ribosomal subunits. As control cells and interferon‐treated cells continued to multiply and the cultures attained cell density saturation, the differences in macromolecular synthesis and polyribosome formation between the cultures became less marked. Confidence that interferon itself was responsible for the effects observed stemmed from the use of highly purified interferon preparations and the availability, as a cell control, of a subline of L1210 cells resistant to interferon action. The possibility that a single mechanism of action is common to the antiviral effect of interferon and its effect on cell division is discussed.</jats:p> Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells <i>in vitro</i> International Journal of Cancer
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series International Journal of Cancer
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title Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
title_unstemmed Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
title_full Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
title_fullStr Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
title_full_unstemmed Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
title_short Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
title_sort interferon and cell division. viii. effect of interferon on macromolecular synthesis in l1210 cells <i>in vitro</i>
topic Cancer Research
Oncology
url http://dx.doi.org/10.1002/ijc.2910120126
publishDate 1973
physical 250-258
description <jats:title>Abstract</jats:title><jats:p>Interferon inhibits multiplication of murine leukemia L1210 cells and the effect is evident 18 h after subcultivation. At this time a significant decrease in the synthesis of total RNA and protein was observed in interferon‐treated cultures compared to control cultures. Likewise, the formation of polyribosomes was inhibited in interferon‐treated cultures although no effect was observed on the formation of the ribosomal subunits. As control cells and interferon‐treated cells continued to multiply and the cultures attained cell density saturation, the differences in macromolecular synthesis and polyribosome formation between the cultures became less marked. Confidence that interferon itself was responsible for the effects observed stemmed from the use of highly purified interferon preparations and the availability, as a cell control, of a subline of L1210 cells resistant to interferon action. The possibility that a single mechanism of action is common to the antiviral effect of interferon and its effect on cell division is discussed.</jats:p>
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author Brouty‐Boyé, D., Macieira‐Coelho, A., Fiszman, M., Gresser, I.
author_facet Brouty‐Boyé, D., Macieira‐Coelho, A., Fiszman, M., Gresser, I., Brouty‐Boyé, D., Macieira‐Coelho, A., Fiszman, M., Gresser, I.
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description <jats:title>Abstract</jats:title><jats:p>Interferon inhibits multiplication of murine leukemia L1210 cells and the effect is evident 18 h after subcultivation. At this time a significant decrease in the synthesis of total RNA and protein was observed in interferon‐treated cultures compared to control cultures. Likewise, the formation of polyribosomes was inhibited in interferon‐treated cultures although no effect was observed on the formation of the ribosomal subunits. As control cells and interferon‐treated cells continued to multiply and the cultures attained cell density saturation, the differences in macromolecular synthesis and polyribosome formation between the cultures became less marked. Confidence that interferon itself was responsible for the effects observed stemmed from the use of highly purified interferon preparations and the availability, as a cell control, of a subline of L1210 cells resistant to interferon action. The possibility that a single mechanism of action is common to the antiviral effect of interferon and its effect on cell division is discussed.</jats:p>
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spelling Brouty‐Boyé, D. Macieira‐Coelho, A. Fiszman, M. Gresser, I. 0020-7136 1097-0215 Wiley Cancer Research Oncology http://dx.doi.org/10.1002/ijc.2910120126 <jats:title>Abstract</jats:title><jats:p>Interferon inhibits multiplication of murine leukemia L1210 cells and the effect is evident 18 h after subcultivation. At this time a significant decrease in the synthesis of total RNA and protein was observed in interferon‐treated cultures compared to control cultures. Likewise, the formation of polyribosomes was inhibited in interferon‐treated cultures although no effect was observed on the formation of the ribosomal subunits. As control cells and interferon‐treated cells continued to multiply and the cultures attained cell density saturation, the differences in macromolecular synthesis and polyribosome formation between the cultures became less marked. Confidence that interferon itself was responsible for the effects observed stemmed from the use of highly purified interferon preparations and the availability, as a cell control, of a subline of L1210 cells resistant to interferon action. The possibility that a single mechanism of action is common to the antiviral effect of interferon and its effect on cell division is discussed.</jats:p> Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells <i>in vitro</i> International Journal of Cancer
spellingShingle Brouty‐Boyé, D., Macieira‐Coelho, A., Fiszman, M., Gresser, I., International Journal of Cancer, Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro, Cancer Research, Oncology
title Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
title_full Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
title_fullStr Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
title_full_unstemmed Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
title_short Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
title_sort interferon and cell division. viii. effect of interferon on macromolecular synthesis in l1210 cells <i>in vitro</i>
title_unstemmed Interferon and cell division. VIII. Effect of interferon on macromolecular synthesis in L1210 cells in vitro
topic Cancer Research, Oncology
url http://dx.doi.org/10.1002/ijc.2910120126