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F Nagy

Publications and source records attributed to F Nagy.

At least 55 records · Page 3Linked to original sources

[Analysis of the activity of neurologic intensive care units].

The authors analysed six-year activity of the intensive Care Unit of Department of Neurology, Medical University of Pécs (POTEI), and two-year activity of the Intensive Care Unit of Department of Neurology, Semmelweis University of Medicine, Budapest (SOTEI). Mortality at POTEI and SOTEI was 33.9% and 32.2%, respectively. Mean duration of stay of survivors at POTEI was 10 +/- 12.8 days, and 7 +/- 6.8 days at SOTEI; mean duration of care of the deceased patients at POTEI was 6.3 +/- 10.5 days, and 10 +/- 13.7 days at SOTEI. At POTEI 60.7%, at SOTEI 63% of the patients was admitted because of cerebrovascular insult. Mortality of patients with brain haemorrhage at POTEI and SOTEI was 53.4% and 57.7% respectively. Mortality of the ischaemic group was 40.6% (POTEI) and 35.3% (SOTEI). In the group of intracranial tumours 44.4% mortality was recorded at POTEI and 47.6% at SOTEI. At POTEI 240 patients (15.9%), while at SOTEI 94 patients (21%) were admitted to treat epileptic seizures. Among the 510 patients, who died within one month 284 patients (55.6%) were unconscious at admission. From those with coma due to severe structural lesion of the brain (brain ischaemia, bleeding, meningitis) only 15 patients survived. Among the 184 patients, who were comatose and survived, the most frequent diagnosis was suicidal attempt with hypnotics (n = 67), metabolic encephalopathy (n = 19) and epilepsy (n = 12). At SOTEI among the 144 deceased patients 102 (70.8%) were unconscious at admission. Coma at admission proved to be a strong predictor of mortality. Mortality of the ventilated patients was 83% at POTEI and of those having subclavian catheter (n = 592) was 47.1%. In the acute phase of brain ischaemia at POTEI 39%, at SOTEI 10.7% of the patients received heparin. At SOTEI the cost of medication of patients who died after two weeks of care was 65.2% higher than that of the survived patients.

Emergency Service, Hospital↗

IL1B gene polymorphisms influence the course and severity of inflammatory bowel disease.

There is evidence of a disbalance in the inflammatory regulation of patients with inflammatory bowel diseases (IBD). Interleukin-1 beta plays an important role in the pro-inflammatory response. Our aim was to study the influence which IL1B gene polymorphisms may have on the severity and course of these diseases. Ninety-six patients with ulcerative colitis (UC), 98 patients with Crohn's disease (CD), and 132 ethnically matched healty individuals (HC) were typed for the polymorphic sites in the promoter region (position -511) and in exon 5 (position +3953) of the IL1B gene, using polymerase chain reaction (PCR)-based methods. In the CD group a significant association (P = 0.009) was found in this pair of genes. Homozygotes for allele 1 at position +3953 were more often present (69% vs 31%) in the subgroup of patients carrying at least one copy of allele 2 at position -511. This association was significant in patients with non-perforating disease (P = 0.002), but was not present in patients with perforating-fistulizing disease. The distribution of both allelic pairs in the non-fistulizing group proved to be significantly different from HC (P < 0.05), UC (P < 0.03), and the fistulizing group (P < 0.05). There was a similar association in non-operated patients (P = 0.024), whereas no such association was found in surgically treated patients. Among carriers of allele 2 at position -511, UC patients with more severe bleeding symptoms (P = 0.006) were less frequently found. These results suggest that IL1B gene polymorphisms participate in determining the course and severity of inflammatory bowel disease and contribute to explain the heterogeneity of these diseases.

Adolescent↗

Headache in intracranial tumors.

