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Biomedical subjects

J Tatsuno

Publications and source records attributed to J Tatsuno.

At least 37 records · Page 2Linked to original sources

Age associated alteration of lidocaine metabolism is position selective.

Patterns of associated alterations in N-deethylation, 3-hydroxylation, and aromatic methylhydroxylation of a single substrate, lidocaine in liver microsomes from 0.7 - 28 months old Fischer 344 rats were examined. These three patterns were all different from one another. In addition to this position selectiveness, a clear sex difference was observed in the pattern of alteration in N-deethylation. These results are consistent with the hypothesis that age associated alterations in drug metabolism are caused by age associated alterations in relative abundance of multiple species of cytochrome P-450.

Aging↗

Development of sensitivity to GABA and glycine in cultured cerebellar neurons.

The effects of iontophoretically applied gamma-aminobutyric acid (GABA) and glycine on developing cerebellar neurons cultured for 7-40 days were intracellularly investigated. All neurons tested dose-dependently responded to both GABA and glycine. In mature neurons (after 25 days in culture) these amino acids inhibited spontaneous spikes, decreased the membrane input resistance and induced either hyperpolarization or depolarization of membrane potential. The mean reversal potential was -47 mV for GABA and -43 mV for glycine. Immature neurons, 7-12 days in culture, which were not spontaneously firing, also behaved in a similar manner as the mature ones, though the membrane resistance was not so largely changed by GABA or glycine and the reversal potential was more positive (-39 mV for GABA, -37 mV for glycine). These reversal potentials were shifted toward 0 mV by lowering the external Cl- concentration in either mature or immature neurons. The effects of GABA and glycine on mature or immature neurons were more or less inhibited by all of picrotoxin, bicuculline and strychnine. The effective concentrations of these antagonists, however, were lower in general in immature neurons. In mature neurons, picrotoxin and bicuculline became more selective to GABA than glycine and strychnine became more selective to glycine than GABA. These results suggest that sensitivities to GABA and glycine differentiate into selective types in the course of maturing of cerebellar cultured neurons.

Action Potentials↗

Field mapping of EEG by unbiased polynomial interpolation.

The technique for field mapping of EEG using interpolation by an unbiased estimator of two-dimensional isotropic higher-order polynomial is developed. Assuming that the observed EEG contains noise, this method permits free positioning of the electrodes and does not reveal artificial oscillations as large as those of the Gibbs' phenomenon as in the case of the widely used Fourier interpolation. In the example of RMS (root mean square) amplitude at anesthesia, the onset of the fast activities began to appear clearly in the frontal and occipital area. By this method, not only RMS amplitude, but also instantaneous amplitude, such as visual evoked potential and somatosensory evoked potential, can be mapped.

Anesthesia↗

Combined spikes induced by Ca and Na currents in cultured cerebellar neurons from the chick embryo.

Evoked spikes in explanted cerebellar neurons cultured for 17-25 days, presumably including Purkinje cells, were not completely blocked by 10(-5) g/ml TTX. The TTX-resistant components of the spike were suppressed by Co2+ or Mn2+. It is suggested that combined Ca and Na components are involved in spike generation mechanisms in cultured neurons from the chick cerebellum and that they may be related to the maturation process of excitable membranes of cell soma.

Animals↗

The development of action potentials in cultures of explanted cortical neurons from chick embryos.

Action potentials of explanted cortical neurons from 7- to 9-day chick embryos were investigated at different stages during culturing. The maximum rates of rise of action potentials gradually increased and reached a plateau level at about 1 month in culture. Action potentials were resistant to 10(-7) g/ml tetrodotoxin (TTX) at early stages, became sensitive to TTX in an age-dependent manner, and almost all action potentials were blocked by this concentration of TTX after 25 days. However, 10(-5) g/ml TTX suppressed action potentials at early stages. When action potentials were suppressed by TTX, impulses could still be obtained from immature neurons following addition of 10 mM Ca2+ to the saline. This effect was not observed in mature neurons. The application of 10 mM Mn2+ frequently enhanced action potentials in immature neurons. This effect was not blocked by TTX (10(-5) g/ml) or the removal of external Na+. These results suggest that action potentials in immature neurons depend on Ca2+ and Na+, that Mn2+ can pass through Ca channels, that the sensitivity to TTX develops as the contribution by Na+ becomes greater, and that the contribution by Ca2+ diminishes during maturation.

Action Potentials↗

Effects of Ca ions on action potentials in immature cultured neurons from chick cerebral cortex.

Action potentials evoked by depolarizing pulses were studied in immature cultured cerebral cortical neurons from chick embryos. The majority of action potentials were rather small, and they were still elicited in the presence of 10(-7) gm/ml tetrodotoxin (TTX), but were almost completely abolished in NA+-free solution or by 10(-5) gm/ml TTX in Tyrode's solution. The elevation of external Ca2+ concentration not only increased the maximum rates of rise of action potentials in normal Tyrode's solution with and without low (10(-7) gm/ml) TTX but also regenerated action potentials in high (10(-5) gm/ml) TTX-containing Tyrode's solution or in Na+-free solution. These high Ca2+ effects were blocked by Mn2+ or Co2+. These results suggest that action potentials, which were predominantly Na-dependent, are partially contributed by Ca ions in immature chick cerebral cortical neurons.

Action Potentials↗