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Biomedical subjects

C Hernández-Luna

Publications and source records attributed to C Hernández-Luna.

2 recordsLinked to original sources

Lead: intestinal absorption and bone mobilization during lactation.

The aim of this study was to examine lead (Pb) intestinal absorption, its mobilization and redistribution during lactation in rats chronically exposed to lead. Lead and calcium (Ca) concentrations were measured in blood, milk, femurs, liver and kidney samples obtained from pregnant and lactating mother rats which were subjected to different schedules of exposure to Pb: 158 days before and during lactation (group A), 144 days before lactation (group B) and 14 days only during lactation (group C). Results were compared to those of non-pregnant but Pb-exposed matched rats and non-exposed control rats. In groups A and B during lactation, Pb in blood (PbB), liver and kidney increased while Pb in bone decreased. Since there was not an external source of Pb in group B during lactation, the results indicate resorption of Pb in bone as the main source of Pb in the organism. In group A, there was an additional increase of PbB when compared to group B as a result of Pb intestinal absorption. In group C a significant increase in PbB due to intestinal absorption and deposit in bone was found when compared to non-pregnant 144 days old rats, suggesting that the three processes intestinal absorption, bone resorption and bone absorption were taking place. These data indicate that Pb stored in bone as a result of prior maternal exposure, should be considered as a major source of self intoxication and of Pb in milk available to suckling pups.

Administration, Oral↗

Mechanisms of the toxic effect of lead. I. Free lead in erythrocyte.

In this work, a selection of children was examined based on their free erythrocyte protoporphyrin (FEP) and total blood lead (PbB) contents. Two groups with clear differences in lead sensibility were selected. One group with high FEP levels (deep lead alteration), named "normal," and one group with low FEP levels (discrete lead alteration), named "lead tolerant," and both with similar PbB concentration, were formed. The selection, based on FEP level, showed a correlation with other indicators (neuromotor alterations). A lower activity of the enzymes Glyceraldehyde 3-phosphate dehydrogenase (GA3PD), Glucose 6-phosphate dehydrogenase (G6PD), 6-phosphogluconate dehydrogenase (6PGD), and Lactate dehydrogenase (LDH) was found in the normal group when compared to the tolerant group. Therefore, the influence of the lead acetate upon the same erythrocyte enzyme activities was investigated. Lead inhibition of the enzymes GA3PD and G6PD was found, and this inhibition could be related to the free lead content found in the erythrocytes. Inhibition of the enzymes 6PGD and LDH was also found, but these enzymes were not inhibited by exposure to lead acetate. Erythrocyte free lead content was high in the normal group when compared to the lead tolerant group and could be a determinant factor in the biochemical alterations found. Low erythrocyte free lead contents could be an indicator of lead tolerance. TCA-precipitation was found to be a useful method to evaluate free lead content; it gave similar results to gel filtration molecular chromathography.

Case-Control Studies↗