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Biomedical subjects

K Seppi

Publications and source records attributed to K Seppi.

33 records · Page 2Linked to original sources

Modafinil for the treatment of daytime sleepiness in Parkinson's disease: a double-blind, randomized, crossover, placebo-controlled polygraphic trial.

OBJECTIVES: To assess the therapeutic efficacy of modafinil in the treatment of increased daytime sleepiness in patients with Parkinson's disease (PD). DESIGN: Double-blind, randomized, placebo-controlled crossover study with two 2-week treatment blocks, separated by a 2-week washout phase. SETTING: Tertiary Parkinson's disease care center and sleep laboratory at university hospital neurology department. PATIENTS: Fifteen patients with idiopathic PD and daytime sleepiness (Epworth sleepiness score (ESS) 10 or more). INTERVENTIONS: Administration of placebo or modafinil as a single morning dose in a randomized crossover order. The modafinil dose was 100 mg in the first, and 200 mg in the second treatment week. MEASUREMENTS AND RESULTS: At baseline and at the end of each treatment block, sleepiness was evaluated using subjective (perceived sleepiness with the ESS) and objective measures (maintenance of wakefulness test). Twelve patients completed the study (9 male, 3 female; mean age 65.0 +/- 7.6 years, mean disease duration 6.8 +/- 4.1 years). Epworth scores were significantly improved with modafinil (3.42 +/- 3.90) compared to placebo (0.83 +/- 1.99; p = 0.011). Latency to sleep in the maintenance of wakefulness test was not significantly altered by modafinil treatment: 10.9 (3-40)/15.1 (2.5-40) minutes before/after placebo and 12 (2.6-40)/17.8 (4.2-40) minutes before/after modafinil (p = 0.139) [data given as mean +/- standard deviation or median (range)]. CONCLUSIONS: The results of this study suggest that modafinil improves daytime sleepiness in PD patients, at least on a subjective or behavioral level. Modafinil treatment may be considered for EDS in PD patients, in whom otherwise treatable causes of Excessive Daytime Sleepiness (EDS) are absent.

Aged↗

[Diagnosis and therapy of multiple system atrophy].

Numerous studies of the past years have established the clinical features, course and neuropathology characterizing multiple system atrophy (MSA). Clinically, two motor subtypes can be classified based on the predominance of a parkinsonian syndrome refractory to L-dopa and cerebellar ataxia. 80% of the cases involve MSA-P (the parkinsonian variant of MSA) and 20% MSA-C (cerebellar variant of MSA). Virtually all of these patients show disturbances of autonomic and urogenital function, half of the patients also exhibit pyramidal signs. Neuropathologically, MSA-C is based on an olivopontocerebellar atrophy (OPCA) and MSA-P on striatonigral degeneration (SND). However, a combination of OPCA and SND pathologies is observed in most cases. Recent evidence suggests that a key pathogenetic role may be played by glial alpha synuclein-containing inclusion bodies, which might lead to neuronal dysfunction and ultimately to cell loss. There is no therapy known to be effective in treating the motor disorders of MSA-C. By contrast, L-dopa replacement is at least transiently effective in about 30% of patients with MSA-P. Currently, initial efforts are being undertaken throughout Europe to develop neuroprotective solutions. Experiments are underway to test whether neurotransplantation by striatal grafting is a suitable method for inducing a clinically relevant response to L-dopa. Neurologically, the options for treating orthostatic hypertension and urogenital disorders are often overlooked.

Brain↗

Irresistible onset of sleep during acute levodopa challenge in a patient with multiple system atrophy (MSA): placebo-controlled, polysomnographic case report.

A 67-year-old male patient with clinically probable multiple system atrophy developed severe reproducible sleepiness and irresistible onset of sleep during an acute levodopa (L-dopa) challenge. In a placebo-controlled, double-blind study of acute L-dopa challenge, videopolysomnography revealed multiple episodes of non-rapid eye movement sleep 60 minutes after L-dopa and none following placebo. These observations suggest the irresistible sleep can also be induced by L-dopa and also in patients with atypical parkinsonism.

Aged↗

Treatment options for depression and psychosis in Parkinson's disease.