The clinical data of 279 consecutive patients with brain tumors were analyzed pre- and postoperatively in the period of 1994-95. No headache had been recorded in the history of 115 patients, neither pre- nor postoperatively. Only in 139 of the remaining 164 headache patients was there a probable connection between headache and intracranial neoplasm. In the headache group the most frequent findings were metastatic brain tumors and different astrocytomas. Hypophysis adenomas and glioblastoma multiforme were frequent in the no-headache group. Progressive headache was found in 110 patients (67% of the headache group). The progressive character of the headache showed a close relationship with the prevailing edema, but not with the size of the tumor. Infratentorial and intraventricular tumors were more frequently accompanied by headache than those located supratentorially, probably due to the disturbance of CSF circulation and midline dislocation with increased intracranial pressure. Only in one-third of the patients did the site of the tumor coincide with the lateralization of headache. In half of the headache patients, pain was the first complaint. Headaches caused by tumor were characterized by pain lasting for hours, developing for weeks or months. The headache was never permanent and there was no regular daily recurrence.

Adolescent↗

Significant differences in the interleukin-1beta and interleukin-1 receptor antagonist gene polymorphisms in a Hungarian population with inflammatory bowel disease.

BACKGROUND: There is growing evidence of the importance of genetic predisposition and the activation of the mucosal immune system in the pathogenesis of inflammatory bowel disease. Thus, genes involved in the regulation of inflammation are receiving increased attention. We have studied whether Crohn's disease (CD) or ulcerative colitis (UC) is associated with certain allelic combinations of IL1B/IL1RA gene polymorphisms in a different European population than the ones studied so far. METHODS: Ninety-six patients with UC, 97 with CD, and 132 healthy individuals (HC) were typed for the polymorphic regions in exon 5 of the IL1B gene and in intron 2 of the IL1RA gene, using polymerase chain reaction-based methods. RESULTS: In CD homozygotes for allele 1 in IL1B gene polymorphism were more often present (72% versus 28%; P = 0.01) in the subgroup of patients carrying at least one copy of allele 2 in IL1RA gene polymorphism. This association was not found in HC (HC versus CD; P = 0.03) or UC. However, in UC patients with pancolitis a similar trend was observed (75% versus 25%). Several genotype combinations characterized by the presence of allele 2 of the IL1RA gene polymorphism were more common in CD (P = 0.001) and UC (P = 0.049) than in HC. CONCLUSIONS: Our data support the concept that CD and severe UC have a genetic disequilibrium in the distribution of IL1B and IL1RA gene polymorphisms. These findings together with functional studies will contribute to the understanding of the pathogenesis of the chronicity of inflammation in these diseases.

Adolescent↗

Altered in vitro and in vivo flumazenil binding in human epileptogenic neocortex.

In vitro and in vivo parameters of flumazenil (FMZ) binding were measured in spiking and nonspiking neocortex identified by intraoperative electrocorticography in epileptic patients who underwent cortical resection for seizure control. In vitro measures of receptor affinity (K(D)), number (Bmax) and laminar distribution for [3H]-FMZ binding in the epileptic focus (n = 38) were compared to nonspiking cortex from a subgroup of the patients (n = 12) and to tissue obtained from trauma patients (n = 5). The in vitro binding parameters were compared to in vivo [11C]-FMZ binding measured with positron emission tomography (PET) (n = 19). The Bmax was higher in the 38 spiking tissues as compared to the 12 nonspiking tissues (P = .012). Paired comparison of spiking versus nonspiking binding in the 12 patients from whom nonspiking tissue was available showed increases in both K(D) (P = .037) and Bmax (P = .0047) in spiking cortex. A positive correlation was found between K(D) and Bmax values for 38 patients (r = 0.55, P < .0001), the magnitude of the K(D) increase being twice that of the Bmax increase. In addition, there was a significant correlation between the asymmetry indices of the in vivo FMZ binding on PET and in vitro K(D) of spiking cortex (n = 19, r = 0.52, P = .02). The laminar distribution of [3H]-FMZ showed increased FMZ binding in cortical layers V-VI in spiking cortex compared to nonspiking and control cortex. The increased receptor number in spiking cortical layers V-VI may be a compensatory mechanism to decreased GABAergic input. The increased Bmax in spiking cortex was accompanied by a larger decrease in the affinity of FMZ for the receptor suggesting that decreased FMZ binding in the epileptic focus measured with PET is due to a decrease in the affinity of the tracer for the receptor.

