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Biomedical subjects

G Guroff

Publications and source records attributed to G Guroff.

At least 127 records · Page 7Linked to original sources

Ultrastructural changes in rat optic nerve associated with hyperphenylalaninemia induced by para-chlorophenylalanine and phenylalanine.

The morphologic effects of hyperphenylalaninemia induced by treatment with para-chlorophenylalanine (PCP) plus phenylalanine on optic nerve were studied in developing F344 rats. PCP and phenylalanine were infected daily between days 5 and 20 days of life. At 20 days optic nerve of treated animals, as compared with saline-injected controls, showed enhanced neuroglial activity with broad astrocytic septae and debris-laden oligodendrocytes. In specimens obtained long after treatment with PCP and phenylalanine, continuing gliosis with evidence of focally abnormal myelination and axonal degeneration were observed. The results are consistent with a metabolic insult sustained in early development by astrocytes and oligodendrocytes, and are considered in relation to other work in experimental hyperphenylalaninemia and to human phenylketonuria.

Animals↗

The enduring behavioral changes in rats with experimental phenylketonuria.

The biochemical features of phenylketonuria have been reproduced in developing rat pups by administering to them a combination of p-chloro-DL-phenylalanine plus L-phenylalanine for the first 21 days after birth. During the treatment period, the experimental animals show delayed eye opening and decreased brain weight compared with controls given saline. Neuropathological examination of developing animals reveals deficient myelination and some inhibition of cerebellar maturation. When tested as adults, after a long recovery period, animals with phenylketonuria are hyperactive in activity wheels. Adult rats are deficient in reversing a position choice and demonstrate impaired performance in a Y-maze. Rats treated with p-chloro-DL-phenylalanine plus L-phenylalanine during the vulnerable period of rapid brain development thus have enduring behavioral changes that persist throughout life.

Age Factors↗

Enduring behavioral changes in rats with experimental phenylketonuria.

Several criticisms of past attempts to produce experimental phenylketonuria are discussed, and a model that appears to meet these criticisms is presented. This model uses inhibition in rats of phenylalanine hydroxylase (EC 1.14.3.1) by p-chlorophenylalanine and supplementation with phenylalanine to produce a high ratio of phenylalanine to tyrosine in their blood. By this method, an experimental subject is produced whose behavioral, neurological, and biochemical characteristics are similar to those of clinical patients with phenylketonuria.

Aggression↗