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W H Oertel

Publications and source records attributed to W H Oertel.

At least 19 recordsLinked to original sources

Do NMDA receptor antagonists protect against MPTP-toxicity? Biochemical and immunocytochemical analyses in black mice.

We investigated whether excitatory amino acids acting at the N-methyl-D-aspartate (NMDA) subtype of the L-glutamate receptor contribute to the dopaminergic neurotoxicity induced by systemic administration of the Parkinson's syndrome-inducing toxin 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) in C57Bl/6 mice. The MPTP-regimen chosen (30-40 mg/kg body weight subcutaneously) resulted a 60-70% depletion of striatal dopamine (DA) content and a 20% reduction of tyrosine hydroxylase immunoreactive (TH-IR) cells in the substantia nigra pars compacta 20 days after administration. Repeated systemic coadministration of the non-competitive NMDA receptor antagonist MK-801 or of the novel competitive NMDA receptor antagonist CGP 40116 did not protect against MPTP-induced striatal DA depletion 20 days after toxin administration. Additionally, no short-term protective effects of MK-801 on striatal DA content were observed 24, 48, and 96 h, respectively, after exposure to MPTP. A slight and non-significant attenuation (approximately 10%) of the MPTP-induced decrease in the number of nigral TH-IR cells was observed after MK-801- and CGP 40116-treatment. We conclude that neurotoxicity of systemically administered MPTP is not substantially antagonized by NMDA receptor antagonists in mice.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine

Five subtypes of type A gamma-aminobutyric acid receptors identified in neurons by double and triple immunofluorescence staining with subunit-specific antibodies.

The extraordinary structural diversity of subunits forming type A gamma-aminobutyric acid (GABAA) receptors in the brain is expected to give rise to different modes of GABAergic synaptic inhibition and different profiles of modulatory drugs effective in anxiolytic, hypnotic, and antiepileptic therapy. To identify receptor subtypes in situ, the most prevalent subunits were visualized by double and triple immunofluorescence staining in rat brain, using polyclonal antibodies to the alpha 1, alpha 3, and gamma 2 subunits and a monoclonal antibody to locate both the beta 2 and the beta 3 subunit. At both cellular and subcellular levels five distinct patterns of subunit colocalization were identified: I, alpha 1 beta 2,3 gamma 2; II, alpha 3 beta 2,3 gamma 2; III, alpha 1 alpha 3 beta 2,3 gamma 2; IV, alpha 3 gamma 2; and V, alpha 1 alpha 3 gamma 2. As analyzed by confocal laser microscopy, different subunits displayed the same local variations of staining intensity ("hot spots") along the plasma membrane. The covisualized subunits appear therefore to be coassembled in receptor subtypes. Most neurons expressed only a single major receptor subtype with no apparent distinction between synaptic and extrasynaptic sites. However, in some neurons, most notably in Purkinje cells, the subunit composition varied between the soma and the dendrites, pointing to the existence of receptor heterogeneity within single neurons. Furthermore, different populations of neurons may be characterized by particular receptor subtypes. Cells displaying alpha 1-subunit immunoreactivity were mostly identified as GABAergic, whereas monoaminergic neurons displayed intense alpha 3-subunit immunoreactivity but virtually no alpha 1-subunit immunoreactivity. The allocation of defined GABAA receptor subtypes to identified neurons opens the way for a functional analysis of receptor heterogeneity.

Animals

Apomorphine test for dopaminergic responsiveness in patients with previously untreated Parkinson's disease.

