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A Guidotti

Publications and source records attributed to A Guidotti.

At least 73 records · Page 4Linked to original sources

Reversible modification of GABAA receptor subunit mRNA expression during tolerance to diazepam-induced cognition dysfunction.

Benzodiazepines (BZs) that are endowed with full positive allosteric modulatory (FAM) activity on GABAA receptors cause anterograde amnesia in both animals and humans. In rats subjected to a delayed object recognition test, diazepam, endowed with FAM activity, exerted an amnesic action, whereas BZs endowed with partial allosteric modulatory (PAM) activity on GABAA receptors, such as imidazenil, failed to induce amnesia, even if administered at doses five times higher than those equipotent to a standard anticonvulsant dose of diazepam (17.6 mumol/kg/os). After discontinuation of 14 days' treatment with vehicle, diazepam, or imidazenil (three times daily with increasing doses starting from 17.6 mumol/kg/os for diazepam and 2.5 mumol/kg/os for imidazenil), we compared the persistence of tolerance to the amnesic effect of diazepam with the persistence of the changes in the context of four (alpha 1, alpha 5, gamma 2L, gamma 2S) GABAA receptor subunit mRNAs in the fronto-parietal motor (FrPaM) cortex and the hippocampus. Rats receiving the long-term treatment with diazepam developed a tolerance to the amnesic effect of this drug and showed a decrease (30-50%) in the expression of mRNAs encoding for alpha 1 gamma 2L, gamma 2S GABAA receptor subunits, an increase, by approximately 30%, of the expression of mRNA of the alpha 5 subunit in the FrPaM cortex and a decrease, by approximately 25%, in the expression of mRNA, of the alpha 1 subunit in the hippocampus. These changes of subunit mRNA expression and the tolerance to the amnesic effect of diazepam returned to control values 72 hr after termination of the long-term treatment with diazepam. No tolerance to the amnesic effect of diazepam and no changes in GABAA receptor subunit mRNA expression were found in rats undergoing long-term treatment with imidazenil.

Animals↗

Lead (Pb+2) promotes apoptosis in newborn rat cerebellar neurons: pathological implications.

Despite mandated reduction in environmental lead (Pb++), such exposure still poses a public health hazard for children, with devastating effects on CNS development. To replicate aspects of this neurotoxicity, we used cultured granule cells from newborn rat cerebella to study whether apoptotic or necrotic death is the major consequence of exposure to low micromolar concentrations of Pb++. At a low dose, 1 microM (EC50 approximately equal to 10 microM), Pb++ does not affect glutamate-induced neuronal necrosis but promotes neuronal apoptosis, as characterized morphologically by cell shrinkage and chromatin condensation, biochemically by the typical internucleosomal DNA fragmentation and functionally by dependence on new synthesis of macromolecules (cycloheximide- and actinomycin D-sensitive). The low micromolar doses of Pb++ that promote apoptosis are well within the blood level range reported to impair CNS function in children and to alter synaptogenesis in the neonatal rat brain. Thus these in-vitro results suggest that the highly neurotoxic action of Pb++ in the developing CNS of children might depend on a facilitation of apoptosis. The Pb+2-elicited potentiation of neuronal apoptosis is attenuated by treatment with the voltage-sensitive Ca+2 channel agonist Bay K8644, which suggests the possible use of this agonist for treatment of the neurotoxic effects of Pb++.

Animals↗

Modifications of gamma-aminobutyric acidA receptor subunit expression in rat neocortex during tolerance to diazepam.