Adolescent↗

Light quality-dependent nuclear import of the plant photoreceptors phytochrome A and B

The phytochrome (phy) family of plant photoreceptors controls various aspects of photomorphogenesis. Overexpression of rice phyA-green fluorescent protein (GFP) and tobacco phyB-GFP fusion proteins in tobacco results in functional photoreceptors. phyA-GFP and phyB-GFP are localized in the cytosol of dark-adapted plants. In our experiments, red light treatment led to nuclear translocation of phyA-GFP and phyB-GFP, albeit with different kinetics. Red light-induced nuclear import of phyB-GFP, but not that of phyA-GFP, was inhibited by far-red light. Far-red light alone only induced nuclear translocation of phyA-GFP. These observations indicate that nuclear import of phyA-GFP is controlled by a very low fluence response, whereas translocation of phyB-GFP is regulated by a low fluence response of phytochrome. Thus, light-regulated nucleocytoplasmic partitioning of phyA and phyB is a major step in phytochrome signaling.

Journal Article↗

[11C]Flumazenil PET in patients with epilepsy with dual pathology.

PURPOSE: Coexistence of hippocampal sclerosis and a potentially epileptogenic cortical lesion is referred to as dual pathology and can be responsible for poor surgical outcome in patients with medically intractable partial epilepsy. [11C]Flumazenil (FMZ) positron emission tomography (PET) is a sensitive method for visualizing epileptogenic foci. In this study of 12 patients with dual pathology, we addressed the sensitivity of FMZ PET to detect hippocampal abnormalities and compared magnetic resonance imaging (MRI) with visual as well as quantitative FMZ PET findings. METHODS: All patients underwent volumetric MRI, prolonged video-EEG monitoring, and glucose metabolism PET before the FMZ PET. MRI-coregistered partial volume-corrected PET images were used to measure FMZ-binding asymmetries by using asymmetry indices (AIs) in the whole hippocampus and in three (anterior, middle, and posterior) hippocampal subregions. Cortical sites of decreased FMZ binding also were evaluated by using AIs for regions with MRI-verified cortical lesions as well as for non-lesional areas with visually detected asymmetry. RESULTS: Abnormally decreased FMZ binding could be detected by quantitative analysis in the atrophic hippocampus of all 12 patients, including three patients with discordant or inconclusive EEG findings. Decreased FMZ binding was restricted to only one subregion of the hippocampus in three patients. Areas of decreased cortical FMZ binding were obvious visually in all patients. Decreased FMZ binding was detected visually in nonlesional cortical areas in four patients. The AIs for these nonlesional regions with visual asymmetry were significantly lower than those for regions showing MRI lesions (paired t test, p = 0.0075). CONCLUSIONS: Visual as well as quantitative analyses of FMZ-binding asymmetry are sensitive methods to detect decreased benzodiazepine-receptor binding in the hippocampus and neocortex of patients with dual pathology. MRI-defined hippocampal atrophy is always associated with decreased FMZ binding, although the latter may be localized to only one sub-region within the hippocampus. FMZ PET abnormalities can occur in areas with normal appearance on MRI, but FMZ-binding asymmetry of these regions is lower when compared with that of lesional areas. FMZ PET can be especially helpful when MRI and EEG findings of patients with intractable epilepsy are discordant.

Adolescent↗

[Endoscopic therapy of pancreas divisum].

Pancreas divisum is the most frequent congenital ductal anomaly of the pancreas: it occurs in 5-10% of the population. In the majority of patients, this congenital anomaly is of no clinical importance. In a certain subset of patients, however, pancreas divisum is clinically important as a cause of abdominal pain, acute recurrent pancreatitis or chronic obstructive pancreatitis. The authors, experience on endoscopic drainage of the minor papilla is reported. In the history of patient 1., three episodes of recurrent pancreatitis and permanent upper abdominal pain were explored. ERP revealed a pancreas divisum and a mild irregularity and dilation of the dorsal pancreatic duct. A 7 F stent (length: 6 cm) was implanted in the dorsal pancreatic duct following a papillotomy on the stenotic minor papilla. A repeated Lundh test revealed a 58% improvement in the exocrine pancreatic function. No recurrence of pancreatitis has been observed in spite of the moderate continuous abdominal pain. In patient 2., ERP demonstrated a pancreas divisum and a severely dilated dorsal pancreatic duct as causes of the previous permanent abdominal pain. An 8 F stent (length: 5 cm) was inserted through the minor papilla without endoscopic sphincterotomy. A significant improvement in exocrine pancreatic function (70%) ensued. No abdominal pain has since been observed. In conclusion, dorsal pancreatic duct stenting (mainly in cases involving a dilated pancreatic duct) seems to have a beneficial effect in patients with both recurrent acute pancreatitis or chronic obstructive pancreatitis evoked by pancreas divisum.