We prospectively examined the predictive value of the apomorphine test for the therapeutic efficacy of sustained oral levodopa treatment in 62 patients with de novo Parkinson syndrome (no additional neurological deficit) who had not previously been treated with dopaminergic medication. Patients received 2 to 5 mg of apomorphine hydrochloride subcutaneously and a subsequent trial of oral levodopa of at least 3 months' duration. In three patients, response to apomorphine could not be evaluated owing to side effects experienced during the test. In the remaining 59 patients, the best predictor of response to oral levodopa was the apomorphine-induced relative decrease in the scores on the motor examination part of the Unified Parkinson Disease Rating Scale (UPDRS). At a cutoff value of 20% improvement in UPDRS scores, the test predicted the response to levodopa correctly in 50 patients (85%). The sensitivity of the test was 90%, specificity 88%. The positive predictive value was 95%. However, seven of 19 apomorphine test-negative patients experienced a good (n = 4) or partial (n = 3) improvement with levodopa therapy. Thus, the negative predictive value was only 63%. We conclude that response to apomorphine has a high predictive value for response to sustained oral levodopa treatment in most previously untreated patients, but a negative test should not preclude an adequate trial of oral levodopa.

Adult

Decrease of D2 receptors indicated by 123I-iodobenzamide single-photon emission computed tomography relates to neurological deficit in treated Wilson's disease.

Single-photon emission computed tomography with 123I-iodobenzamide, a dopamine D2 receptor antagonist, was employed to study dopamine D2 receptor densities in 17 patients with biochemically proved Wilson's disease and stable neurological status with therapy and in 5 age-matched control subjects. Of the 17 patients with Wilson's disease, 5 were neurologically asymptomatic, 3 had cerebellar signs, 1 exhibited a mild parkinsonian syndrome, 7 showed a parkinsonian syndrome and cerebellar signs, and 1 had generalized dystonia and a parkinsonian syndrome. In 5 age-matched control subjects specific isotope binding as calculated by the basal ganglia to frontal cortex ratio was 1.57 +/- 0.04 (mean +/- standard deviation). The ratio in patients with Wilson's disease ranged from 1.56 +/- 0.05 (n = 5, asymptomatic patients) to 1.17 +/- 0.02 (n = 4, marked neurological impairment). We observed an almost linear correlation between the reduction of 123I-iodobenzamide (IBZM) binding and the severity of neurological signs at the time of IBZM-SPECT (correlation coefficient, -0.84; p < 0.01). We suggest that the reduction of postsynaptic striatal dopamine D2 receptors as detected by IBZM-SPECT reflects striatal neuronal damage in Wilson's disease.

Adolescent

Marked reduction of striatal dopamine D2 receptors as detected by 123IBZM-SPECT in a Wilson's disease patient with generalized dystonia.

[123I]iodobenzamide-single photon emission computed tomography (IBZM-SPECT) was employed to study the distribution of dopamine D2 receptors in a patient with biochemically proven Wilson's disease presenting with generalized dystonia. IBZM is a dopamine D2 receptor antagonist with high affinity and specific binding to basal ganglia detectable by SPECT. IBZM-SPECT in this patient (age, 20 years) displayed a striatum to frontal cortex ratio of 1.2 compared to 1.55 +/- 0.05 (mean +/- SD) in normal controls (n = 7; mean age, 53.3 years). In parallel with this finding, MRI with heavily T2-weighted sequences showed atrophy and low signal intensity changes of the basal ganglia. There was no improvement of dystonia after a subcutaneous injection of apomorphine. In contrast, IBZM-SPECT of a neurologically asymptomatic Wilson's disease patient (age, 21 years) displayed a striatum to frontal cortex ratio of 1.6. The MRI scan of this patient was normal. It is suggested that the observed apomorphine-unresponsive generalized dystonia in this Wilson's disease patient is related to striatal lesions proven by IBZM-SPECT and MRI.

Adult

Cryopreservation, survival and function of intrastriatal fetal mesencephalic grafts in a rat model of Parkinson's disease.

