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Biomedical subjects

A Szenthe

Publications and source records attributed to A Szenthe.

3 recordsLinked to original sources

Histidine decarboxylase in peripheral lymphocytes of healthy individuals and chronic lymphoid leukemia patients.

Histidine decarboxylase (HDC), the only enzyme capable of synthetizing histamine, has been found in many proliferating cells and tissues suggesting a role of histamine in cellular proliferation. In this study expression of HDC and the significance of histamine in the proliferation of peripheral lymphocytes of five healthy persons and six patients with chronic lymphoid leukemia (CLL) was examined. Expression of HDC mRNA and the protein was proved by reverse transcriptase polymerase chain reaction and by immunoblot, respectively. The role of histamine was studied in proliferation assays in the presence of irreversible inhibitor of the HDC (alpha-fluoromethylhistidine--aFMH) and also by competing for the intracellular binding sites of histamine using N,N-diethyl-2, 4-phenylmethyl-phenoxy-ethanamine-HCl (DPPE). By inhibiting the HDC enzyme activity by FMH and blocking the intracellular action of histamine by DPPE, a significant decrease in cell proliferation was observed in mitogen stimulated lymphocytes of healthy donors. In CLL patients the proliferation of leukemic lymphocytes was significantly inhibited by blocking the binding of histamine to intracellular binding sites by DPPE but not by FMH inhibiting only the de novo histamine formation. The observations suggest that HDC has functional relevance in lymphocytes, since mitogen induced lymphocyte proliferation of healthy donors is mainly enhanced by de novo synthesis and subsequent action of intracellular histamine. Alternatively, in constitutively proliferating chronic lymphoid leukemia cells we suggest that the preformed pool but not the de novo synthesized intracellular histamine interferes with cellular proliferation.

Cells, Cultured↗

Event-related potential evidence of semantic mismatch in a 'same-different' reaction time task.

In a 'same-different' reaction time (RT) task, suit (spades and/or hearts) target stimuli, and irrelevant suits (distractors) or plus signs (indifferent elements) were presented. The 'same' RT was shorter than the 'different' RT. This 'fast same' effect was independent of the RT increase caused by the distractor stimuli. Event-related potentials (ERPs) in trials with distractor elements were more negative in the 350-600 ms latency range than the ERPs of trials with different irrelevant elements.

Adult↗

Selection within fixation: event-related potentials in a visual matching task.

In a visual matching task, suit (spades and/or hearts) target stimuli and irrelevant stimuli (either spade and/or heart suits or plus signs) were presented to a field of 1 deg. The irrelevant stimuli appeared either beside or between the targets. The 'same-different' reaction times (RT) and the event-related potentials were measured. 'Same' RTs were found to be longer in the presence of suit distractors that were different from the target, than in the case of plus-sign irrelevant stimuli and irrelevant stimuli identical to the targets. This effect was larger when the irrelevant stimuli appeared between the targets. 'Different' RTs were longer in the presence of suit distractors and when the irrelevant stimuli were between the targets. In the 'same' trials, the latency of the late positive complex (P300) was larger in the suit distractor conditions, but this effect was unrelated to the target localization factor. Thus, the P300 latency seems to be related to the complexity of the stimulus display and thus to the difficulty of input processing. Concerning the earlier latency range, in the conditions with short RT, a latent negative shift (with 170 ms peak latency) was detected when these responses were compared to conditions of longer RT.

Adult↗