Abdominal Pain↗

UV-B-induced differential transcription of psbA genes encoding the D1 protein of photosystem II in the Cyanobacterium synechocystis 6803.

UV-B irradiation of intact Synechocystis sp. PCC 6803 cells results in the loss of photosystem II activity, which can be repaired via de novo synthesis of the D1 (and D2) reaction center subunits. In this study, we investigated the effect of UV-B irradiation on the transcription of the psbA2 and psbA3 genes encoding identical D1 proteins. We show that UV-B irradiation increases the level of psbA2 mRNA 2-3-fold and, more dramatically, it induces a 20-30-fold increase in the accumulation of the psbA3 mRNA even at levels of irradiation too low to produce losses of either photosystem II activity or D1 protein. The induction of psbA3 transcript accumulation is specific for UV-B light (290-330 nm). Low intensity UV-A emission (330-390 nm) and white light induce only a small, at most, 2-3-fold enhancement, whereas no effect of blue light was observed. Expression patterns of chimeric genes containing the promoter regions of the psbA2, psbA3 genes fused to the firefly luciferase (luc) reporter gene indicate that (i) transcription of psbA2/luc and psbA3/luc transgenes was elevated, similarly to that of the endogenous psbA genes, by UV-B irradiation, and that (ii) a short, 80-base pair psbA3 promoter fragment is sufficient to maintain UV-B-induced transcription of the luc reporter gene. Furthermore, our findings indicate that UV-B-induced expression of the psbA2 and psbA3 genes is a defense response against UV-B stress, which is regulated, at least, partially at the level of transcription and does not require active electron transport.

Base Sequence↗

Light-induced expression of fatty acid desaturase genes.

In cyanobacterial cells, fatty acid desaturation is one of the crucial steps in the acclimation processes to low-temperature conditions. The expression of all the four acyl lipid desaturase genes of Synechocystis PCC 6803 was studied as a function of temperature and separately as a function of light. We used cells grown at 25 degreesC in light-activated heterotrophic growth conditions. In these cells, the production of alpha-linolenic acid and 18:4 fatty acids was negligible and the synthesis of gamma-linolenic acid was remarkably suppressed compared with those of the cells grown photoautotrophically. The cells grown in the light in the presence of glucose showed no difference in fatty acid composition compared with cells grown photoautotrophically. The level of desC mRNA for delta9 desaturase was not affected by either the temperature or the light. It was constitutively expressed at 25 degreesC with and without illumination. The level of desB transcripts was negligible in the dark-grown cells and was enhanced about 10-fold by exposure of the cells to light. The maximum level of expression occurred within 15 min. The level of desA and desD mRNAs was higher in dark-grown cells than that of desB mRNA for omega3 desaturase. However, the induction of both desA and desD mRNAs for delta12 and delta6 desaturases, respectively, was enhanced by light about 10-fold. Rifampicin, chloramphenicol, and 3-(3, 4-dichlorophenyl)-1,1-dimethylurea completely blocked the induction of the expression of desA, desB, and desD. Consequently, we suggest the regulatory role of light via photosynthetic processes in the induction of the expression of acyl lipid desaturases.

Cyanobacteria↗

Inhibitory control of plateau properties in dorsal horn neurones in the turtle spinal cord in vitro.