In the present study we quantitatively assessed to what extent freeze-storage at liquid nitrogen temperature influences the survival and function of fetal mesencephalic grafts in the dopamine-depleted rat striatum. Ventral mesencephalic (VM) tissue was dissected from rat fetuses and stored overnight in a preservative medium at 4 degrees C (hibernation). It was grafted intrastriatally either as a fresh cell suspension or was frozen as tissue fragments or as a cell suspension after stepwise incubation in ascending concentrations of dimethyl-sulphoxide. Following a cryopreservation interval of 80 days in liquid nitrogen, the frozen samples were rapidly thawed, rinsed, and grafted. Cellular viabilities of graft cell suspensions, as assessed by ethidium bromide/acridine orange staining, were decreased from 90% in fresh tissue to 38-35% in frozen and thawed tissue. Amphetamine-induced turning behavior at 6 weeks post-grafting was significantly attenuated in hosts that had received fresh grafts or grafts that were frozen as tissue fragments. Tyrosine hydroxylase-(TH-) immunocytochemistry of recipient brains revealed significant decreases in TH-positive graft cell numbers in rats grafted with cryopreserved tissue (38-42% of fresh tissue). Moreover, the dye exclusion viability of thawed VM tissue was found to accurately predict the subsequent graft survival. There was no difference with respect to graft cell numbers between the two freezing methods employed, though block storage seems to be more simple from a practical point of view.(ABSTRACT TRUNCATED AT 250 WORDS)

Amphetamine

Folinic acid therapy fails to improve early Parkinson's disease: a two week placebo controlled clinical trial.

Folinic acid (15 mg bid, po) was administered in a two week, double-blind, placebocontrolled, cross over clinical trial in 5 patients with Parkinson's disease (Hoehn and Yahr stage I or II). 4 patients had not been on L-dopa treatment prior to entering this trial and one patient was on a small dose of L-dopa. No significant improvement could be detected in this pilot study by clinical evaluation and motor performance assessed by a computer assisted motor performance test.

Adult

Cellular localization of tyrosine hydroxylase mRNA and cholecystokinin mRNA-containing cells in the ventral mesencephalon of the common marmoset: effects of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine.

In situ hybridization histochemistry was used to localize tyrosine hydroxylase (TH) mRNA and cholecystokinin (CCK) mRNA-expressing cells in the ventral mesencephalon of the common marmoset (Callithrix jacchus) and to examine the effects of the dopaminergic (DA) neurotoxin, 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) on these two populations of neurons in the pars compacta of the substantia nigra (SNc) and ventral tegmental area (VTA). X-ray film and liquid emulsion autoradiography of brain sections hybridized with an 35S-labelled synthetic 45-mer antisense human TH oligonucleotide probe showed strong hybridization signals and dense populations of TH mRNA expressing cells in the SNc and VTA at all levels, in the control marmoset brain. In the MPTP-treated brain, there was a substantial reduction of TH mRNA in the ventral midbrain. The loss of TH mRNA-expressing cells amounted to 98% in the lateral SNc, 88% in the medial SNc and 33% in the VTA. In situ hybridization of adjacent sections with an 35S-labelled synthetic 45-mer antisense human CCK oligonucleotide probe showed a weak hybridization signal for CCK mRNA in the ventral midbrain of the control brain. Emulsion autoradiography demonstrated CCK mRNA expressing cells in the SNc and VTA at all levels with the number of cells in the VTA similar to that for TH mRNA. However, the number of cells in the SNc expressing CCK mRNA was a fraction (1/4) of that expressing TH mRNA; moreover, the level of expression per cell was substantially less than that for TH mRNA.(ABSTRACT TRUNCATED AT 250 WORDS)

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine

123I-iodobenzamide-SPECT predicts dopaminergic responsiveness in patients with de novo parkinsonism.

We used 123I-iodobenzamide-single photon emission computed tomography (IBZM-SPECT) in a prospective study to investigate 38 patients with parkinsonism (Hoehn and Yahr stage I to III) not previously treated with dopamimetic drugs. Thirty-four patients only showed symptoms of Parkinson's disease, and four patients showed, in addition, subtle clinical signs of progressive supranuclear palsy or multisystem atrophy. IBZM is a dopamine D2 receptor antagonist detectable by SPECT. We compared IBZM-SPECT results with clinical response to subcutaneous injections of the D1/D2 dopamine receptor agonist apomorphine (38 patients) and long-term dopamimetic therapy (31 patients). IBZM-SPECT results predicted a positive or negative response to apomorphine in 30 of 34 patients (apomorphine response in four patients was equivocal) and response to dopamimetic therapy in 27 of 31 patients. Thus, imaging of dopamine D2 receptors using readily available IBZM-SPECT seems to distinguish between L-dopa-responsive (most likely Parkinson's disease of Lewy body type) and L-dopa-unresponsive parkinsonism in patients not previously treated with dopamimetic drugs.

