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R Tapia

Publications and source records attributed to R Tapia.

At least 55 records · Page 3Linked to original sources

Accumulation of extracellular glutamate by inhibition of its uptake is not sufficient for inducing neuronal damage: an in vivo microdialysis study.

It is well documented that neurons exposed to high concentrations of excitatory amino acids, such as glutamate and aspartate, degenerate and die. The clearance of these amino acids from the synaptic cleft depends mainly on their transport by high-affinity sodium-dependent carriers. Using microdialysis in vivo and HPLC analysis, we have studied the effect of the administration of inhibitors of the glutamate transporter (L-trans-pyrrolidine-2,4-dicarboxylate and dihydrokainate) on the extracellular concentration of endogenous amino acids in the rat striatum. In addition, we have analyzed whether the changes observed in the concentration of glutamate and aspartate were injurious to striatal cells. Neuronal damage was assessed by biochemical determination of choline acetyltransferase and glutamate decarboxylase activities, 7 days after the microdialysis procedure. In other experiments, pyrrolidine dicarboxylate and dihydrokainate, as well as two other inhibitors of the glutamate carrier, DL-threo-beta-hydroxyaspartate and L-aspartate-beta-hydroxamate, were microinjected into the striatum, and neuronal damage was assessed, both biochemically and histologically, 7 or 14 days after the injection. Dihydrokainate and pyrrolidine dicarboxylate produced a similar remarkable increase in the concentration of extracellular aspartate and glutamate. However, the former induced also notable elevations in the concentration of other amino acids. Clear neuronal damage was observed only after dihydrokainate administration, which was partially prevented by intraperitoneal injection of (+)-5-methyl-10,11-dihydro-5H-dibenzo[a,d]cyclohepten-5,10-imine maleate or by intrastriatal coinjection of 2,3-dihydroxy-6-nitro-7-sulfamoylbenzo(f)quinoxaline. No cell damage was observed with the other three glutamate carrier inhibitors used. It is concluded that an increased extracellular glutamate level in vivo due to dysfunction of its transporter is not sufficient for inducing neuronal damage. The neurotoxic effects of dihydrokainate could be explained by direct activation of glutamate postsynaptic receptors, an effect not shared by the other inhibitors used.

Animals↗

Three summertime outbreaks of influenza type A.

In the Northern Hemisphere, sporadic cases of influenza occur during the summer, yet summertime outbreaks are rare. From 12 August through 2 September 1993, three influenza outbreaks in Louisiana were investigated using medical-record review, interviews, viral cultures, serology, and active surveillance for influenza-like illness in Louisiana. Attack rates in the outbreaks were 61% (69/114), 42% (24/57), and 45% (23/51). Viruses isolated were most closely related to influenza A/Beijing/32/92 (H3N2). The identification of influenza A as the cause of the first two outbreaks led to the recommendation for amantadine use in the third outbreak. Active surveillance did not detect any other outbreaks of influenza-like illness during August or September 1993. Out-of-season influenza A outbreaks can therefore occur when little influenza-like illness is present in a community. Evaluation of outbreaks of acute, febrile respiratory illness outside the influenza season should include this possibility, since rapid detection can lead to the timely use of amantadine or rimantadine.

Aged↗

Convulsions and inhibition of glutamate decarboxylase by pyridoxal phosphate-gamma-glutamyl hydrazone in the developing rat.