We evaluated whether tolerance to the antagonism of bicuculine-induced seizures by diazepam is associated with changes (i) in the content of mRNAs encoding for gamma-aminobutyric acidA (GABAA) receptor subunits, (ii) in the expression density of these subunits, and (iii) in the 1,4-benzodiazepine binding site characteristics in discrete neocortical structures. We found that in diazepam-tolerant rats, the content of the mRNA encoding for the alpha 1 subunit of the GABAA receptor decreased in the frontoparietal motor (FrPaM) cortex and in the hippocampus (42% and 20%, respectively) but not in the frontoparietal somatosensory (FrPaSS) cortex, striatum, olfactory bulb, and cerebellum. In the FrPaM cortex, gamma 2S and gamma 2L subunit mRNA contents were also decreased (48% and 30%, respectively), whereas that of alpha 5 was increased (30%). In the FrPaM and FrPaSS cortices as well as in cerebellum of diazepam-tolerant rats, the content of alpha 2, alpha 3, alpha 6, beta 2, and delta subunit mRNA was unchanged, as was the content of alpha 2, alpha 5, gamma 1, and gamma 2S subunit mRNA in the hippocampus. Furthermore, the reduction in alpha 1 subunit mRNA content in the FrPaM cortex and the anticonvulsant tolerance to diazepam returned to control values 72 hr after termination of the protracted diazepam treatment. Rats receiving a treatment with imidazenil in doses equipotent and with a schedule identical to that of diazepam failed to exhibit tolerance to the anticonvulsant action of this drug or cross-tolerance to diazepam. In these rats, the content of mRNA encoding for alpha 1, alpha 2, alpha 3, alpha 5, alpha 6, gamma 1, gamma 2S, gamma 2L, and delta GABAA receptor subunits failed to change in the FrPaM and FrPaSS cortices, in the hippocampus, and in the other brain areas that were studied in diazepam-tolerant rats. Although the density and affinity of [3H]flumazenil and [3H]imidazenil binding failed to change in the FrPaM and FrPaSS cortices of diazepam-tolerant rats, the expression density of alpha 1 subunit immunogold labeling decreased by 37%, whereas that of alpha 5, gamma 2L/S, and beta 2/3 increased by 158%, 50%, and 47%, respectively, in the FrPaM cortex, and the density of the alpha 5 subunit selectively increased (209%) in the FrPaSS cortex. In contrast, the immunogold labeling density of the alpha 1, alpha 5, gamma 2L/S, and beta 2/3 subunits failed to change in either the FrPaM or FrPaSS cortex of rats receiving protracted imidazenil treatment.

Animals↗

Semiquantitative immunocytochemical analysis of GABAA receptor subunit expression in the rat neostriatum.

A semiquantitative immunogold technique was used to investigate the levels of expression of specific GABAA receptor subunits in different regions (dorsolateral, dorsomedial and ventromedial regions) of the rat striatum. The results indicate that the subunits studied can be classified into three groups on the basis of their labelling density in the striatum: alpha 1 and alpha 3 (labelling density of less than 100 gold particles per 1000 microns2), gamma 2 and delta (between 100 and 200 particles per 1000 microns2), and alpha 2 and beta 2/3 (more than 300 particles per 1000 microns2). The alpha 1 and alpha 3 subunits are about 35% more abundant in the dorsal than in the ventral striatum, while the beta 2/3 and gamma 2 subunits are about 40% more abundant in the medial than in the lateral striatum. The alpha 2 and delta subunits did not show significant regional differences in abundance. The present data are consistent with the possibility that there are regional variations in the relative abundances of different GABAA receptor subtypes in the rat striatum.

Animals↗

Pregnenolone sulfate antagonizes dizocilpine amnesia: role for allopregnanolone.

Pregnenolone (PREG) is metabolized in brain to progesterone (PROG), 5 alpha-dihydroprogesterone (5 alpha-DHP) and allopregnanolone (ALLO). Infusion of adrenalectomized/castrated rats with PREG sulfate prevented the cognition deficit elicited by the ionotropic glutamate receptor antagonists, dizocilpine and CPPene. Using a new gas chromatographic/mass-spectrometric method, we demonstrated that PREG sulfate infusion markedly increased the PREG, PROG, 5 alpha-DHP and ALLO brain content. The increase in 5 alpha-DHP and ALLO, but not PREG or PROG content and the antagonism of dizocilpine amnesia observed by injecting rats with PREG sulfate was reversed by inhibiting the conversion of PROG to 5 alpha-DHP with the 5 alpha-reductase blocker SKF 105111. We and others have shown that ALLO potently modulate GABAA receptor function whereas 5 alpha-DHP fails to induce rapid changes in neurotransmitter receptor function. Thus it is possible to suggest that the increase in the brain content of ALLO, rather than 5 alpha-DHP, mediates the effect of PREG sulfate on dizocilpine- or CPPene-induced cognition deficit.

Amnesia↗

7-Chloro-3-methyl-3,4-dihydro-2H-1,2,4-benzothiadiazine S,S-dioxide (IDRA 21), a congener of aniracetam, potently abates pharmacologically induced cognitive impairments in patas monkeys.

