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D M Barros

Publications and source records attributed to D M Barros.

11 recordsLinked to original sources

Stimulators of the cAMP cascade reverse amnesia induced by intra-amygdala but not intrahippocampal KN-62 administration.

Infusion of the calcium-calmodulin-dependent protein kinase II (CaMKII) inhibitor KN-62 (3.5 ng/side) 0 h after training into rat hippocampus CA1 or amygdala has been known for years to cause retrograde amnesia for step-down inhibitory avoidance. On the other hand, drugs that indirectly stimulate protein kinase A (PKA) (8-Br-cAMP, 1.25 microg/side; norepinephrine, 0.3 microg/side; the dopamine D1 receptor agonist, SKF38393, 7.5 microg/side) infused 3 h posttraining into CA1 but not amygdala markedly facilitate retention of this task. Here we find that 8-Br-cAMP, norepinephrine, or SKF38393 given 3 h posttraining into rat CA1 reverses the amnestic effect of KN-62 given into the amygdala 0 h after training, but not that of KN-62 given into CA1 0 h posttraining. The findings bear on the participation of CaMKII and of the cAMP/PKA cascade in memory processes in the hippocampus and the amygdala. Both cascades have been proposed to play a role in memory: CaMKII in the early phase and PKA in the transition between the early phase and long-term memory. Clearly, in CA1, both cascades are involved and are crucial, and the CaMKII cascade must precede the PKA cascade. In contrast, in the amygdala, only the CaMKII cascade is active, and it does not play a central role in memory, inasmuch as its deleterious effect may be fully recovered by stimulation of the PKA cascade in the hippocampus. This further supports the contention that the hippocampus is essential for memory formation of this task, as it is for many others, whereas the amygdala appears to play instead an early modulatory role.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine

Separate mechanisms for short- and long-term memory.

It has been assumed for over a century that short-term memory (STM) processes are in charge of cognition while long-term memory (LTM) is being formed, a process that takes hours. A major question is whether STM is merely a step towards LTM, or a separate entity. Recent experiments have shown that many treatments with specific molecular actions given into the hippocampus, entorhinal or parietal cortex immediately after one-trial avoidance training can effectively block STM without affecting LTM formation. This shows that STM and LTM involve separate mechanisms. Some treatments even affect STM and LTM in opposite directions. Others, however, influence both memory types similarly, suggesting links between the two both at the receptor and at the post-receptor level. Drug effects on working memory (WM) were also studied. In some brain regions WM is affected by receptor blockers that alter either STM or LTM; in others it is not. This suggests links between the three memory types at the receptor level. The anterolateral prefrontal cortex is crucial for WM and LTM but is not involved in STM. The hippocampus, entorhinal and parietal cortex are crucial for the three types of memory, in some cases using different receptors for each. The amygdala is not involved in WM or STM, but it plays a key role in the modulation of the early phase of LTM.

Animals

Short- and long-term memory are differentially regulated by monoaminergic systems in the rat brain.

Rats with cannulae implanted in the dorsal CA1 region of the hippocampus or in the entorhinal cortex (EC) were trained in one-trial step-down inhibitory avoidance and tested 1.5 or 24 h later, in order to measure short-term memory (STM) and long-term memory (LTM) respectively. Several drugs infused immediately post-training inhibited STM without altering LTM: the D1 receptor agonist SKF38393 (7.5 microgram) given into either CA1 or EC, the beta blocker timolol (0.3 microgram) given into EC, the 5HT1A receptor agonist 8-HO-DPAT (2.5 microgram) given into CA1, and the 5HT1A antagonist NAN-190 (2.5 microgram) given into EC. These findings indicate that STM is not a necessary step toward LTM. Intraentorhinal 8-HO-DPAT enhanced STM and depressed LTM. The D1 antagonist SCH23390 (0.5 microgram) enhanced STM without affecting LTM when given into CA1, and blocked LTM without affecting STM when given into EC. Intraentorhinal norepinephrine (0.3 microgram) enhanced both STM and LTM, and the same drug when given into CA1 enhanced LTM selectively. None of the drugs had any effect on retrieval of either STM or LTM when given prior to testing. The data indicate that STM and LTM are differentially modulated by D1, beta, and 5HT1A receptors in CA1 and EC.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben

Differential involvement of cortical receptor mechanisms in working, short-term and long-term memory.