We have previously shown that in the adult rat the inhibition of brain glutamate decarboxylase (GAD) activity by pyridoxal phosphate-gamma-glutamyl hydrazone (PLPGH) administration does not result in convulsions, whereas in the adult mouse intense convulsions invariably occur. In the present study we report that, surprisingly, immature rats from 2 to 20 days of age treated with PLPGH (80 mg/kg) showed generalized tonic-clonic convulsions, whereas no convulsions at all were present in 30 days-old or older rats. GAD activity, measured by enzymic determination of GABA formed in forebrain homogenates, was inhibited by about 60% at the time of convulsions in 15 days-old and younger rats, whereas the inhibition was between 40 and 50% in older animals. The addition of the coenzyme pyridoxal 5'-phosphate to the incubation medium completely reversed this inhibition. In all treated animals GABA levels were lower compared to controls. The results indicate that the susceptibility of GAD in vivo to a diminished cofactor concentration decreases with age. It seems possible that changes in the expression of enzyme forms are reflected in developmental variations in the susceptibility to seizures induced by vitamin B6 depletion, but alterations of other B6-dependent biochemical pathways cannot be discarded.

Animals↗

Decrease of glutamate decarboxylase activity after in vivo cortical infusion of gamma-aminobutyric acid.

gamma-Aminobutyric acid (GABA) levels and the activity of glutamate decarboxylase were measured in homogenates of rat brain cortical tissue, at different times after chronic intracortical infusion of GABA in vivo during 2, 6 or 24 h. Cortical electrical activity was also recorded. As previously described, about 1 h after cessation of the infusion epileptic discharges were observed (GABA-withdrawal syndrome), which lasted for several days. At zero time after cessation of the infusion, before the appearance of seizures, GABA levels were increased 3-6-fold and glutamate decarboxylase activity was decreased 27-48% in the infused cortex, as compared to the contralateral cortex or to tissue from control intact rats. During epileptic discharges GABA levels gradually returned to normal values. In contrast, glutamate decarboxylase activity remained decreased during seizures and returned to normal only after recovery from the GABA-withdrawal syndrome. These results suggest that the persistent decrease in the activity of the decarboxylase is due probably to a lowered amount of the enzymatic protein, occurring as a consequence of a temporarily elevated intracellular GABA concentration. The decreased rate of GABA synthesis might be involved in the pathophysiology of the GABA-withdrawal syndrome.

Amino Acids↗

2,3-Dihydroxy-6-nitro-7-sulfamoyl-benzo(f)quinoxaline protects against both AMPA and kainate-induced lesions in rat striatum in vivo.

In the present work we have tested the neuroprotective effect of 2,3-dihydroxy-6-nitro-7-sulfamoyl-benzo(f)quinoxaline (NBQX) on the excitotoxic damage induced by the injection of several glutamate receptor agonists into the rat striatum. NBQX was co-injected with each of the agonists studied (1 microliter) in the striatum and damage was assessed by the determination of both glutamate decarboxylase and choline acetyltransferase activities in striatal homogenates, five days after the lesion. Additionally, animals were transcardially perfused with 0.9% saline/4% paraformaldehyde and brain coronal sections were stained with Cresyl Violet for histological analysis. Our results show that NBQX (25 nmol) did not protect against the damage induced by the intrastriatal injection of 200 nmol quinolinic acid monitored by either choline acetyltransferase or glutamate decarboxylase activity. In contrast, the same concentration of NBQX partially protected against 200 nmol N-methyl-D-aspartate induced damage; this protection was more notable as detected by changes in choline acetyltransferase activity. When non-N-methyl-D-aspartate receptor agonists were used as excitotoxins, coinjection of NBQX (25 nmol) resulted in a notable protection against both alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionate (AMPA, 40 nmol) and kainate (10 nmol) induced neurodegeneration. At this concentration, protection was slightly better in AMPA-injected animals (71% protection averaged from choline acetyltransferase and glutamate decarboxylase enzyme activities) as compared to kainate-injected animals (47.5% protection). When a higher concentration of NBQX was tested (40 nmol) the protection against kainate improved to 65% while that against AMPA remained constant (64% protection).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Field test of a rapid assessment technique against a probabilistic community survey: operational implications for neonatal tetanus elimination.