We report here on the ability of IDRA 21 and aniracetam, two negative allosteric modulators of glutamate-induced DL-alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor desensitization, to attenuate alprazolam-induced learning deficit in patas monkeys working in a complex behavioral task. In one component of a multiple schedule (repeated acquisition or "learning"), patas monkeys acquired a different four-response chain each session by responding sequentially on three keys in the presence of four discriminative stimuli (geometric forms or numerals). In the other component (performance) the four-response chain was the same each session. The response chain in each component was maintained by food presentation under a fixed-ratio schedule. When alprazolam (0.1 or 0.32 mg/kg p.o.) was administered alone, this full allosteric modulator of gamma-aminobutyric acid type A (GABAA) receptors produced large decreases in the response rate and accuracy in the learning component of the task. IDRA 21 (3 or 5.6 mg/kg p.o.) and aniracetam (30 mg/kg p.o.) administered 60 min before alprazolam, having no effect when given alone, antagonized the large disruptive effects of alprazolam on learning. From dose-response studies, it can be estimated that IDRA 21 is approximately 10-fold more potent than aniracetam in antagonizing alprazolam-induced learning deficit. We conclude that IDRA 21, a chemically unrelated pharmacological congener of aniracetam, improves learning deficit induced in patas monkeys by the increase of GABAergic tone elicited by alprazolam. Very likely IDRA 21 exerts its behavioral effects by antagonizing AMPA receptor desensitization.

Alprazolam↗

Inhibitory effect of ODN, a naturally occurring processing product of diazepam binding inhibitor, on secretagogues-induced insulin secretion.

Diazepam binding inhibitor (DBI1-86) is a peptide that is present in large amounts in the intestine and pancreas and which inhibits glucose-stimulated insulin release from both perfused pancreas and isolated islets in low nanomolar concentrations. Here, DBI33-50 (also known as ODN, octadecaneuropeptide), one of the naturally occurring processing products of DBI1-86, and certain synthetic modified derivatives, have been shown to inhibit glucose and glibenclamide-stimulated insulin secretion from isolated rat islets and glibenclamide-stimulated insulin secretion from hamster-insulinoma (HIT-T15) beta-cell line. DBI17-50 (TTN; triakontatetraneuropeptide), another prominent processing product of DBI, had no effect. The 50% inhibitory concentration (IC50) for the effect of ODN on insulin secretion induced by 8.3 of 16.7 mM glucose was approximately the same: 5 to 6 nM. Moreover, ODN inhibited insulin release induced by 0.01 or 1 microM glibenclamide with a similar IC50 (8 to 10 nM) in both isolated pancreatic islets and in HIT-T15 beta-cells. At concentration up to 1 microM, ODN had no effect on insulin secretion induced by PACAP (pituitary adenylate cyclase polypeptide), BAYK 8644 (methyl-(1,4-dihydro-2,6-dimethyl-3-nitro-4,2-trifluoromethylphenyl) pyridine-5-carboxylate), and only marginally it affected IBMX-(isobutylmethylxanthine) induced insulin secretion. This indicates that ODN does not act directly on ATP-regulated K+ channels, voltage dependent Ca2+ channels or cAMP production. In contrast, ODN inhibited insulin secretion induced by sodium nitroprussiate in a manner that is independent from the presence of extracellular Ca2+. These results suggest that ODN or ODN-like peptide fragments of DBI, may inhibit glucose or glibenclamide-induced insulin secretion via a signaling pathway that regulate the cytoplasmic free Ca2+ concentration.

1-Methyl-3-isobutylxanthine↗

Enantiomeric resolution with a new chiral stationary phase of 7-chloro-3-methyl-3,4-dihydro-2H-1,2,4-benzothiadiazine S,S-dioxide, a cognition-enhancing benzothiadiazine derivative.

The direct analytical and semipreparative high-performance liquid chromatographic (HPLC) resolution of the enantiomers of IDRA 21 [1,7-chloro-3-methyl-3,4-dihydro-2H-1,2,4-benzothiadiazine S,S-dioxide] is reported. (+/-)-IDRA 21 administered orally to rats subjected to a water maze cognition test elicited a performance enhancing effect. Between the two enantiomers, (+)-IDRA 21 was identified as being pharmacologically active in the water maze performance test, whereas (-)-IDRA 21 was completely devoid of activity when given in doses comparable to those of the dextrorotatory (+)-enantiomer. The design and preparation of a new chiral stationary phase (CSP) employed for the liquid chromatographic resolution of the enantiomers of racemic IDRA 21 is presented. This brush-type CSP, which has not been described before, is a "mixed" (pi-donor pi-acceptor) type and is derived from (R)-N-(3,5-dinitrobenzoyl) allylglycine 2,6-dimethylanilide. It is easily prepared and possesses a relatively broad scope of applicability, as determined by its ability to resolve the enantiomers of both pi-acidic and pi-basic compounds.

