Education on AIDS during biology classes.
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Biomedical subjects
Publications and source records attributed to R McEwan.
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The expression of terminal deoxynucleotidyl transferase (TdT) in the thymus and bone marrow of irradiated mice has been examined. Mice given the leukemogenic regimen of irradiation of four weekly doses of 175 rads starting at 1 mo of age show a long-term elimination of TdT activity in the bone marrow and a reduction of TdT activity in thymocytes. In such mice, the reappearance of normal levels of TdT in the thymus appears to only be associated with the onset of overt leukemia. This effect on TdT expression was shown to be uniquely associated with the leukemogenic regimen of irradiation in that nonleukemogenic irradiation or variations such as bone marrow reconstitution or age which reduce leukemias did not show the same phenotypic effects on TdT expression. The basis for the loss of TdT-positive cells was shown not to be due to the lack of the requisite factors involved in differentiation, but rather to the ability of leukemogenic doses of irradiation to reduce or eliminate an inducible bone marrow stem cell. These results are discussed with respect to the possible mechanisms involved in radiation-induced leukemias in mice.
The humoral immune response against endogenous ecotropic murine leukemia viruses (MuLV) was examined in irradiated and control C57BL/6 mice. Control mice developed antibodies against MuLV slowly throughout life. In contrast, within 2-3 mo after irradiation 90% of irradiated C57BL/6 mice had developed detectable antibodies against MuLV. The characteristics of this immune response, however, were identical in control and irradiated mice in terms of peak titers, specificity for endogenous ecotropic MuLV, and reactivity against the ecotropic viruses' glycoprotein (gp71). Moreover, the rate of appearance of antibodies against MuLV in irradiated mice and the peak titers were generally not affected by age at irradiation, dose of irradiation (two, three, or four treatments of 175 R), or bone marrow reconstitution. Although the ability of irradiation to accelerate the appearance of antibody in a population of C57BL/6 mice suggested activation of endogenous ecotropic MuLV, there was no apparent correlation between the appearance of this immune response or its persistence and the development of lymphoma. Thus, the incidence of lymphoma was comparable in mice that: (a) developed no immune response; (b) developed an immune response only transiently after irradiation; or (c) developed an immune response which persisted until death from lymphoma. Moreover, experimental conditions that alter the ability of irradiation to induce leukemia, such as age, dose, or bone marrow reconstitution did so without significantly altering either the rate of appearance of a humoral immune response to MuLV or its peak titers. The results, therefore, fail to demonstrate any seroepidemological relationship between endogenous ecotropic MuLV and radiation-induced leukemia.