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Biomedical subjects

U Ribary

Publications and source records attributed to U Ribary.

25 records · Page 2Linked to original sources

Effects of acute and chronic prenatal nicotine treatment on central catecholamine systems of male and female rat fetuses and offspring.

The effect of acute and chronic prenatal administration of nicotine on central catecholamine systems was studied in Long Evans rats. A single injection of nicotine (1 mg/kg s.c.) to urethane-anesthetized time-pregnant dams at gestational day (GD) 21 increased dopamine, 3,4-dihydroxyphenylacetic acid and homovanillic acid (determined by radioenzymatic assay and high-performance liquid chromatography with electrochemical detection, respectively) in male and female fetal forebrain within 30 min. No significant change was seen in norepinephrine (NE) and MOPEG, but the MOPEG/NE ratio increased in male fetuses. After the administration of nicotine by an osmotic minipump (0.25 mg/kg x hour or vehicle for controls) between GD 12 and 18/19, MOPEG was elevated at GD 18 and reduced at postnatal day (PN) 15 in both sexes; the reduction persisted in males until adulthood (2.5 months). 3,4-dihydroxyphenylacetic acid was affected by chronic drug treatment only in males with an increase at GD 18 and PN 15 and a decrease in adulthood. In contrast, homovanillic acid was reduced in adult offspring of both sexes. Male NE and dopamine of both sexes was above control level at PN 15. Cross-fostering data demonstrate that the changes were due to prenatal influences. The observations indicate that central fetal catecholamine systems are responsive to acute administration of nicotine and that chronic prenatal exposure to the drug results in persistent alterations in the functional state of these neurons. The drug-induced pattern of neurochemical alterations changes during ontogeny until adulthood; it depends upon the sex of the offspring.

3,4-Dihydroxyphenylacetic Acid↗

Maternal stress alters monoamine metabolites in fetal and neonatal rat brain.

Heat-restraint stress given rats during the last week of gestation significantly altered dopaminergic dihydroxyphenylacetic acid and homovanillic acid (DOPAC and HVA) and noradrenergic 3-methoxy-4-hydroxy-phenyl-ethylene glycol (MOPEG) forebrain-hypothalamic monoamine (MA) metabolites in female offspring. On gestational day 21, HVA and MOPEG were significantly higher and lower, and on postnatal day 1 all were higher. There were virtually no differences in brain MA concentrations in males. Thus MA metabolic concentrations differ in fetal-neonatal forebrain-hypothalamus as a function of sex differences and maternal stress.

3,4-Dihydroxyphenylacetic Acid↗

Topographic distribution of the 40 Hz auditory evoked-related potential in normal and aged subjects.

Galambos, Makeig and Talmachoff (1981) described what they called the 40 Hz event-related potential (ERP). This steady-state response is an EEG following response to repetitive auditory stimulation which becomes sinusoidal in form and maximal in amplitude at rates between 35 and 45 Hz. The present study was designed to examine the scalp topography of the 40 Hz ERP in order to complement previous magnetoencephalographic studies which implicate auditory cortex in the generation of the response. In addition, this study was designed to collect normative data on an aged sample in order to assess the effects of aging on the response. 40 Hz ERP's were recorded from a group of seven audiometrically and neurologically normal elderly subjects (mean age = 69.6 years) and a younger group of five normal adults (mean age = 38.0 years), using 1000 Hz tones presented binaurally at 40 per second. A 21 channel recording system was used to obtain a comprehensive picture of the scalp distribution of the response. Recorded ERP's were Fourier transformed to enhance the signal-to-noise ratio. No significant differences were found in phase or amplitude of the 40 Hz ERP between the two age groups, indicating that the normal aging process does not have an effect on this response. Topographic maps of the 40 Hz ERP showed reversals of electrode potential in temporal regions, supporting an interpretation of bilateral sources in temporal cortex. The data presented in this study complement previous studies of the 40 Hz event-related magnetic field and support the position that temporal cortex is involved in the generation of the response.

Acoustic Stimulation↗

A new device for monitoring early motor development: prenatal nicotine-induced changes.

A new type of activity meter has been designed especially for young rats. It consists of a warmed platform for the animal, a TV camera with monitor and a microprocessor. The TV camera detects the animal as a black figure on a light background. This picture is digitalized and stored in a Z80 microprocessor. Every 200 msec a new image is compared to the foregoing one. The total number of black points that are changing from black to white and vice versa provides a measure for motor activity of the animal. Prenatally nicotine-treated rat pups were tested on the activity meter. The developmental pattern of motor activity was different for male and female pups. Motor activity of nicotine-treated male pups differed significantly from controls at postnatal days 7 and 15 while this drug effect was not seen in females.

Animals↗

[Pharmacological modifications of neuroendocrine ontogenesis. Development of receptors, nicotine and catecholamines].

The prenatal ontogeny of several receptor sites is reviewed. Binding sites for nicotine are found in fetal rat brain from gestational day 14; their regional development is described. Prenatal nicotine exposure interferes with the organization of the gonadal axis of the male rat fetus and is followed by permanent alterations in catecholamine metabolite levels. Cannabis, ethanol, barbiturates and opiates are also capable of disturbing the sexual differentiation of the central nervous system. These observations indicate that interactions with the ontogeny of neuroendocrine systems represent an important pathogenetic mechanism through which drugs can affect brain development. Recent observations on receptor development in the human fetus suggest the existence of a comparable sensitive period.

Animals↗

Analysis by HPLC-EC of metabolites of monoamines in fetal and postnatal rat brain.

High performance liquid chromatography with electrochemical detection (HPLC-EC) was adapted for the analysis of metabolites of monoamines (MA) in the developing brain of the rat. 3-Methoxy-4-hydroxy-phenyl-ethylene glycol (MOPEG), dihydroxy phenylacetic acid (DOPAC), homovanillic acid (HVA) and 5-hydroxy-3-indoleacetic acid (5-HIAA) were found in significant amounts in forebrain of the foetal rat from gestational day (GD) 17. The development pattern of the four metabolites was essentially similar in male and female animals. Except for transient fluctuations at around birth, concentrations of metabolites increased gradually throughout late gestation and early postnatal life. In late gestation and at birth the absolute amounts were small, while the concentrations were comparable to adult levels.

3,4-Dihydroxyphenylacetic Acid↗