1. The role of inhibition in control of plateau-generating neurones in the dorsal horn was studied in an in vitro preparation of the spinal cord of the turtle. Ionotropic and metabotropic inhibition was found to condition the expression of plateau potentials. 2. Blockade of gamma-aminobutyric acid (GABAA) and glycine receptors by their selective antagonists bicuculline (10-50 microM) and strychnine (5-20 microM) enhanced the excitatory response to stimulation of the dorsal root and facilitated the expression of plateau potentials. 3. Bicuculline and strychnine also facilitated the generation of plateau potentials in response to depolarizing current pulses, suggesting the presence of tonic ionotropic inhibitory mechanisms in turtle spinal cord slices. 4. Activation of GABAB receptors also inhibited plateau-generating neurones. The selective agonist baclofen (5-50 microM) inhibited wind-up of the response to repeated depolarizations induced synaptically or by intracellular current pulses. 5. Baclofen reduced afferent synaptic input. This effect was not affected by bicuculline or strychnine and was blocked by the selective GABAB receptor antagonist 2-hydroxysaclofen (2-OH-saclofen, 100-400 microM). 6. Postsynaptically, baclofen inhibited plateau properties. Activation of GABAB receptors produced a hyperpolarization (7.0 +/- 0.5 mV, mean +/- S.E.M., n = 29) with an associated decrease in input resistance (22.7 +/- 3.1%, n = 24). These effects were blocked by extracellular Ba2+ (1-2 mM). 7. When the baclofen-induced hyperpolarization and shunt were compensated for by adjusting the bias current and the strength of the stimulus, baclofen still inhibited generation of plateau potentials. Wind-up and after-discharges were also inhibited by baclofen. These effects remained in the presence of tetrodotoxin (1 microM) and were antagonized by 2-OH-saclofen. 8. The inhibition of plateau properties was observed even when the baclofen-induced hyperpolarization and shunt were blocked by Ba2+ and when potassium channels were blocked by Ba2+ (3 mM), tetraethylammonium (TEA, 15 mM) and apamin (0.25-0.5 microM). The baclofen-sensitive component of the plateau potential was reduced by nifedipine (10 microM), suggesting a modulation of postsynaptic L-type Ca2+ channels. 9. We suggest that inhibitory regulation of plateau properties plays a role in somatosensory processing in the dorsal horn. The inhibitory control of wind-up and after-discharges may be particularly significant in physiological and therapeutic control of central sensitization to pain.

Animals↗

Transcription of Arabidopsis and wheat Cab genes in single tobacco transgenic seedlings exhibits independent rhythms in a developmentally regulated fashion.

Transcription of Cab genes has been previously shown to be regulated by a circadian oscillator coupled to the red light-absorbing plant photoreceptor phytochrome in various plant species. In addition, it has recently been suggested that rhythmic expression of the Cab genes could also be affected by a phytochrome-independent circadian oscillator in a developmentally regulated fashion. This study has shown that a red light-insensitive oscillator and a phytochrome-coupled circadian clock indeed coregulate the oscillating expression of individual Cab genes at the level of transcription at an early developmental stage. The study involved analysing the expression patterns of transgenes, containing short fragments of the Arabidopsis thaliana Cab2 or the wheat Cab-1 promoter fused to the firefly luciferase reporter gene, by a video-imaging system in single, etiolated tobacco seedlings. Germination and red/far-red light treatments applied between 12 and 36 h after sowing lead to the appearance of two independent circadian rhythms. These rhythms coexist, both exhibiting period lengths close to 25 h but phased differently. However, repeated red-light treatments given 60 h or later after sowing synchronize these free-running rhythms and induce a single new circadian oscillation. These data indicate that both oscillators regulate the expression of the Cab genes studied at the level of transcription and that the cis-acting element(s) of the wheat Cab-1 and A. thaliana Cab2 genes mediating these responses are located on short, 250 bp promoter regions. Furthermore, these red-light induced rhythms are also inducible by far-red light treatments alone. Therefore, in tobacco, the phytochrome-coupled oscillator is regulated, at least partially, by the very low fluence response of phytochrome A.

Animals↗

Transcription of the Arabidopsis CPD gene, encoding a steroidogenic cytochrome P450, is negatively controlled by brassinosteroids.

The Arabidopsis CPD gene encodes a cytochrome P450 steroid side-chain hydroxylase (CYP90) that plays an essential role in the biosynthesis of the plant hormone brassinolide. Expression of the CPD gene is confined to cotyledons and leaf primordia in etiolated seedlings and detectable in the adaxial parenchyma of expanding leaves in light-grown plants. Transcription of the CPD gene is not affected by the plant growth factors auxin, ethylene, gibberellin, cytokinin, jasmonic acid and salicylic acid, but is specifically down-regulated by brassinolide in both dark and light. Steady-state mRNA levels of a CPD promoter-driven uidA reporter gene correlate with the expression of resident CPD gene in transgenic plants. Intermediates of the early and late C-6 oxidation pathways of brassinolide, carrying C-22 and C-23 side-chain hydroxyls, efficiently inhibit the activity of the CPD promoter. Repression of CPD transcription by brassinosteroids is sensitive to the protein synthesis inhibitor cycloheximide, indicating a requirement for de novo synthesis of a regulatory factor.