Neonatal tetanus (NNT) is a leading cause of neonatal mortality in developing countries and is frequently called 'the silent epidemic'. It is endemic in over 90 countries throughout the world. Incidence is often not known, obstructing cost-effective resource management for control measures. In many developing countries NNT is responsible for one-half of the neonatal mortality and up to one-quarter of infant mortality. Case-fatality rates (CFR) can, even with treatment, reach 80-90%. Operational tools for the rapid identification of NNT risk areas need to be developed for WHO's programme which calls for the elimination of NNT by 1995. Results of a rapid assessment technique, carried out in 1990, were compared with those found in a household survey, which was independently carried out in Jalisco, Mexico, in 1988. One approach used random sample survey techniques in rural communities, which in previous years had reported NNT. Of 40 neonatal deaths, 8 (20%) were attributable to NNT. The annual incidence rate was 4.6/1000 livebirths. Using this as the 'gold standard', a rapid assessment technique was evaluated. The NNT cases seen at health services were randomly matched with other neonatal illnesses obtained from health records and then mapped. Age-specific catchment areas for hospitals under investigation and risk areas for NNT were obtained. Areas without NNT cases but with other neonatal illnesses have been operationally considered to be at low risk for NNT. The use of health services by neonates with other pathologies supports the hypothesis that an NNT case, if it occurred within the same time period and area under investigation, would most probably have been admitted.(ABSTRACT TRUNCATED AT 250 WORDS)

Antisepsis↗

Effects of excitotoxic lesions of the nucleus basalis magnocellularis on conditioned taste aversion and inhibitory avoidance in the rat.

The role of the nucleus basalis magnocellularis (NBM) in a variety of learning tasks is well known. Lesions of this nucleus result in a reduction of cholinergic transmission throughout a vast portion of the cortex. Because cholinergic transmission in the insular cortex seems to be important for the acquisition of conditioned taste aversion, the aim of the present work was to study the effects of bilateral chemically induced lesions of the NBM on this conditioning, as correlated with some cholinergic markers in the insular cortex. The effect on inhibitory avoidance was also studied. Lesions prevented the acquisition of the aversion and disrupted retention of the task in previously trained animals. Learning in the inhibitory avoidance paradigm was also notably affected. Postlesion reductions of choline acetyltransferase and acetylcholinesterase activities and of K(+)-stimulated [3H]acetylcholine release were found in the insular cortex. Further, in intact rats labeling of NBM neurons was observed by retrograde tracing after injection of Fluoro-Gold into the insular cortex. These findings indicate that the NBM is involved in the neural integration of feeding behavior and that its cholinergic projection to the insular cortex is one of the implicated neurotransmitter systems.

Acetylcholinesterase↗

NMDA receptor antagonists protect against seizures and wet-dog shakes induced by 4-aminopyridine.

The effect of N-methyl-D-aspartate (NMDA) and non-NMDA receptor antagonists on the generalized tonic-clonic convulsions and wet-dog shakes induced by the intraperitoneal (i.p.) or the intrahippocampal (i.h., stereotaxic microinjection into the CA1 region) administration of 4-aminopyridine (4-AP) was studied in rats. Pretreatment with NMDA competitive and non-competitive antagonists resulted in potent protection against the motor effects of both the i.p. and the i.h. administration of 4-AP. MK-801 (0.25 mg/kg i.p.) and 3-(2-carboxypiperazin-4-yl)propyl-1-phosphonic acid (CPP, 0.8 nmol intracerebroventricular, i.c.v.) showed the most powerful anticonvulsive effect, since they prevented the occurrence of generalized tonic convulsions and the death of the animals in convulsions after i.p. 4-AP. The i.c.v. injection (10 nmol) of the NMDA competitive antagonists 2-amino-5-phosphonopentanoate (AP-5) and 2-amino-5-phosphonoheptanoate (AP-7) also showed a clear though less potent protective effect. Similarly, the frequency of wet-dog shakes induced by i.h. 4-AP was markedly decreased by pretreating the animals with i.p. MK-801 or with i.c.v. CPP or AP-7. However, the co-injection of CPP with 4-AP failed to protect against the occurrence of wet-dog shakes. The i.c.v. pretreatment with the unselective antagonist, kynurenate (up to 68 nmol) or with the non-NMDA receptor antagonist, 6-cyano-7-nitroquinoxaline-2,3-dione (0.5 nmol), did not significantly modify the effects of 4-AP when administered either i.p. or i.h. We conclude that NMDA receptors are involved in the mechanism of the convulsive activity induced by 4-AP, probably because this drug induces the release of glutamate.

