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Biomedical subjects

U E Lang

Publications and source records attributed to U E Lang.

3 recordsLinked to original sources

Nerve growth factor response to excitotoxic lesion of the cholinergic basal forebrain is slightly impaired in aged rats.

Nerve growth factor (NGF) promotes survival and function of basal forebrain cholinergic neurons. We studied NGF and choline acetyltransferase (ChAT) activity after partial quisqualic acid induced lesions of the basal forebrain in 3 and 27 months-old rats, in order to investigate whether NGF-related regeneration is disturbed in old age. 2 weeks post lesion, ChAT activity decreased by 25 to 32% in adult and old rats. 3 months post lesion, the ChAT deficit receded in adult rats, but remained unchanged in old rats. 2 weeks post lesion, NGF levels were reduced by 36 to 44%, but there was no significant difference between adult and old rats. 3 months post lesion, we found increased NGF levels by 44% in the posterior cortex of adult rats. These results indicate that the compensatory NGF increase in the posterior cortex after partial cholinergic lesion of the basal forebrain is slightly impaired in old age.

Acetylcholine↗

Panic attacks, spike-wave activity, and limbic dysfunction. A case report.

INTRODUCTION: Several lines of evidence indicate that an increased neuronal excitability of the corpus amygdaloideum and hippocampus may be one pathophysiological condition of panic attacks. METHODS: In this report, we will describe the case of a 54-year-old female patient with a depressive syndrome who first experienced very rapid atypical panic attacks with dizziness, trance-like and distorted optical perception, but without clear epileptic symptoms. RESULTS: Several EEG recordings showed temporal sharp-waves and spike-wave patterns. Magnetic resonance imaging (MRI) revealed a hypodense area near left mesial temporal structures. Brain imaging with SPECT showed a hypoperfusion of the basal temporal cortical structures on the left side. Treatment with antidepressants had no effect, but the addition of valproic acid led to an attenuation of the panic attacks and epileptic potentials on the EEG. DISCUSSION: A clinical trial using anti-epileptics could be successful in patients not responding to antidepressants or in the presence of epileptiform EEG activity. In this article, we will review the literature concerning the complex relationship between panic attacks and ictal activity of limbic structures and discuss the difficult diagnostic classification of atypical cases.

Anticonvulsants↗

Subchronic treatment with lithium increases nerve growth factor content in distinct brain regions of adult rats.

There is compelling evidence that withdrawal of neurotrophins can lead to impaired neuronal function and even apoptotic death of neurons. Recent experimental evidence suggests that antidepressant drugs and electroconvulsive treatment might work by enhancing CNS levels of neurotrophins. In addition, Lithium (LI) has been shown to exert robust neuroprotective effects apart from its well known mood-stabilizing effects in humans. In this study we investigated the effects of subchronic (14 days) treatment with various doses of LI on the NGF content of several regions of the adult rat brain. LI treatment, which resulted in prophylactic LI serum concentrations (0.72 +/- 0.08 mMol l(-1)), induced a significant (P < 0.05) increase in NGF concentrations in the frontal cortex (+23.2%), hippocampus (+72%), amygdala (+74%) and limbic forebrain (+46.7%) compared to untreated controls, whereas no effects on NGF concentrations were observed in the striatum, the hypothalamus or the midbrain, even using various LI doses. Moreover, no significant change in NGF concentrations in the frontal cortex was observed after acute (1 day) treatment with LI. Our findings lend support to the notion that an enhancement of NGF production may be specifically involved in the mechanisms of action of antibipolar treatments.

Animals↗