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Biomedical subjects

B D Drujan

Publications and source records attributed to B D Drujan.

32 records · Page 2Linked to original sources

Interrelated changes of amino acids in the retina and optic tectum of a marine fish with alterations of illuminating conditions.

Examination of interrelated changes in the concentrations of 'clusters' of amino acids provides evidence that individual amino acid levels in the tissues cannot be considered to vary independently. Such variations are observed when the CNS at 'rest' is stimulated. Alterations in taurine cause changes in glutamic acid and also modify its anatomically related compartmentalized metabolism. Similar interdependent modifications may be indicated for the concentrations of 3 biochemically related neutral amino acids: threonine, serine and glycine. With specific reference to the fish optic tectum and retina, certain differences and coincidences in the regulation of GABA and glycine have also been uncovered. Finally, many of the findings presented here are closely analogous to results obtained when comparing normal and epileptic mammalian tissues. Possibly, this analogy can be attributed to the fact that the physiological states so far investigated, from the most simplistic point of view, represent extreme variations of nervous tissue excitation.

Amino Acids↗

Some properties of phenylethanolamine-N-methyltransferase of rat brain.

Phenylethanolamine-N-methyltransferase (PNMT, EC 2.1.1.28) was partially purified from rat brain. Brain homogenates were subjected to ultracentrifugation, salt fractionation, and gel filtration on Sephadex G-100. To compare the rat brain PNMT with that of adrenals, the same procedure was carried out with rat adrenal homogenates. The brain enzyme was eluted from Sephadex as a single fraction with a molecular weight of 26,900, while the enzyme from adrenals under the same conditions appeared in two fractions with molecular weights of 38,700 and 108,500. The brain fraction separated on Sephadex G-100 was active on phenylethanolamine substrates and inactive on indoleamine and phenylethylamine substrates. Products of the enzyme reaction were identified by bidimensional thin-layer chromatography as N-methyl derivatives of the corresponding amines. Kinetic studies showed that the type of inhibition of PNMT from rat brain and rat adrenals by SK&F 7698 was the same as described for PNMT from rabbit adrenals. Also, when normetanephrine and S-adenosyl-L-methionine were used as substrates, the apparent Km values found with PNMT from rat adrenals and rat brain were similar.

Adrenal Glands↗

Effects of catecholamines on the horizontal cell membrane potential in the fish retina.

The effects of catecholamines (CA) and certain related compounds on the horizontal cell membrane potential were examined in the retina of the teleost (Eugerres plumieri). Each CA compound (dopamine, noradrenaline, and adrenaline) had a similar effect on each class of horizontal cell (photopic L- and C-type, scotopic L-type). The threshold effect, seen with 25-50 microM CA, was an enlargement of both center and surround responses in general. At higher concentrations (100-200 microM), CA augmented the center response and attenuated the surround considerably; these reciprocal changes usually were associated with moderate depolarization. Recovery took place in 15-20 min. The results indicate that up to a certain concentration CA do not affect directly the transmission from photoreceptors to horizontal cells. The lateral propagation of S-potential, however, appears selectively affected by CA. alpha-Methylnoradrenaline, 5-hydroxydopamine, and serotonin caused the same effect on horizontal cells as CA. Reserpine, clonidine, and L-dopa mimic the CA effect only after prior application of CA. Phentolamine blocked while propranolol, haloperidol, and pimozide did not influence the DA effect. We conclude that alpha-adrenergic receptors probably are involved in the CA-induced changes observed in horizontal cells.

Animals↗