2-Amino-5-phosphonovalerate↗

Levels, uptake, and release of glycine and glutamate in the rat pontine reticular formation.

In this work we have determined the levels of glycine, glutamate, and other amino acids in the rat pontine reticular formation (PRF), in addition to some properties of the uptake and release of labeled glycine and glutamate in slices of this region. Glutamate was the most concentrated amino acid in the PRF, although its content was about half that of the striatum. Surprisingly, glycine levels in the PRF were 3.2-fold higher than in the striatum, whereas GABA content was similar in both regions. The uptake of both glycine and glutamate by PRF slices was strictly Na(+)-dependent. Their release was stimulated by K(+)-depolarization, but only the release of glycine was Ca(2+)-dependent. These findings suggest that glycine is a strong candidate for a neurotransmitter role in the PRF and that glutamate might also play such a role in this region.

Animals↗

Inhibition of brain glutamate decarboxylase activity is related to febrile seizures in rat pups.

Because previous work showed that in the newborn brain, but not in the adult brain, glutamate decarboxylase (GAD) is notably susceptible to heat, we have studied the possible involvement of GAD inhibition in febrile convulsions and the related changes in gamma-aminobutyric acid (GABA) content. Rats of different ages were subjected to hyperthermia, and GAD activity was determined in brain homogenates by measuring the release of 14CO2 from labeled glutamate and by measuring the formation of GABA. The latter method gave considerably lower values than the former in the youngest rats, and was considered more reliable. With this method, we found a 37-48% inhibition of GAD activity in rat pups 2-5 days old, which showed febrile seizures at progressively higher body temperatures, whereas in 10- and 15-day-old animals, which did not show convulsions, GAD activity was not affected by hyperthermia. Whole-brain GABA levels, however, did not change at any age. In contrast to GAD, choline acetyltransferase and lactic dehydrogenase activities were not altered by hyperthermia at any of the ages studied. These results suggest that a decreased efficiency of the inhibitory neurotransmission mediated by GABA, consequent to the inhibition of GAD activity, may be a factor related to febrile convulsions.

Animals↗

Microinjections of muscimol and bicuculline into the pontine reticular formation modify the sleep-waking cycle in the rat.

The role of gamma-aminobutyric acid (GABA) in the sleep-waking cycle was evaluated by means of microinjections of muscimol and bicuculline into the rat pontine reticular formation (PRF). Muscimol (20 ng) produced a marked increase in wakefulness (70%), a decrease in slow-wave sleep (SWS) (35%) and a remarkable delay in the onset of both SWS and paradoxical sleep, without modifying the percentage of the latter. Bicuculline (4 ng) shortened SWS latency by about 70%. These results suggest that GABAergic transmission in the PRF is involved in the regulation of sleep-waking cycle in the rat.

Animals↗

Convulsions and wet-dog shakes produced by systemic or intrahippocampal administration of ruthenium red in the rat.