Arabidopsis↗

Nociceptive integration in the rat spinal cord: role of non-linear membrane properties of deep dorsal horn neurons.

Deep dorsal horn neurons (DHNs) involved in nociception can relay long-lasting inputs and generate prolonged afterdischarges believed to enhance the transfer of nociceptive responses to the brain. We addressed the role of neuronal membrane properties in shaping these responses, by recording lamina V DHNs in a slice preparation of the rat cervical spinal cord. Of 256 neurons, 102 produced accelerating discharges in response to depolarizing current pulses, whereas the other neurons showed spike frequency adaptation. Two mechanisms mediated the firing acceleration: a slow inactivation of a K+ current expressed upon activation of the neuron from hyperpolarized holding potentials, and the expression of a regenerative plateau potential activating around resting membrane potential. The increase in firing frequency was much stronger when sustained by the plateau potential (71 DHNs, 28%). A few neurons produced adaptation and both types of acceleration, in different membrane potential domains, showing that the firing pattern of a deep DHN is not a rigid characteristic. Plateau potentials could be elicited by stimulation of nociceptive primary afferent fibres. The bistability associated with plateau potentials permitted afterdischarges. Because plateau potentials had slow activation kinetics and were voltage-dependent, the neurons had non-linear input-output relationships in both the amplitude and time domains. Nociceptive primary afferent stimulation elicited intense and prolonged responses in plateau-generating DHNs, while brief bursts of spikes were evoked otherwise. These results indicate that in a population of deep DHNs, intense firing and prolonged afterdischarges in response to nociceptive stimulation depend on non-linear intrinsic membrane properties.

4-Aminopyridine↗

A heat-sensitive Arabidopsis thaliana kinase substitutes for human p70s6k function in vivo.

In mammalian cells, mitogen-induced phosphorylation of ribosomal protein S6 by p70s6k has been implicated in the selective translational upregulation of 5'TOP mRNAs. We demonstrate here that the homologous Arabidopsis thaliana protein, AtS6k2, ectopically expressed in human 293 cells or isolated from plant cells, phosphorylates specifically mammalian and plant S6 at 25 degrees C but not at 37 degrees C. When Arabidopsis suspension culture cells are shifted from 25 to 37 degrees C, the kinase becomes rapidly inactivated, consistent with the observation that heat shock abrogates S6 phosphorylation in plants. Treatment with potato acid phosphatase reduced the specific activity of immunoprecipitated AtS6k2 threefold, an effect which was blocked in the presence of 4-nitrophenyl phosphate. In quiescent mammalian cells, AtS6k2 is activated by serum stimulation, a response which is abolished by the fungal metabolite wortmannin but is resistant to rapamycin. Treatment of mammalian cells with rapamycin abolishes in vivo S6 phosphorylation by p70s6k; however, ectopic expression of AtS6k2 rescues the rapamycin block. Collectively, the data demonstrate that AtS6k2 is the functional plant homolog of mammalian p70s6k and identify a new signalling pathway in plants.

Amino Acid Sequence↗

[The ursodeoxycholic acid-p-aminobenzoic acid test in the diagnosis of small bowel bacterial overgrowth syndrome].