Animals↗

[Spiral computed tomography of the trachea. Study technique and possible clinical applications].

This work was aimed at optimizing the spiral CT technique in studying the trachea to obtain multiplanar reconstructions with high diagnostic yield. The authors tried to identify an image reconstruction technique, on both the coronal and the sagittal planes, to visualize the whole trachea on a single image in each patient. Twenty patients, 15 with pathologic tracheal involvement and 5 with pulmonary lesions with no tracheal involvement, were examined with a Somatom Plus CT unit (spiral technique: 120 kV, 210 mA, 5-mm slices, 5-mm/s table feed and 24-s scanning time). Multiplanar reconstructions were obtained on the oblique plane, identified by three axial reference scans at different levels. The whole trachea was reconstructed on a single image in 100% of cases on the coronal plane and in 95% of cases on the sagittal plane. Image quality was good in 16 patients and acceptable in 4. The authors stress the value of spiral CT multiplanar images when the reconstruction plane lies in the tracheal lumen on both the coronal and the sagittal planes.

Cysts↗

Gas chromatographic-mass fragmentographic quantitation of 3 alpha-hydroxy-5 alpha-pregnan-20-one (allopregnanolone) and its precursors in blood and brain of adrenalectomized and castrated rats.

Coupling high performance liquid chromatography with gas chromatography-mass fragmentography has made it possible to simultaneously measure subpicomolar concentrations of allopregnanolone and its precursors, pregnenolone, progesterone and 5 alpha-dihydroprogesterone (5 alpha-DHP) in various brain areas. Allopregnanolone was measured in the brain of adrenalectomized/castrated (ADX/CX) rats in nanomolar concentrations long after peripheral sources of allopregnanolone were removed. A partial decrease (approximately 30%) in the content of allopregnanolone was found in the brains of ADX/CX rats compared to sham-operated rats. Moreover, the content of allopregnanolone in brains of sham-operated as well as ADX/CX rats was nonuniformly distributed (olfactory bulb > striatum > cortex > hippocampus) and was one to two orders of magnitude higher than in plasma or liver. Infusion of pregnenolone sulfate in ADX/CX rats elicited a fourfold increase in 5 alpha-DHP and progesterone content and a seven- to eightfold increase in the content of allopregnanolone in brain but not in liver or plasma. Furthermore, the content of allopregnanolone in brain increased to the same extent in both sham-operated and ADX/CX rats following pregnenolone sulfate infusion. The 5 alpha-reductase inhibitor, (17 beta)17[[bis(1-methylethyl)amino]carbonyl] androstane-3,5-diene-3-carboxylic acid (SKF 105111), reduced the brain content of allopregnanolone and blocked the increased formation of allopregnanolone in brain following pregnenolone sulfate infusion. The results clearly demonstrate that the synthesis of allopregnanolone from 5 alpha-DHP and progesterone occurs in the brain and that a significant amount of allopregnanolone is synthesized locally in brain from its precursors. These experiments suggest that the brain, like adrenals and gonads, is a steroidogenic organ which produces allopregnanolone as one of its own most important physiologically relevant steroids.

5-alpha-Dihydroprogesterone↗

Imidazenil, a new anxiolytic and anticonvulsant drug, attenuates a benzodiazepine-induced cognition deficit in monkeys.

Imidazenil is a highly potent partial allosteric modulator of gamma-aminobutyric acid action at a great variety of gamma-aminobutyric acid(A) receptors, whereas alprazolam is a full allosteric modulator at these receptors. Data in rats indicate that imidazenil, like alprazolam, has pharmacological effects in animals indicative of anxiolytic, antipanic and anticonvulsant activity in humans, but unlike alprazolam, in animals imidazenil does not produce ataxia, sedation, tolerance or dependence nor does it potentiate the effects of ethanol. To extend the study of the imidazenil pharmacological profile, we administered this drug and alprazolam, alone and in combination, in monkeys working in a complex behavioral task. In one component of a multiple schedule (repeated acquisition or "learning"), patas monkeys acquired a different four-response chain each session by responding sequentially on three keys in the presence of four discriminative stimuli (geometric forms or numerals). In the other component (performance), the four-response chain was the same each session. The response chain in each component was maintained by food presentation under a fixed-ratio schedule. When alprazolam (0.01-0.32 mg/kg, p.o.) was administered alone, the overall response rate in both learning and performance decreased and the percent errors in both components increased with increasing doses. Learning, however, was more sensitive than performance; i.e., error-increasing effects were seen in learning at doses that had no effect on performance accuracy.(ABSTRACT TRUNCATED AT 250 WORDS)

Alprazolam↗

7-Chloro-3-methyl-3-4-dihydro-2H-1,2,4 benzothiadiazine S,S-dioxide (IDRA 21): a benzothiadiazine derivative that enhances cognition by attenuating DL-alpha-amino-2,3-dihydro-5-methyl-3-oxo-4-isoxazolepropanoic acid (AMPA) receptor desensitization.

