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M A Matthijssen

Publications and source records attributed to M A Matthijssen.

5 recordsLinked to original sources

Ontogeny of open field activity in rats after neonatal lesioning of the mesocortical dopaminergic projection.

In order to examine the effect of neonatal depletion of the dopaminergic mesocortical projection on the development of a prefrontal cortex-mediated behaviour the ontogeny of open field behaviour was studied after neonatal depletion of cortical dopamine. Cortical dopamine was depleted by neonatal thermal lesions of the ventral tegmental area (VTA). Medial VTA lesions caused a moderate dopamine depletion in the prefrontal cortex and an almost complete cortical serotonin depletion, and resulted in transient hyperactivity in the open field at postnatal day 25. More extensive VTA lesions produced an almost complete depletion of dopamine in the prefrontal cortex, but also affected the dopaminergic innervation of the nucleus accumbens, and resulted in a permanent hypoactivity in locomotor and exploratory behaviour in the open field. The effects of neonatal lesions of the mesolimbocortical projection are quite different from those made in adulthood. These results indicate in addition that, apart from the dopamine/noradrenaline balance, the serotonin/dopamine interactions in the frontal cortex may also be of importance in regulating open field activity.

Age Factors

Morphometric analysis of prefrontal cortical development following neonatal lesioning of the dopaminergic mesocortical projection.

In this study the possibility that dopamine (DA) plays a trophic role in cortical development was studied by analysing cortical morphology and dendritic arborization of pyramidal cells after neonatal depletion of DA. The prefrontal cortex (PFC) was depleted of a DA innervation from postnatal day 1 onwards by thermal lesions of the DA cell group (A10) in the ventral tegmental area. Measurements of the cortical thickness and volume of the PFC subareas did not reveal any gross alterations. The DA-depleted animals, however, showed a 30% decrease in the total length of the basal dendrites of the pyramidal cells in layer V of the medial PFC. These cells constitute the primary target of the dopaminergic innervation in the prefrontal cortex. The decreased dendritic length was due mainly to a reduced branching frequency of the basal dendrites. The present results of the dendritic measurements support a trophic role for DA in neuronal differentiation.

Aging

Neonatal thermal lesions of the mesolimbocortical dopaminergic projection decrease food-hoarding behavior.

In order to examine the effect of neonatal depletion of the dopaminergic mesocortical projection on the development of prefrontal cortex-mediated behaviors, male and female adult rats with neonatally applied thermal lesions of the dopaminergic A10 cell group in the ventral tegmental area were studied in a food-hoarding situation. Control male animals hoarded significantly more pellets than females. Neonatal depletion of dopamine in the prefrontal cortex strongly decreased food-hoarding activity in contrast with previous studies by others which have shown that neonatal lesions of the prefrontal cortex allow sparing of food-hoarding activity. Biochemical analysis demonstrated an approximately 50% depletion of both dopamine and serotonin in the prefrontal cortex of males, whereas noradrenaline levels were unchanged. The brains of the female rats were used to visualize the decreased dopaminergic and serotonergic innervation of the forebrain. Hoarding scores showed a significant positive correlation with the measured dopamine content of the medial prefrontal cortex, and not with the serotonin content. These results imply that the integrity of the dopaminergic projection to the prefrontal cortex is essential for food-hoarding behavior to occur and that food-hoarding activity is not spared after neonatal depletion of dopamine.

Animals

Effects of neonatal thermal lesioning of the mesocortical dopaminergic projection on the development of the rat prefrontal cortex.

The role of dopamine (DA) in the development of the prefrontal cortex (PFC) was investigated by depleting the dopaminergic innervation of the PFC. A new stereotaxic procedure made it possible to produce small lesions in 1-day-old rats confined to the A10 group of dopaminergic cell bodies in the ventral tegmentum, from which the dopaminergic projection to the PFC originates. The variety in the lesions revealed a clear topographical organization of the efferent connections of the ventral tegmental area (VTA) to the prefrontal cortex. As far as we know from the literature the data presented in this study are a first direct indication of a neurotrophic role for dopamine in the development of the prefrontal cortex. When the prefrontal cortex was depleted of the dopaminergic innervation from birth on, by lesioning the cells of origin on postnatal day 1, the cortical thickness in the medial PFC was reduced by about 6%. Although coagulative lesions in the ventral tegmentum cause also a depletion of cortical serotonin, cortical reduction seems to be rather the result of the absence of dopamine during its development. This is indicated by the absence of a significant cortical thickness reduction in the dysgranular part of the first somatosensory cortex, which receives a serotonergic but no dopaminergic innervation.

Animals

Immunocytochemical localization of dopamine in the prefrontal cortex of the rat at the light and electron microscopical level.

In the present study the dopaminergic innervation of the prefrontal cortex was studied by means of a recently developed anti-dopamine serum. This method can demonstrate endogenous dopamine in a specific way, and offers the opportunity to study the distribution of dopaminergic fibres in the cortex in detail in counterstained sections. Furthermore, dopaminergic nerve endings can be visualized at the electron microscopic level. Light microscopic observations demonstrated that the highest density of dopaminergic fibres in the frontal cortex is found in the prefrontal cortex and the infralimbic cortex. Within the prefrontal cortex, a good correlation is found between regional differences in distribution of dopaminergic fibres and the cytoarchitectonic parcellation of this part of the cortex. Outside the prefrontal cortex dopaminergic fibres were observed in adjacent frontal areas, the cortex surrounding the entire rhinal sulcus and the retrosplenial cortex. Electron microscopic observations demonstrated dopaminergic terminals through all cortical layers. The majority of dopaminergic terminals in the prefrontal cortex from synaptic contacts with dendritic processes. The synaptic profiles were usually symmetric and were characterized by the presence of many clear vesicles and an occasional dense-core vesicle.

Animals