UNLABELLED: Contaminated small bowel syndrome is frequently associated with meteorism due to excessive gas formation, and diarrhoea as a result of bacterial fermentative processes, including splitting of carbohydrates or deconjugating and dehydroxylating bile salts. In addition to gas production, bacteria capable of metabolizing bile salts have been shown to release p-aminobenzoic acid (PABA) from and Ursodeoxycholic-acid-PABA substrate. Our aim was to determine the possible complementary role of the UDCA-PABA test in the diagnosis of bacterial overgrowth. PATIENTS AND METHODS: The H2 breath and UDCA-PABA tests were performed simultaneously on 46 patients with suspected contaminated small bowel syndrome, and on 7 healthy subjects. The H2 breath test was performed by oral loading of 25 g lactose and/or 10 g lactulose. The UDCA-PABA test was carried out by determining urinary excretion of PABA after oral loading with 250 mg UDCA-PABA conjugate. The diagnosis of bacterial overgrowth was established, when either H2 breath, or UDCA-PABA test proved to be pathological. RESULTS: Based upon the pathologic values of either the H2 breath test, or the UDCA-PABA test, 25 out of 46 patients proved to have contaminated small bowel syndrome. In 10 out of 25 patients only pathologic urinary PABA excretion (12.772 +/- 1.707 vs 4.1 +/- 0.58), indicated bacterial overgrowth, and in 9 out of the same group only positive H2 breath test (early rise of > 20 ppm of H2) indicated the same, while in 6 cases both tests proved to be pathological. In 7 CSBS patients the urinary excretion of PABA significantly decreased following a 10 day Tinidazole treatment (5.48 +/- 1.286 vs 13.068 +/- 2.068). CONCLUSION: The UDCA-PABA test proved to be a valuable complementary method to detect bacterial overgrowth, when H2 production failed to reveal bacterial overgrowth.

4-Aminobenzoic Acid↗

Modulation of plateau properties in dorsal horn neurones in a slice preparation of the turtle spinal cord.

1. Modulation of plateau properties in dorsal horn neurones was studied in a transverse slice preparation of the spinal cord of the turtle. In plateau-generating neurones high frequency stimulation of the ipsilateral dorsal root (10-20 Hz, 0.5-2 min) produced a slow depolarization (2.9 +/- 0.6 mV, mean +/- S.E.M.; n = 6) and enhanced the properties mediated by dihydropyridine-sensitive Ca2+ channels. The tetanic stimulus facilitated wind-up and after-discharges even when fast synaptic transmission was blocked by 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX, 10-20 microM), (+/-)-2-amino-5-phosphonopentanoic acid (AP5, 100 microM), bicuculline (10-20 microM) and strychnine (5-20 microM). 2. Application of cis-(+/-)-1-aminocyclopentane-1,3-dicarboxylic acid (ACPD, 10-50 microM) produced a slow depolarization (5.9 +/- 0.5 mV, n = 21) accompanied by an increase in input resistance (28.8 +/- 5.1%, n = 12). 3. ACPD increased the excitability by facilitating the plateau properties. In the presence of tetrodotoxin (TTX, 1 microM) a lower threshold and a slower decay of the plateau potential were observed. These effects resulted in facilitation of wind-up and prolonged after-discharges. 4. All ACPD-induced effects were blocked by alpha-methyl-4-carboxyphenylglycine (MCPG, 0.5-1 mM), a selective antagonist of metabotropic glutamate receptors. The selective agonist for the type I metabotropic glutamate receptor ((RS)-3,5-dihydrophenylglycine (DHPG, 50 microM)) reproduced all the effects of ACPD. 5. Application of a supposed neuromodulator, substance P (1-2 microM) produced a transient depolarization (4 +/- 0.6 mV) lasting 4-6 min during continued application of substance P. Variable effects on the input resistance were observed, a slight increase (12 +/- 2%) being the most frequent. In 61% of the cells, substance P induced a clear increase in excitability with no detectable change in input resistance or membrane potential. 6. The effects of substance P on plateau properties were indistinguishable from those produced by ACPD. Unlike the transient depolarization, the facilitation of the plateau properties persisted in the presence of the agonist. 7. The substance P-induced facilitation of the plateau potential was blocked by GR 82334 (5-10 microM), a selective NK-1 tachykinin-receptor antagonist, and was not affected by MEN 10376 (2 microM), a selective NK-2 antagonist. 8. The facilitation of plateau properties produced by dorsal root stimulation was also reduced by antagonists of metabotropic glutamate receptors and NK-1 tachykinin receptors. 9. We propose that modulation of postsynaptic plateau properties in dorsal horn neurones by activation of type I metabotropic glutamate receptors and NK-1 tachykinin receptors is involved in processing nociceptive information.

6-Cyano-7-nitroquinoxaline-2,3-dione↗