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Biomedical subjects

G Göpfert

Publications and source records attributed to G Göpfert.

2 recordsLinked to original sources

Response of kidney and bone to parathyroid hormone in children receiving anticonvulsant drugs.

The response of kidney and bone to parathyroid extract (PTE) was investigated in 8 epileptic children on long-term treatment with primidone in combination with phenytoin or other anticonvulsant drugs. The results indicate a dissociation between normal and cyclic AMP excretion and disturbed renal handling of phosphate which resembles type II pseudohypoparathyroidism suggesting an anticonvulsant drug related inhibition of cyclic AMP-induced phosphaturia. It is speculated that antiepileptic drugs may provoke renal conservation of phosphate which may explain the relative low incidence of manifest rickets or osteomalacia in site of low 25-hydroxy-vitamin D levels in epileptic patients. A normal bone response of PTE indicates that antiepileptic treatment with phenobarbital and phenytoin does not affect PTH-stimulated bone resorption in the investigated patients.

Adolescent↗

Renal threshold phosphate concentration (TmPO4/GFR).

The ratio of maximum rate of renal tubular reabsorption of phosphate to glomerular filtration rate (TmPO4/GFR) was determined in 546 schoolchildren, aged between 6 and 17.9 years, using the nomogram of Walton and Bijvoet.1 TmPO4/GFR correlated with chronological age in girls and boys and in each remained significantly higher than in adults. TmPO4/GFR in the children correlated neither with fasting serum immunoreactive calcitonin and parathyroid hormone levels nor with the urinary cyclic AMP excretion. The study showed a parallel decrease in TmPO4/GFR, excretion of total hydroxyproline and serum alkaline phosphatase activities after puberty, with a significant relationship of both these indices of bone turnover to TmPO4/GFR values. This indicates that the high renal phosphate threshold of children may be an important factor for bone mineralisation by providing high extracellular inorganic phosphate concentrations during normal growth.

Adolescent↗