Proliferative Response of Type 2 Lung Epithelial Cells after X Rays and Fission Neutrons
Kathleen R. Meyer, Hanspeter Witschi, Robert L. Ullrich
Abstract
Kathleen R. Meyer, Hanspeter Witschi, Robert L. Ullrich
Abstract
A method has been developed for study of the type 2 epithelial cell population in situ in BALB/c mouse lung by measurement of the uptake of (/sup 14/C)thymidine into DNA of pulmonary cells after stimulation with the antioxidant butylated hydroxytoluene (BHT). Within 2 days of BHT injection there was a marked increase in total lung weight, total labeling index, and (/sup 14/C)thymidine incorporation. Autoradiographic procedures revealed that the proliferative response 2 days after BHT was due primarily to type 2 alveolar cells, which comprised 80% of the (/sup 3/H)thymidine-labeled lung cells at that time. Therefore it appeared that this system might provide a means of monitoring the type 2 cell population after irradiation. Radiation modified the BHT-induced proliferative response in a dose-dependent manner, but it did not alter the relative number of labeled cell types in the lung. Thus 2 days after mice were treated with irradiation and BHT, when the proliferative response was due to type 2 cells, (/sup 14/C)-thymidine incorporation and DNA levels in the lung were determined after various doses of 300-kVp x rays and fission neutrons. Dose-response curves were generated from these data, and the radiation response was characterized by the reciprocal of the slope ofmore » the exponential region of the curves, designated D/sub 0/(PF). When irradiation was followed immediately by the proliferative stimulus BHT, the D/sub 0/(PF) values were 120 rad for 300-kVp x rays and 60 rad for fission neutrons. Based on these D/sub 0/(PF) values, relative biological effectiveness of 2.0 was obtained.« less
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A method has been developed for study of the type 2 epithelial cell population in situ in BALB/c mouse lung by measurement of the uptake of (/sup 14/C)thymidine into DNA of pulmonary cells after stimulation with the antioxidant butylated hydroxytoluene (BHT). Within 2 days of BHT injection there was a marked increase in total lung weight, total labeling index, and (/sup 14/C)thymidine incorporation. Autoradiographic procedures revealed that the proliferative response 2 days after BHT was due primarily to type 2 alveolar cells, which comprised 80% of the (/sup 3/H)thymidine-labeled lung cells at that time. Therefore it appeared that this system might provide a means of monitoring the type 2 cell population after irradiation. Radiation modified the BHT-induced proliferative response in a dose-dependent manner, but it did not alter the relative number of labeled cell types in the lung. Thus 2 days after mice were treated with irradiation and BHT, when the proliferative response was due to type 2 cells, (/sup 14/C)-thymidine incorporation and DNA levels in the lung were determined after various doses of 300-kVp x rays and fission neutrons. Dose-response curves were generated from these data, and the radiation response was characterized by the reciprocal of the slope ofmore » the exponential region of the curves, designated D/sub 0/(PF). When irradiation was followed immediately by the proliferative stimulus BHT, the D/sub 0/(PF) values were 120 rad for 300-kVp x rays and 60 rad for fission neutrons. Based on these D/sub 0/(PF) values, relative biological effectiveness of 2.0 was obtained.« less
Key concepts: Radiochemistry, Fission, Neutron, Irradiation, Chemistry, Physics, Nuclear physics