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Biomedical subjects

B Engfeldt

Publications and source records attributed to B Engfeldt.

54 records · Page 3Linked to original sources

Chubby: a new autosomal recessive skeletal mutation producing dwarfism in the mouse.

The chubby (cby) mutant is a previously undescribed skeletal mutation in the mouse. Breeding experiments showed that cby is a recessive mutant with complete viability, full penetrance and fertility in both sexes. Tests for allelism showed that the cby mutant is genetically unlike the somewhat similar mutants, stumpy (stm), pituitary dwarf (dw), spondylometaphyseal chondrodysplasia (smc), brachymorphic (bm), and achondroplasia (cn). The defects seem to occur mainly in growth cartilage. Microradiography revealed increased height of the epiphyseal growth plate and irregular bone trabeculae in the metaphysis. Light microscopy showed disturbed columnar organization of proliferative chondrocytes and pronounced signs of cellular disintegration. The hypertrophic zone, however, contained normally shaped chondrocytes arranged in regular columns. In spite of the normal cellular hypertrophy the pattern of cartilage mineralization was disturbed. The electron microscopy studies revealed very high amounts of matrix vesicles and numerous larger membrane coated structures in the extracellular matrix. Biochemical analysis of the affected growth cartilage revealed a slightly modified pattern of proteoglycan subpopulations and considerably longer chondroitin sulfate chains when compared with controls. From the present study it can be concluded that the cby mutant is a genetically and morphologically distinct condition with characteristic, somewhat rickets-like stigmata. The pathogenetic mechanism underlying the condition remains to be clarified.

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The effect of manganese ingestion, phosphate depletion, and starvation on the morphology of the epiphyseal growth plate. A stereologic study.

Oral administration of manganese to young rats results in poorly mineralized primary spongiosa and an irregularly thickened growth plate with a histologic resemblance to that in vitamin D-deficiency rickets. In the present study, the rachitic lesions were characterized by stereologic methods at the light microscopic level. With increasing doses of Mn in the diet, the animals developed rachitic lesions of increasing severity, i.e., the total height of the growth plate and the relative volume of the hypertrophic zone increased. The experimental animals developed hypophosphatemia, which was dependent on the Mn dose. The observed serum concentrations of Mn and phosphorus are compatible with the idea that MnHPO4 is precipitated in the gut, leaving only small amounts of Mn and phosphate available for absorption. Furthermore, the severity of the rachitic lesions were inversely correlated to the concentration of phosphate in serum. The most important pathomechanism in Mn rickets is phosphate depletion, which per se causes similar rachitic changes, even though Mn also seems to have other effects. Starvation caused a decrease in the height of the growth plate and in the volume fraction of the hypertrophic zone, thus changes contrary to the rachitic lesions.

Animals↗