7-Chloro-3-Methyl-3-4-Dihydro-2H-1,2,4 Benzothiadiazine S,S Dioxide (IDRA 21), which attenuates the rapid autodesensitization of DL-alpha-amino-2,3-dihydro-5-methyl-3-oxo-4-isoxazolepropanoic acid (AMPA)-selective glutamate receptors and increases excitatory synaptic strength, improves cognition (learning and memory), as revealed by its ability to improve performance in water maze and passive avoidance tests in rats. Normal rats trained to (15-20 sec) reach the exit platform rapidly in a water maze that included four incorrect choices were given oral IDRA 21 (4-120 mumol/kg) or vehicle and then exposed to a delayed retention trial in a maze that included seven incorrect choices. In this retention trial, the IDRA 21-treated rats performed considerably better than those that received the vehicle. Moreover, oral IDRA 21 (ED50 = 7.6 microM) attenuated the performance impairment induced by the AMPA receptor antagonist 2,3-dihydroxy-6-nitro-7-sulfamoylbenzo (F) quinoxaline in the water maze test. In this test and in a passive avoidance test, the performance impairment elicited by alprazolam, a full allosteric modulator at gamma-aminobutyric acid-A receptors, or by scopolamine, a competitive muscarinic receptor antagonist, was also reduced by oral administration of IDRA 21 (ED50 = 13 and 108 mumol/kg, against alprazolam and scopolamine, respectively); in all these tests, IDRA 21 was 20- to 30-fold more potent than aniracetam. Because IDRA 21 is a racemic molecule; the two stereoisomers were isolated and studied behaviorally. Only the (+) form was found to be behaviorally active. These results indicate that IDRA 21 given orally to rats presumably crosses the blood-brain barrier and acts stereoselectively on specific receptors that were operative during this behavioral procedure. Because the activity of IDRA 21 on rat cognition tests appears to be related to its ability to potentiate AMPA-activated currents, one can suggest that IDRA 21 improves cognition by acting on a stereoselective site of AMPA receptor that is operative in attenuating the rapid autodesensitization of these receptors.

Alprazolam↗

LIGA20, a lyso derivative of ganglioside GM1, given orally after cortical thrombosis reduces infarct size and associated cognition deficit.

A bilateral photochemically induced thrombotic lesion of rat sensorimotor cortex (approximately 3 mm in diameter and 25 mm3 in volume) is associated with a persistent cognition (learning and memory) deficit, which was evaluated with water maze tasks. The N-dichloroacetylsphingosine derivative of lysoGM1 (LIGA20) administered after the lesion either i.v. or per or reduces the infarct size by 30-40% and attenuates the associated cognition deficits, presumably by limiting the extent of damage of neurons at risk located in the surroundings of the infarcted core (i.e., area penumbra). The LIGA20 protection is dose and time dependent. Maximal protection is afforded by a single dose of LIGA20 of 34 mumol/kg i.v. 1 hr after lesion or by a dose of 270 mumol/kg per os when administered 1 hr and 24 hr after the lesion. The protective effect of LIGA20 can be observed when the drug is administered i.v. up to 6 hr after the lesion. The protective efficacy of the oral administration of LIGA20 is related to its physiochemical properties, which, unlike those of GM1, allow absorption from the gastrointestinal tract. LIGA20 given orally reaches the brain promptly and rapidly inserts into the neuronal membranes. Here, by an unknown molecular mechanism, LIGA20 selectively reduces the pathological amplification of Ca2+ signaling elicited by persistent stimulation of ionotropic glutamate receptors in the area penumbra.

Administration, Oral↗

CSF neuroactive steroids in affective disorders: pregnenolone, progesterone, and DBI.