In this work we have studied in the rat the behavioral effects of the intraperitoneal (i.p.) and intrahippocampal (i.h.) administration of ruthenium red (RuR), an inorganic dye which has been shown to inhibit neurotransmitter release in synaptosomes. The i.p. injection induced initially flaccid paralysis and subsequently generalized tonic-clonic convulsions. It contrast, unilateral RuR microinjection into the CA1 area of the hippocampus produced complex seizure behavior and wet-dog shakes (WDS). The i.p. administration of the serotonin receptor antagonist ketanserin markedly inhibited the WDS induced by i.h. RuR. In contrast, the i.h. injection of ketanserin and of the gamma-aminobutyric acid (GABA) agonists 4,5,6,7-tetrahydroisoxazol[5,4-c]pyridin-3-ol(THIP) and baclofen together with RuR did not affect the frequency of WDS nor the seizure behavior. However, the i.h. injection of the GABA uptake blocker nipecotic acid, simultaneously with RuR, increased the frequency of WDS. The release of [3H]GABA, measured in synaptosomes of different cerebral structures of the rats injected i.p. with RuR, and in slices of the CA1 area after i.h. injection of the dye, was not affected. Histological observations of the injected area showed a specific and intense staining of the somas of the CA1 pyramidal neurons. It is concluded that the convulsant action induced by i.h. RuR microinjection is probably the result of an increased excitability of these CA1 neurons, which is independent of any action on GABA release.

Animals↗

Release of acetylcholine and GABA, and activity of their synthesizing enzymes in the rat pontine reticular formation.

The aim of this study was to obtain neurochemical information on the possible role of acetylcholine (ACh) and gamma-aminobutyric acid (GABA) as neurotransmitters in the pontine reticular formation (PRF). We studied the uptake of labeled choline and GABA, as well as the release of this amino acid and of ACh, in PRF slices of the rat. In addition, choline acetyltransferase, acetylcholinesterase and glutamate decarboxylase activities were assayed in PRF homogenates. The uptake of GABA was strictly Na(+)-dependent, whereas choline uptake was only partially Na(+)-dependent. The release of both ACh and GABA was stimulated by K(+)-depolarization, but only the former was Ca(2+)-dependent. Choline acetyltransferase activity in the PRF was 74% of that in the striatum, whereas acetylcholinesterase activity was considerably lower. Glutamate decarboxylase activity in the PRF was about half that observed in the striatum. These findings support the possibility that both ACh and GABA may act as neurotransmitters in the rat PRF.

Acetylcholine↗

Glutamate decarboxylase activity in the substantia nigra and the hippocampus of rats microinjected with inhibitors of the enzyme.

Three inhibitors of glutamate decarboxylase (GAD), acting through different mechanisms, as well as pyridoxal phosphate (PLP), were microinjected unilaterally by stereotaxic procedures into the substantia nigra reticulata or the CA1 area of the hippocampus of the rat. The inhibitors used were thiosemicarbazide (TSC), gamma-glutamyl hydrazide and the PLP-glutamyl-hydrazone (PLPGH) formed by the combination of the latter with PLP. No behavioral alterations were observed after the administration of any of the drugs used, in any of the two brain regions studied. When measured in the absence of exogenous PLP, GAD activity in the substantia nigra injected with TSC was diminished by about 35%, and no changes were observed with the other drugs. In the CA1 hippocampal area both TSC and PLPGH inhibited GAD by more than 50%, and this inhibition was not reversed by PLP added in vitro. The results are discussed in terms of the possible explanation for the differences between the drugs used and for the lack of effects of GAD inhibition on the behavior of the animals.

Animals↗

[Treatment of uncomplicated urinary tract infections: cefuroxime vs cotrimoxazole].

Forty females (ages 15-74) with community-acquired, uncomplicated urinary tract infections were studied. Clinical and microbiological efficacy of cefuroxime (250 mg td) and trimethoprim sulfamethoxazole (160/800 mg td) used for 7 days were evaluated. The microorganisms found in the pre-treatment urinary cultures were: Escherichia Coli (85%), Klebsiella Pneumoniae (12.5%), and E. Agglomerans (2.5%). They were all susceptible to cefuroxime, and 42.5% were resistant to trimethoprim sulfamethoxazole (Kirby-Bauer). These findings show that trimethoprim sulfamethoxazole should not be used empirically while waiting for the results of urinary cultures, and that cefuroxime is a good alternative in these cases. Clinical cure was observed in all, and bacteriological cure in 75% of the pts treated with both antimicrobial agents. Relapses and reinfections were detected during follow-up emphasizing the importance of intra and post-treatment urinary cultures.

