Search PubMed⌕ Search

Biomedical subjects

K Tempel

Publications and source records attributed to K Tempel.

94 records · Page 6Linked to original sources

[Sedimentation of nucleoids from rat thymus and spleen cells following whole-body irradiation].

The sedimentation of nucleoids from thymic and splenic cells of rats was tested following total-body X-irradiation (TBI) with doses ranging from 24 to 1520 cGy. The principal results may be summarized as follows: 1) The nucleoid sedimentation of the cells was reduced immediately after TBI with doses of greater than or equal to 760 cGy. In the following postirradiation period, an enhancement of sedimentation rate has been observed which could be neutralized by addition of proteinase K to the nucleoid preparation. 2) When nucleoids were prepared 6 h after TBI with doses greater than or equal to 190 cGy, beside the main nucleoid band a smaller nucleoid fraction appeared in the ethidium bromide containing saccharose gradient. This fraction was of less sedimentability than the main nucleoid peak and could not be distinguished from pure, high molecular DNA. From the present results it is suggested that the reduction of the nucleoid sedimentation immediately following high doses of TBI is the result of primary (non-repaired) DNA lesions whereas the changes detectable some hours later are due to the secondary enzymatic changes connected with the interphase death of the cells. With respect to the detection of in vivo effects of X-irradiation, the nucleoid sedimentation has to be regarded much less sensitive than some biochemical and/or cytomorphological methods.

Animals↗

[Unscheduled DNA synthesis (DNA-repair) within splenic and thymic cells of the rat under the influence of UV-light, X-irradiation and/or methyl-methanesulfonate (author's transl)].

Unscheduled DNA synthesis (UDS) of splenic and thymic cells of the rat has been stimulated in vitro by UV-light (8-128 J x m-2), X-rays (120-3480 rd), methyl-methanesulfonate (MMS), and/or a combination of UV-light and X-irradiation. The height of UDS-induced stimulation of incorporation of [3H]thymidine into splenic and thymic cell DNA at saturation doses of UV-light (splenic cells: 8, thymic cells: 96 J x m-2) or X-irradiation (splenic cells: 960, thymic cells: approximately 3480 rd) suggest that the greater sensitivity of T-cells (represented by thymic cells) towards UV-light and the greater sensitivity of B-cells (represented by splenic cells) towards X-rays can be explained-at least partly-in terms of less efficient excision repair systems.

Animals↗

[Evaluation of occupational radiation exposure in veterinary radiographic diagnosis (a review)].

A short review is given about fundamental dose units, the carcinogenic risk coefficients of ionizing radiation, the radiation exposure and potential radiation effects in the veterinary practice. The fundamentals of radiation protection comprise, inter alia, a modern and efficient X-ray and protection equipment, radiation safety training, radiation detection devices and, especially, restricting the size of the primary beam.

Animal Technicians↗

[Chronic damage in domestic animals after ionizing radiation (review)].

Late effects have to be taken into account after survival of high doses of ionizing radiation, after protracted and fractionated exposure as well as after radiotherapy. In this respect species specific peculiarities become apparent. In burros, e.g., late effects after high dose of acute radiation exposure comprised shortening of lifetime. While in this species no tumors were seen, squamous-cell carcinoma around the eyes, in the skin above the sacral region and withers became apparent in cattle. Dogs developed tumors of different localisation, type and dignity after pre- and postnatal exposure. Cataracts appeared in cattle. Primarily, early cardiac failure (myocardial atrophy, fibrosis of the pericardial sac) was seen in chicken. After protracted and fractionated exposure especially the pig showed an exceptional tolerance. Late effects of the skin (atrophy), liver (degeneration), kidney (fibrosis) and nerves (neuropathy) were described in particular for dogs and pigs.

Animals↗