Rats received, through bilaterally implanted indwelling cannulae, 0.5 microliter infusions of 6-cyano-7-nitroquinoxaline2,3-dione (CNQX) (0.5 microgram), D-2-amino-5-phophono pentanoic acid (AP5) (5.0 micrograms), muscimol (0.5 microgram), scopolamine (2.0 micrograms), SCH23390 (2.5 micrograms), saline or a vehicle into the CA1 region of the hippocampus, or into the antero-lateral prefrontal (PRE), posterior parietal (PP) and entorhinal cortex (EC). The infusions were given 6 min prior to one-trial step-down inhibitory avoidance training in order to measure their effect on working memory (WM), or immediately post-training in order to measure their effect on short-term (STM) and long-term memory (LTM), 1.5 and 24 h later, respectively. WM was inhibited by CNQX or muscimol given into any of the cortical areas, by SCH23390 given into CA1, PRE or PP, and by scopolamine given into PRE or EC. STM was unaffected by any of the treatments given into PRE, and was inhibited by CNQX or muscimol given into CA1, PP and EC and by scopolamine given into PP, and enhanced by SCH given into CA1. LTM was inhibited by CNQX, muscimol, scopolamine or SCH23390 given into PRE, by scopolamine given into PP, by SCH23390 given into the entorhinal cortex, and by AP5, CNQX, muscimol or scopolamine given into CA1. The results indicate a differential involvement of the various neurotransmitter systems in the three types of memory in the various brain areas, and a separation of the mechanisms and of the regions involved in each. In addition, some of the findings suggested links between WM and LTM processing in PRE, between WM and STM processing in EC and PP, and between all three types of memory in CA1.

Animals

Interaction between midazolam-induced anterograde amnesia and memory enhancement by treatments given hours later in hippocampus, entorrhinal cortex or posterior parietal cortex.

Rats were bilaterally implanted with indwelling cannulae in the CA1 region of the dorsal hippocampus, the entorrhinal cortex or the posterior parietal cortex. After recovery from surgery, they were trained in a one-trial step-down inhibitory avoidance task using a 0.3 mA footshock. The animals received i.p. 15 min before training either saline (1 ml/kg) or midazolam (1 mg/kg). Three hours after training they received, through the cannulae, infusions of saline, norepinephrine (0.3 microg/side), SKF38393 (7.5 microg/side), or 8-Br-cAMP (1.25 microg/side) into the brain regions mentioned. Animals were tested for retention 24 h after the training session. Midazolam produced anterograde amnesia, and the post-training treatments (with the exception of SKF38393 given into the entorrhinal cortex) caused retrograde memory facilitation. The amnestic effect of midazolam and the facilitatory effect of the treatments given into the brain cancelled each other out. Therefore, the mechanisms triggered by midazolam can interact with others in areas involved in memory processing several hours after their onset.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben

Life cycle of Ornithodoros (Alectorobius) talaje (Acari: Argasidae) in laboratory.

Specimens of Ornithodoros (Alectorobius) talaje (Guérin-Mèneville) collected in the state of Minas Gerais, Brazil, were used to start a laboratory colony. Larvae were fed on chicks and nymphs and adults were fed on adult chickens. From the specimens that emerged after the third molt, 97.6% were nymphs and 2.4% were males. After the fourth molt, 41.6% were nymphs, 37.6% were males, and 20.8% were females. After the fifth molt, 24% were males and 60% were females; the remainder were nymphs. The number of eggs per female per gonotrophic cycle and the mean duration of preoviposition, oviposition, and incubation periods were recorded. At the first gonotrophic cycle, duration of preoviposition period was longer and the number of eggs was smaller than any other studied gonotrophic cycle. The life cycle was completed within 849 d (maximum). The O. (A.) talaje first-instar nymphal population failed to molt without having a blood meal, which differs from other Alectorobius species. Parthenogenesis was not observed. Larval morphology was studied by optical microscopy. Unengorged specimens were larger, with smaller dorsal plate and fewer dorsal setae than those previously described.

Animals

Ectoparasites of some wild rodents from Paraná State, Brazil.

Forty-four cricetid rodents belonging to four species from Paraná State, Brazil, were karyotyped and examined for ectoparasites. Thirteen species of ectoparasites, including five mites, one louse, and seven fleas, are recorded for the first time from Paraná. New host records are described for four species of mites, one sucking louse, and seven fleas.

Animals

Dioctophymosis in the little grison (Galictis cuja).

Two cases of dioctophymosis in wild little grisons (Galictis cuja) were found in Paraná State (southern Brazil). One female host was infected with eight nematodes and a male harbored a single parasite. This represents the first report of the giant kidney nematode (Dioctophyme renale) in the little grison.

Animals

Notes on the biology of Amblyomma dissimile Koch, 1844 (Acari:Ixodida) on Bufo marinus (Linnaeus, 1758) from Brazil.

Amblyomma dissimile is a common ectoparasite of cold blooded animals and is an accidental ectoparasite of some wild mammals. Details of the biology of specimens from the State of Amapá were studied in the laboratory in a humidity chamber at an average environmental temperature of 19.5 degrees C, using Bufo marinus as host for the time in Brazil. We also report the first record of this species in the State of Minas Gerais.

Acari