Role of NK cells in resistance of Syrian golden hamsters to radiation-induced lymphoma-leukemia

The results suggest that hamsters are more resistant than mice to radiation leukemogenesis because their NK cell activity recovers more quickly after fractionated irradiation without marrow injection. This correlates well with, and further corroborates, the important role of NK cell activity in the...

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Published inBiomedicine & pharmacotherapy Vol. 40; no. 3; p. 106
Main Authors Trentin, J J, Datta, S K
Format Journal Article
LanguageEnglish
Published France 1986
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Abstract The results suggest that hamsters are more resistant than mice to radiation leukemogenesis because their NK cell activity recovers more quickly after fractionated irradiation without marrow injection. This correlates well with, and further corroborates, the important role of NK cell activity in the prevention of irradiation leukemogenesis.
AbstractList The results suggest that hamsters are more resistant than mice to radiation leukemogenesis because their NK cell activity recovers more quickly after fractionated irradiation without marrow injection. This correlates well with, and further corroborates, the important role of NK cell activity in the prevention of irradiation leukemogenesis.
Author Trentin, J J
Datta, S K
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Snippet The results suggest that hamsters are more resistant than mice to radiation leukemogenesis because their NK cell activity recovers more quickly after...
SourceID pubmed
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StartPage 106
SubjectTerms Animals
Cricetinae
Immunity, Innate
Killer Cells, Natural - physiology
Killer Cells, Natural - radiation effects
Leukemia, Radiation-Induced - immunology
Lymphoma - immunology
Mesocricetus
Title Role of NK cells in resistance of Syrian golden hamsters to radiation-induced lymphoma-leukemia
URI https://www.ncbi.nlm.nih.gov/pubmed/3742008
Volume 40
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