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D Ritter

Publications and source records attributed to D Ritter.

58 records · Page 4Linked to original sources

[Calcium and phosphate metabolism in hemofiltration (author's transl)].

In 10 patients undergoing hemofiltration treatment acute changes of parameters in the calcium-phosphate metaboism were investigated. Balance studies were also performed in all patients. Control studies were conducted after a 3-month interval in 7 patients. Whereas ionized calcium and 25-HCC remained constant, there was a significant decrease in phosphate, magnesium, fluoride and parathyroid hormone. Corresponding to these results, negative balances could be seen during the course of a hemofiltration treatment: for phosphate a mean value of -593 mg, for magnesium -8.4 mEq and for fluoride -458 microgram. When a calcium content of 3.75 mEq/l was used in the substitution solution, an only slightly positive calcium balance of +1.51 mEq/l (mean value) was found. A significant correlation between calcium and fluid balance was demonstrated by means of 197 filtration treatments of one patient: the calcium balance became negative whenever the fluid loss was greater than 3.86 liters. After a 3-month period no significant changes in the above parameters were found, which indicates, that disturbances in the calcium-phosphate-parathyroid hormone metabolism do not only lie in a reduced renal elimination. Even though our results do not indicate that hemofiltration treatment induces or increases the chances of renal osteodystrophy, the calcium concentration of the substitution solution should be increased to 4.0 mEq/l, in order to guarentee a positive calcium balance even by forced filtration.

Adolescent↗

Parathyroid hormone, calcium and phosphate balance in hemofiltration.

The acute changes in calcium, phosphate and parathyroid hormone have been examined in chronic renal failure patients under-going hemofiltration therapy and the results compared to a similar group treated by hemodialysis. In both groups there was a significant increase in Catot (0.32 mEq/1 for hemodialysis; 0.56 m Eq/1 for hemofiltration) with Ca++ remaining constant. Plasma phosphate and parathyroid hormone decreased during hemofiltration. Calcium balances were slightly positive and phosphate balances distinctly negative in all cases. To date there is no indication of induced osteodystrophy during hemofiltration therapy, although long-term studies are needed. However, the present results indicate, that hemofiltration more closely approaches the physiological situation than conventional hemodialysis.

Calcium↗

In situ hybridization of human erythropoietin in pre- and postnatal kidneys.

Due to the transient transcription of the gene of erythropoietin (EPO) in response to hypoxic stimuli, localization within the cell of origin in humans has not been possible. Under acutely induced transcription of the EPO gene, through severe bleeding (hematocrit < 10%), EPO transcripts were detected within renal interstitial cells in rodents. However, by immunohistochemistry or tissue culture, human tubular epithelial cells or glomerular mesangium have been shown to produce EPO, suggesting a species difference. Aiming to investigate the precise location of EPO in intact human kidneys, 38 fetal, infant, and adult kidneys were examined by in situ hybridization. Kidneys from patients with conditions predisposing to severe hypoxia and/or induced polycythemia were utilized, because under these conditions active EPO mRNA synthesis is expected. We found specific EPO mRNA transcripts within a small population of cortical interstitial cells of near-term or postnatal kidneys.

Adult↗