Adolescent↗

[Inhibin, steroid hormone, and gonadotropin concentration in blood from fertile and infertile males and its relationship with testicular function].

The role of inhibin in the testicular function and its relation with other hormone regulation spermatogenesis have not been elucidated in the human, therefore we studied by RIA the serum concentrations of this testicular secretion product, as well as those of LH, FSH, T and E2 and their possible correlation with some parameters evaluated by spermatobioscopy (cell number, motility, morphology and immature germinal cells) in fertile, oligozoospermic and azoospermic men. We did not find significant differences in inhibin concentration between fertile and oligozoospermic males; however in the azoospermic group the mean inhibin concentration was significantly higher (722.9 +/- 137.9 U/l in the fertile men; 658.5 +/- 147.1 and 963.1 +/- 300.9 U/l in the oligozoospermic and azoospermic groups respectively), in spite of data dispersion in the 3 study groups. Among the fertile males we found a negative significant correlation between the inhibin and the LH and FSH concentrations (p less than 0.05), while in the oligozoospermic patients this negative correlation was observed with T concentration. In the fertile males inhibin also showed correlation with the sperm percentage with normal morphology and with the immature germinal cells in semen; in the oligozoospermic group this glycoprotein showed correlation with the sperm count and the germinal cells concentration. We also found correlation between testosterone and/or LH concentrations and sperm count in both groups. These results indicate modifications in the hormonal concentrations regulating the testicular function and in their relationship, in men with testicular damage, which can render a change in the mechanisms controlling this function.(ABSTRACT TRUNCATED AT 250 WORDS)

Estradiol↗

Release of acetylcholine, gamma-aminobutyrate, dopamine and glutamate, and activity of some related enzymes, in rat gustatory neocortex.

The gustatory neocortex (GN), final relay along the gustatory pathway, is a region of the brain involved in the neural integration of feeding behavior. Since information on the neurotransmitters in this nucleus is scarce, the aim of the present work was to establish whether acetylcholine (ACh), gamma-aminobutyric acid (GABA), dopamine and glutamate may act as transmitters within this structure. It was found that GN slices are able to release labeled GABA, ACh and glutamate but not dopamine. Additionally, it was possible to detect significant glutamic acid decarboxylase, choline acetyltransferase and acetylcholinesterase activities in GN homogenates. The activity of the two enzymes involved in acetylcholine metabolism was higher than that observed in other cortical regions. These findings suggest that GABA, ACh and glutamate probably are neurotransmitters in the GN, whereas dopamine is not.

Acetylcholine↗

Correlation between acetylcholine release and recovery of conditioned taste aversion induced by fetal neocortex grafts.

Rats with lesions of the gustatory neocortex (GN) show deficits in the acquisition of taste aversion. Fetal GN grafts to a lesioned animal restore taste aversion learning and establish connections with the host brain. In this work, we examined whether the grafts are biochemically functional and whether this fact can be related to behavioral recovery. Gustatory or occipital cortices from rat fetuses were transplanted to GN-lesioned rats. Two months later, taste aversion recovery was tested and the release of labeled gamma-aminobutyric acid (GABA), acetylcholine (ACh), dopamine and glutamate from the grafted tissue was assayed. Fetal GN grafts promoted recovery of learning and released GABA, ACh and glutamate in response to K+ depolarization. Occipital cortex grafts did not induce behavioral recovery, although they were capable of releasing GABA. In contrast, these grafts did not release ACh. Moreover, GN-grafted rats in which behavioral recovery was not seen also failed to release ACh. These results are in agreement with previous findings that cholinergic transmission is important in the GN and suggest that ACh may play a role in the graft-mediated behavioral recovery observed in this model.

Acetylcholine↗