Search PubMed⌕ Search

Biomedical subjects

J Ericsson

Publications and source records attributed to J Ericsson.

69 records · Page 4Linked to original sources

Subcellular characterization of the transferrin-transferrin receptor and iron accumulating system of established human erythroid and monoblastoid tumour cell lines.

The organelles in two human tumour cell lines in culture - U-937 and K-562 - involved in the receptor mediated endocytosis (RME) of transferrin (Tf) were studied after isolation from homogenates by density gradient separation. They were also studied by electron microscopy after labelling of living cells with Tf coated colloidal gold particles. Three different Tf containing fractions with densities 1.038 (plasma membrane), 1.040 (light endosomes) and 1.051 g/ml (heavy endosomes) were identified. Ultrastructural studies of the distribution of gold label indicated that Tf was present in structures normally involved in RME of other ligands, probably including the recently identified "compartment of uncoupling of receptor-ligand complex" (CURL). The endocytosed iron was found to be rapidly transferred into the cytosol, as shown by density gradient centrifugation. Isoelectric focusing analysis showed that the iron mainly became bound in ferritin. In the hemoglobin synthesizing cell line K-562, however, iron was also inserted into hemoglobin. The finding that heavy and light endosomes process Tf suggests that Tf follows the same route as other ligands, including the epidermal growth factor and low density lipoprotein, in a presumed prelysosomal pathway, despite the fact that Tf does not dissociate from its receptor. Our findings are thus consistent with the notion that an endosome system similar to that in other types of RME is responsible for the cleavage and separation of iron from the carrier Tf.

Cell Line↗

Morphologic and histochemical studies on the differing radiosensitivity of ductular and acinar cells of the rat submandibular gland.

The submandibular glands of male rats were exposed to 50 Gy X-irradiation as a single dose, with or without pre-treatment with either alpha-adrenergic agonists (noradrenaline, phenylephrine) or a cholinergic antagonist (atropine). The effects were analyzed by morphometric, cytochemical and biophysical methods. When X-irradiated without drug pre-treatment, many serous epithelial cells of the intralobular convoluted ducts displayed morphologic evidence of irreversible radiation damage, in contrast to neighbouring mucous and other cells which were unaffected. The effect was maximal 96 h after irradiation. Serous cells from animals irradiated after pre-treatment with atropine showed much more wide-spread injury than those of animals exposed to X-irradiation only. In contrast , serous cells suffered considerably less damage if their secretory granules had been depleted 1 or 2 h before irradiation with either noradrenaline or phenylephrine. Other epithelial cells showed no modulation of their slight radioresponsiveness by these drugs. The observations were substantiated by morphometry of three cell types: (a) mucous cells, (b) non-granulated serous and intralobular striated duct cells, and (c) granulated serous cells. The findings suggest that the striking radiosensitivity of salivary gland serous epithelial cells is linked to their content of secretory granules. These granules are rich in heavy metals, as demonstrated cytochemically with the sulphide silver method (SSM). Using particle-induced X-ray emission ( PIXE ) spectroscopy, the principal metals were shown to be Zn, Mn and Fe. It is conceivable that membranes which enclose organelles rich in metals with the ability to form redox systems (e.g. Fe2+ in equilibrium Fe3+) show enhanced sensitivity to radiation damage due to the metal-catalyzed induction of lipid peroxidation by ionizing radiation. Disruption of secretory granules would be expected to release lytic enzymes into the cell sap, resulting in autolysis. This hypothesis is supported by the findings that atropine--which increases the number of granulated serous cells--enhances radiosensitivity, while noradrenaline and phenylephrine--which cause degranulation of serous cells--decrease radiosensitivity.

Animals↗

Macrophage radiosensitivity in culture as a function of exposure to ionic iron.

The effects of various concentrations of Fe3+ (30-125 microM) and various doses of X-irradiation (10 to 30 Gy) on the survival of mouse peritoneal macrophages in culture was tested and compared with the effect of combinations of both Fe3+ and X-irradiation. Exposure of the cells to 30 microM Fe3+ or 10 Gy did not significantly alter the survival pattern, as compared with control cells. Greater dosages of iron or X-irradiation caused increasing cellular degeneration and death. When the combined effect of 30 microM Fe3+ and 10 Gy was tested a pronounced decrease in survival time was noted. The production of malondialdehyde (MDA) was studied in cells cultured with and without iron and after exposure to X-irradiation. The results indicated an increasing peroxidative capacity in parallel with increasing dose and extent of exposure to iron and irradiation. Combinations of 30 microM Fe3+ and 10 Gy resulted in enhanced MDA production as compared with these treatments alone (in which levels of MDA did not differ from those in controls). The findings support the theory that cells containing iron-loaded lysosomes are abnormally sensitive to X-irradiation due to the catalytic activity of the Fe2+ in equilibrium with Fe3+ redox system on lipid peroxidation. The postulated mechanism involves disruption of lysosomal membranes as a consequence of increased lipid peroxidation, resulting in leakage of potent lytic enzymes into the cell sap causing cellular degeneration and death.

Animals↗

Multiple myeloma and occupation in Sweden.

The occurrence of multiple myeloma by occupational and industrial category was systematically assessed using the Swedish Cancer-Environment Registry, which links cancer incidence (1961-1979) with occupational data from the 1960 census. Incidence of multiple myeloma was significantly increased for a number of occupational groups such as farmers, smelter and metallurgy workers, and miners-quarrymen-rock blasters. Although caution must be applied in drawing causal inferences, this national linked-registry analysis may provide clues to the environmental determinants of multiple myeloma.

Humans↗