Adult

SPECT imaging of dopamine D2 receptors with 123I-IBZM: initial experience in controls and patients with Parkinson's syndrome and Wilson's disease.

123I-(S-)-2-hydroxy-3-iodo-6-methoxy-N[(1-ethyl-2-pyrrolidinyl) methyl]-benzamide (123I-IBZM) is a highly selective CNS D2 dopamine receptor ligand suitable for SPECT. This study reports on IBZM-SPECT findings in 60 patients including eight controls and 52 patients presenting with disorders of the dopaminergic system, including idiopathic Parkinson's syndrome (IPS) (n = 18), Parkinson's syndromes of other aetiology (PS) (n = 24) and Wilson's disease (n = 10). SPECT was performed 2 h p.i. of 185 MBq 123I-IBZM. For semiquantitative evaluation basal ganglia to frontal cortex ratios (BG/FC ratios) were calculated. In controls BG/FC ratios of 1.55 +/- 0.05 S.D. were observed. Findings in IPS patients (BG/FC ratio: 1.51 +/- 0.05) were not different from controls. In PS patients striatal IBZM binding (BG/FC ratio: 1.35 +/- 0.11) was significantly (P less than 0.001) lower compared to the control and IPS groups. Asymptomatic patients with Wilson's disease presented normal IBZM binding. In those with neurologic symptoms IBZM fixation was markedly reduced. IBZM-SPECT has shown to be a suitable means for in vivo imaging of striatal dopamine D2 receptors in controls and various disorders of the dopaminergic system. Our preliminary data suggest that IBZM-SPECT is potentially useful for discriminating between IPS and PS (sensitivity: 100%; specificity: 83%). In patients with Wilson's disease IBZM accumulation seems to correlate with the presence of neurologic symptoms.

Adolescent

[Neurogenetics--the challenge for neurology. 1. Neurogenetic diseases].

Progress in molecular genetics has provided insight into a number of neurogenetic disorders. The chromosomal location of the genes for Huntington's disease, Wilson's disease, myotonic dystrophy and Friedreich's ataxia are now known. In families affected by these illnesses, linkage analysis can now be employed for presymptomatic or prenatal diagnosis. The genes for Duchenne and Becker muscular dystrophy and neurofibromatosis I have been cloned and sequenced, allowing the direct analysis of the genetic defect in many cases, and thereby providing further insight into the pathophysiology. In addition, the classification of several neurogenetic diseases, such as the hereditary motor and sensory neuropathies or the spinal muscular atrophies can now be based on the chromosomal location of the affected gene(s).

Chromosome Mapping

The D-1 dopamine receptor partial agonist, CY 208-243, exhibits antiparkinsonian activity in the MPTP-treated marmoset.

Administration of L-DOPA plus carbidopa, or the D-2 agonist (+)-PHNO, to MPTP-treated common marmosets caused motor hyperactivity and a reversal of the parkinsonian syndrome. In contrast, administration of the putative D-1 agonist SKF 38393 was without effect on movement or motor disability. The subsequent administration of another putative selective D-1 partial agonist CY 208-243 produced a dose-related improvement in motor activity and reversal of parkinsonian motor deficits in MPTP-treated animals. The effect of CY 208-243 was inhibited by pretreatment with the D-1 antagonist SCH 23390 and, to a lesser extent, by the D-2 antagonist sulpiride. In another group of normal drug naive marmosets, the administration of CY 208-243 produced only a small increase in motor activity. Following treatment with MPTP and without other drug administration, administration of CY 208-243 produced a marked reversal of motor deficits and locomotor hyperactivity. Thus, CY 208-243, suggested to be a partial D-1 agonist exhibits antiparkinsonian activity in MPTP-treated marmosets which does not require prior or concurrent exposure to D-2 agonists.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine