Search PubMed⌕ Search

Biomedical subjects

S Marret

Publications and source records attributed to S Marret.

At least 37 records · Page 2Linked to original sources

Isolated mild fetal cerebral ventriculomegaly: a retrospective analysis of 26 cases.

We retrospectively studied 26 fetuses with isolated mild cerebral ventriculomegaly diagnosed between 1992 and 1998 and defined by a lateral ventricular atrial diameter of 10-15 mm without any other cerebral anomaly. Our objectives were to determine maternal risk factors, to evaluate complementary investigations, to assess developmental prognosis and to propose possible management. During pregnancy 10/26 patients had regressive ventriculomegalies, ten remained borderline at birth and six were confirmed postnatally. No maternal risk factors were identified. Prenatal investigations were carried out in 69% of cases but in only a few cases supplied any information. Postnatal examinations revealed one case of Down syndrome and one of porencephaly. Four children were lost to follow-up. In the 22 other cases, four had developmental delay. Early and unexplained mild ventriculomegaly appears to have a good prognosis. If ventriculomegaly is persistent, prenatal management should be carried out to investigate chromosomal abnormalities, viral infection, and fetal cerebral parenchymal damage. A long postnatal clinical follow-up is required.

Adult↗

Cerebral white matter damage in the preterm infant: pathophysiology and risk factors.

Based on clinical, epidemiologic, and experimental studies, the aetiology of white matter damage, specifically periventricular leukomalacia (PVL), is multifactorial and involves pre- and perinatal factors possibly including genetic factors, hypoxic-ischaemic insults, infection, excess cytokines, free radical production, increased excitatory amino acid release, and trophic factor deficiencies. The article summarizes research findings about the aetiology of white matter damage and cerebral palsy in preterm infants. The information is organized according to specific antecedents, for which we present epidemiological and neurobiological data. The most important prenatal factor appears to be intrauterine infection. We discuss the evidence supporting the hypothesis that the foetal inflammatory response contributes to neonatal brain injury and later developmental disability. We recently established an animal model of excitotoxic lesions in the developing mouse brain. Brain damage was induced by intra-cortical injections of ibotenate, a glutamatergic agonist. When administered on post-natal day 5 ibotenate induced the formation of white matter cysts. Our animal model could be used to further explore the mechanisms involved in the formation of PVL. Potentially preventive strategies will be discussed.

Brain Injuries↗

Environmental factors and disturbances of brain development.

Foetal and neonatal brain is under the influence of environmental factors from maternal and extra-maternal origin. Based on the available data, these environmental factors can be classified into three arbitrary groups: (i) factors and maternal status with a demonstrated deleterious effect on the foetal brain (i.e. ethanol, cocaine, some drugs including anticonvulsants, some viral infections, maternal diabetes, untreated maternal phenylketonuria); (ii) factors highly suspected to interfere with foetal brain development (i.e. lead and other heavy metals, some drugs like benzodiazepines, nicotine); (iii) factors which have been shown to be safe for the developing brain in the available studies (i.e. low to moderate doses of caffeine, methadone). However, most of these studies do not address the potential risk of environmental factors on minimal to moderate cognitive and behavioural disturbances. Finally, the impact of the neonatal environment on brain development in very pre-term infants is probably underestimated.

Brain↗

Central role of microglia in neonatal excitotoxic lesions of the murine periventricular white matter.

Periventricular leukomalacia (PVL) is the main cause of neurologic handicap in pre-term infants. The understanding of cellular and molecular mechanisms leading to white matter damage is critical for development of innovative therapeutic strategies for PVL. The pathogenesis of PVL remains unclear but possibly involves glutamate excitotoxicity as an important molecular pathway. We previously described a neonatal mouse model of excitotoxic white matter lesion mimicking human PVL. In the present study, we used this experimental tool to investigate the cellular populations and the glutamate receptor subtypes involved in excitotoxic white matter lesions. Combined immunohistochemical, electron microscopic, and cell death detection data revealed that microglial activation and astrocytic death were the primary responses of white matter to excitotoxic insult. In vitro experiments suggested that microglia activated by ibotenate released soluble factors that kill astrocytes. The use of selective agonists and antagonists of glutamate receptors revealed that N-methyl-D-aspartate (NMDA) receptor activation was essential and sufficient to produce cystic white matter lesions. NMDA receptor immunohistochemistry labeled microglial cells in the neonatal periventricular white matter. The developing white matter displayed a window of sensitivity to excitotoxic damage that was paralleled by the transient presence of NMDA receptor-expressing white matter cells. Assuming that similar pathophysiologic mechanisms are present in human pre- term infants, microglia and NMDA receptors could represent key targets for treatment of PVL.

Animals↗

Fetal and neonatal cerebral infarcts.

Focal arterial infarction in the full-term newborn is an important cause of acquired cerebral lesions in the perinatal period. Clinical motor seizures, most often unifocal, are the nearly constant disclosing symptom confirmed by focal EEG abnormalities. A multifactorial physiopathology is usual, including genetic and perinatal environmental factors. In the past decade, various acquired or genetic thrombophilias have been discussed as risk factors. For several of the involved mechanisms, the excitotoxic cascade could represent a common final pathway leading to neuronal cell death. Early magnetic resonance imaging studies and EEG help to identify the newborns with strokes who are likely to develop hemiplegia and disabilities at school. Protection of the human fetal brain remains difficult, since the triggering factor initiating the excitotoxic cascade is rarely observed. Treatment of seizures is nevertheless necessary, because it seems that they accelerate anoxia-induced neuronal death in animal models of focal hypoxic ischemia.

Animals↗

[Conjunctivo-corneal complex choristoma. Report of an anatomoclinical study].

Complex choristomas are very rare ocular tumors. We report a case of a 3-month-old infant who was referred to us because of a left congenital conjunctivo-corneal protruding mass. Total excision removing 2/3 of the limbus was performed and replaced simultaneously by a limbal autograft. Histopathological examination of the excised choristoma revealed many pilosebaceous follicules in the conjunctival tissue, keratinized epithelium, lacrimal glands, and differentiated cartilage.

Choristoma↗

VIP and PACAP 38 modulate ibotenate-induced neuronal heterotopias in the newborn hamster neocortex.

Intracerebral administration of ibotenate produces, through activation of N-methyl-D-aspartate (NMDA) receptors, neuronal heterotopias in the newborn hamster neocortex: high doses of ibotenate induce periventricular and subcortical neuronal heterotopias, while low doses of ibotenate produce intracortical heterotopias and molecular layer ectopias. Vasoactive intestinal peptide (VIP) and pituitary adenylate cyclase-activating polypeptide (PACAP) are closely related peptides with neurotrophic properties. They share common VPAC1 and VPAC2 receptors, which use cAMP as a second messenger. Previous studies have shown that VIP prevents excitotoxic neuronal death and exacerbates glutamate-induced c-fos neuronal expression. In order to gain new insight into the molecular control of neuronal migration, the present study examined the effects of VIP and PACAP on ibotenate-induced heterotopias in the newborn hamster. Co-treatment with VIP and a high dose of ibotenate produced a pattern of neuronal heterotopias similar to the one observed in animals treated with low doses of ibotenate alone. Pups co-injected with a low dose of ibotenate and a VIP antagonist displayed cortical dysgeneses similar to those observed in animals treated with high doses of ibotenate alone. The modulating effects of VIP on excitotoxin-induced heterotopias were mimicked by forskolin, PACAP, and by a specific VPAC2 receptor agonist but not by a VPAC1 agonist, and were blocked by a protein kinase A (PKA) inhibitor. Taken together, these data suggest that VIP and PACAP can attenuate ibotenate-induced heterotopias in newborn hamster and that this effect is mediated by the VPAC2 receptor utilizing the cAMP-PKA pathway.

Animals↗

[Grand prematurity, risk of neuropsychic handicaps and neuroprotection].

Increased survival of very preterm infants and extremely preterm infants does not imply an increase in neurodevelopmental sequelae. However, preterm infants remain at high risk of severe cerebral palsy with neuromotor dysfunction and mental retardation. Necrotic or hemorrhagic lesions occurring in the periventricular ring of telencephalic white matter are the most threatening events for the developing brain of these infants. Recent progress in neuroepidemiology, developmental neurobiology and imaging methods has made it possible to revisit the pathophysiology of brain lesions on a multifactorial basis. Treatment and early detection of infections is a priority. Neuroprotective agents capable of arresting neuron cell death (antagonists of the excitotoxic cascade, free-radical antagonists, proinflammatory cytokine antagonists, growth factors) are new strategies for the prevention of cerebral palsy.

Brain Diseases↗

Neuronal migration disorder in Zellweger mice is secondary to glutamate receptor dysfunction.

Disorders of neuronal migration in cerebral cortex are associated with neurological impairments, including mental retardation and epilepsy. Their causes and pathophysiology remain largely unknown, however. In patients with Zellweger disease, a lethal panperoxisomal disorder, and in mice lacking the Pxr1 import receptor for peroxisomal matrix proteins, the absence of peroxisomes leads to abnormal neuronal migration. Analysis of Pxr1-/- mice revealed that the migration defect was caused by altered N-methyl-D-aspartate (NMDA) glutamate receptor-mediated calcium mobilization. This NMDA receptor dysfunction was linked to a deficit in platelet-activating factor, a phenomenon related to peroxisome impairment. These findings confirm NMDA receptor involvement in neuronal migration and suggest a link between peroxisome metabolism and NMDA receptor efficacy.

Animals↗

Glycine antagonist and NO synthase inhibitor protect the developing mouse brain against neonatal excitotoxic lesions.

The prevention of cerebral palsy and neuroprotection of the immature brain continue to be health care priorities. The pathophysiology of perinatal brain lesions associated with cerebral palsy seems to be multifactorial and includes pre- and perinatal factors such as preconceptional events, hormone and growth factors deficiencies, maternal infections with production of cytokines, and hypoxic/ischemic perfusion failures. Excitotoxic cascade could represent a common pathway that leads to neural cell death and subsequent brain damage. Brain injuries induced by ibotenate, a glutamatergic analog, which are essentially mediated through the N-methyl-D-aspartate receptor, mimic some aspects of the white matter cysts and transcortical necrosis observed in human perinatal brain damage. The purpose of the present study was to assess the protective role of several pharmacological agents, administered in conjunction with ibotenate, against induced excitotoxic lesions. We injected ibotenate in the developing mouse brain 5 d postnatally, after the full settlement of neuronal layers. Co-treatment with kynurenic acid, an antagonist of the facilitating glycine site of the N-methyl-D-aspartate receptor, or with N(G)-nitro-L-arginine, an inhibitor of nitric oxide synthesis, induced a dose-dependent neuroprotective effect. Conversely, zinc gluconate, a blocking agent of the channel linked to the N-methyl-D-aspartate receptor, and a free radical scavenger (U74389F), were unable to protect the developing brain against excitotoxic attack. These data help to clarify some molecular mechanisms involved in excitotoxic lesions of the developing mouse brain and permit us to envision new strategies in the prevention of cerebral palsy.

Animals↗

Fetal lactic dehydrogenase variation in normal pregnancy and in cases of severe intra-uterine growth restriction.

Physiological and pathological fetal levels of lactic dehydrogenase (LDH), including its five different iso-enzymes are still poorly known. Our objectives were to compare total LDH levels and its five iso-enzymes between a control group of healthy fetuses and a group of fetuses with severe intra-uterine growth restriction (IUGR), and to determine the biochemical associations and the prognostic value of elevated LDH activity in fetuses with IUGR. Total LDH levels, haematologic values and liver enzyme activities were measured in 108 healthy fetuses from 17 to 37 weeks of gestation and in 44 fetuses with severe IUGR. Total fetal LDH in plasma from the healthy fetuses were constant throughout pregnancy (mean (SD)= 305.09 (46.97)). Total LDH values in plasma significantly increased in cases of IUGR (p=0.003), and the degree of increase was significantly correlated with fetal erythroblastosis (n =44, r=0.80, p<0.001). LDH 5 significantly decreased in the IUGR group (p=0.03). Total LDH values strictly above 400 IU/l (a value equal to the mean+2 SD in the healthy fetus group) were found to be significantly associated with thrombocytopenia (p<0.001), erythroblastosis (p=0.008) and an increase in AST value (p=0.03). These results suggest that the fetal LDH value in plasma is a useful biological marker for severe chronic distress.

Case-Control Studies↗

Long-term evolution of excitotoxic cortical dysgenesis induced in the developing rat brain.

Cortical dysplasias are frequently caused by excitotoxic brain damage due to hypoxia or ischemia during development. Ibotenate, a glutamatergic agonist, was injected in the neopallium of rat pups at day of birth. The resulting cytoarchitectonic pattern includes neuronal depopulation in deep cortical layers, sulcus formation, and molecular ectopias, mimicking human polymicrogyria and disorders of neuronal migration. These cortical dysplasias persist until adulthood, providing a rat model to investigate the long-term functional consequences of cortical malformations.

Abnormalities, Drug-Induced↗

[Localized neonatal convulsions and cerebral arterial infarction].

BACKGROUND: Stroke is a rare cause of neonatal seizures. CASE REPORTS: During a 5-year period, eight full-term infants were admitted to hospital for seizures due to a stroke. Seizures began shortly after birth and were always one-sided. Early CT scans showed cerebral infarctions. Motor disabilities such as hemiparesis were found in three out of seven cases; language difficulties were observed in the same proportion; however all the children had not reached school age. CONCLUSION: Neonatal localized seizures may be symptomatic of a stroke and therefore justify a computerized tomography (CT) scan. Motor and cognitive sequelae require early management.

Cerebral Infarction↗

[Focal dermal hypoplasia: description of three cases].

BACKGROUND: Focal dermal hypoplasia syndrome is mainly defined by the association of abnormalities of extremities, atrophy and linear hyperpigmentation of the skin, localized deposits of superficial fat, anomalies of the eyes and of the nails. Neonates are often small for their age. CASE REPORTS: Three sporadic cases are reported. Mental delay and omphalocele were observed in the first case. The neurological development was subnormal in the second and an unusual monodactyly was seen in the third. CONCLUSION: Most cases are sporadic, but in family cases, an X-linked dominant factor is likely. When a first affected offspring is observed, skin examination and X-ray should be carried out in parents to evaluate the risk of recurrence in their children. As the gene site has not yet been determined, antenatal diagnosis should be suspected on echography when fetal growth delay is associated to distal limb and/or ocular anomalies.

Child↗