Recently several steroid compounds have been discovered to act as neuromodulators in diverse central nervous system (CNS) functions. We wondered if neuroactive steroids might be involved in affective illness or in the mode of action of mood-regulating medications such as carbamazepine. Levels of the neuroactive steroids pregnenolone and progesterone, as well as the neuropeptide diazepam binding inhibitor (DBI) (known to promote steroidogenesis), were analyzed from cerebrospinal fluid (CSF) obtained by lumbar puncture (LP) from 27 medication-free subjects with affective illness and 10 healthy volunteers. Mood-disordered subjects who were clinically depressed at the time of the LP had lower CSF pregnenolone (n = 9, 0.16 ng/ml) compared with euthymic volunteers (n = 10, 0.35 ng/ml; p < 0.01). In addition, pregnenolone was lower in all affectively ill subjects (n = 26, 0.21 ng/ml), regardless of mood state on the LP day, than healthy volunteers (p < 0.05). No differences were found for progesterone or DBI levels by mood state or diagnosis. Progesterone, pregnenolone, and DBI did not change significantly or consistently in affectively ill subjects after treatment with carbamazepine. CSF pregnenolone is decreased in subjects with affective illness, particularly during episodes of active depression. Further research into the role of neuroactive steroids in mood regulation is warranted.

Adult↗

CSF biochemistries, glucose metabolism, and diurnal activity rhythms in alcoholic, violent offenders, fire setters, and healthy volunteers.

BACKGROUND: There is an extensive literature describing a central serotonin deficit in alcoholic, impulsive, violent offenders and fire setters. In the present study, we investigated biochemical concomitants of impulsivity and aggressiveness, and the physiological consequences of reduced central serotonin turnover. METHODS: Forty-three impulsive and 15 nonimpulsive alcoholic offenders and 21 healthy volunteers were studied in the forensic psychiatry ward of a university psychiatric department. The subjects underwent lumbar punctures and oral glucose and aspartame challenges, and their diurnal activity rhythm was measured with physical activity monitors. Discriminant function analyses were used to investigate psychophysiological and biochemical concomitants of aggressive and impulsive behaviors. RESULTS: Alcoholic, impulsive offenders with antisocial personality disorder had low mean cerebrospinal fluid (CSF) 5-hydroxyindoleacetic acid (5-HIAA) and corticotropin levels and high mean CSF testosterone concentrations. Compared with healthy volunteers, they showed increased physical activity during the daytime. Alcoholic, impulsive offenders with intermittent explosive disorder had a low mean CSF 5-HIAA concentration and blood glucose nadir after an oral glucose challenge, and desynchronized diurnal activity rhythm. Healthy volunteers had mean CSF 5-HIAA concentrations that were intermediate between those of alcoholic, impulsive and nonimpulsive offenders. Alcoholic, nonimpulsive offenders had a significantly higher mean CSF 5-HIAA concentration than all the other groups, including healthy volunteers. CONCLUSIONS: In the present sample, a low CSF 5-HIAA concentration was primarily associated with impulsivity and high CSF testosterone concentration, with aggressiveness or interpersonal violence.

Adrenocorticotropic Hormone↗

Personality profiles and state aggressiveness in Finnish alcoholic, violent offenders, fire setters, and healthy volunteers.

BACKGROUND: Based on clinical observations in a series of studies on Finnish alcoholic, violent offenders, we asserted that the impulsive offenders represented an extreme group of type 2 alcoholics. We also observed that these subjects were vulnerable to hypoglycemia after the administration of oral glucose load. Furthermore, we believe that while being hypoglycemic, the impulsive offenders are particularly irritable and aggressive. In the present study, we addressed these issues by studying psychological trait and state variables in a new group of violent offenders and fire setters, and age- and sex-matched healthy volunteers. METHODS: Fifty-eight alcoholic, violent offenders and impulsive fire setters and 21 healthy volunteers were administered the Karolinska scales of personality and the Rosenzweig picture frustration test after an oral aspartame and glucose challenge. RESULTS: The psychological test results and the criminal histories of the offenders, together with biochemical measurements, suggest that a low 5-hydroxyindoleacetic acid concentration in cerebrospinal fluid in the alcoholic offenders is associated with irritability and impaired impulse control, and a high free testosterone concentration in cerebrospinal fluid is associated with increased aggressiveness, monotony avoidance, sensation seeking, suspiciousness, and reduced socialization. CONCLUSION: Finnish alcoholic, impulsive offenders have personality profiles characteristic of Scandinavian early-onset male alcoholics with antisocial traits, who have been also referred to as type 2 alcoholics.

Adult↗