Neuropsychiatric symptoms are a frequent feature of advancing Parkinson's disease (PD). The reported prevalence of depression varies greatly between different studies but there is general consensus that between 40 and 50% of patients will be affected. Depression may antedate motor manifestations of Parkinson's disease and is usually of moderate or mild intensity. However, depression is of major impact on the quality of life in PD patients according to a recent survey. Drug-induced psychosis is one of the major therapeutic challenges in Parkinson's disease and may occur in up to 6% in otherwise uncomplicated de novo patients when first receiving dopaminergic therapy. It increases in frequency, in advanced disease and particularly in patients with dementia where up to 22% may be affected. There is an amazing lack of controlled clinical trials assessing the effects of antidepressants in clinical trials including more than 20 patients and assessing efficacy of antidepressants specifically in the context of mood changes in Parkinson's disease. A comprehensive literature search yielded only a total of 17 articles of which a majority included less than 20 patients and/or did not use valid depression ratings. The only randomized controlled trial was conducted more than 20 years ago using nortryptiline while no controlled trials were available on the use of serotonin reuptake inhibitors. Studies assessing the antidepressant action of dopaminergic therapies are few and inconclusive. Thus, while tricyclic antidepressants or SSRIs are widely used in clinical practice, there is still a need for controlled clinical trials proving their efficacy specifically in parkinsonian depression. Three randomized controlled trials are now available assessing the efficacy of the atypical neuroleptics clozapine and olanzapine in the treatment of drug-induced psychosis. While clozapine is of proven efficacy at least in the short-term management of this complication without negative impact on the motor symptoms, olanzapine in currently used doses of 2.5 to 15 mg/d seems to aggravate motor symptoms with lesser effect on psychosis compared to clozapine. Currently, clozapine is the atypical neuroleptic of choice for the treatment of drug-induced psychosis in Parkinson's disease.

Animals↗

Striatal dopamine transporter function in dementia with Lewy bodies and Parkinson's disease.

The aim of this study was to compare parkinsonian features and loss of striatal dopamine transporter (DAT) function in patients with dementia with Lewy bodies (DLB) and Parkinson's disease (PD), matched for age and disease duration. Twenty patients with DLB. 24 PD patients and 10 matched controls were examined with SPET using a dual-head camera and the dopamine-transporter ligand 123I-beta-CIT (148 MBq). Moreover, in a subgroup of patients (16 DLB and 20 PD patients), subscores of the Unified Parkinson's Disease Rating Scale (UPDRS)-motor examination (ME) subscale were obtained during "practical off", i.e. 12 h following withdrawal of antiparkinsonian therapy. Compared with controls, striatal/cerebellar (S/C) ratios of DAT binding were significantly reduced in both DLB and PD, deficits being more marked in DLB patients (controls 7.2 +/- 1.2, DLB 3.3 +/- 1, PD 4.2 +/- 1.4; means +/- SD). The side-to-side differences in the S/C ratios were lower in the DLB group and the controls than in PD patients (0.4 +/- 0.4. 0.2 +/- 0.2 and 0.6 +/- 0.3, respectively, P<0.05). The total UPDRS-ME scores during practical-off were significantly higher in the DLB than in the PD group (41.2 +/- 12.7 vs 26.6 +/- 15.3, P<0.01). The side-to-side differences of the summed UPDRS extremity subscores were smaller in the DLB than in the PD group (2.2 +/- 2.3 vs 7.4 +/- 3.9, P<0.0001). Our findings suggest that parkinsonism evolves largely symmetrically and progresses more rapidly with more severe loss of striatal dopamine transporter function in DLB compared to PD. Whether these findings are helpful in the differential diagnosis of DLB and PD needs to be examined in further studies.

Aged↗

Riluzole in Huntington's disease (HD): an open label study with one year follow up.

In an open label study, we administered riluzole (50 mg twice a day) to nine patients with genetically confirmed Huntington's disease (HD) (clinical stages 1-3; mean age 46.4 (SD 9.3) years; mean disease duration 8 (SD 3.3) years). The study was designed to evaluate (1) safety and tolerability of riluzole and (2) effects of riluzole on motor impairment, functional disability, cognitive impairment, and behavioral abnormalities using the Unified HD Rating Scale. Patients were evaluated at baseline and after three and twelve months of riluzole therapy. Laboratory tests (hematology and liver enzymes) were repeated monthly. All adverse experiences, reported spontaneously or observed directly by the investigator, were recorded. Riluzole was well tolerated. No increase of serum liver enzymes was seen throughout the study in all but one patient showing a mild elevation. At three months, mean total motor scale (TMS), mean TMS chorea subscore, and mean total functional capacity scale were significantly improved compared with baseline. At twelve months, however, this beneficial effect on motor status and overall function was not sustained. In contrast, severity and frequency of behavioral dysfunction as well as psychomotor speed assessed by the symbol digit modalities test were improved compared with baseline. Our data suggest that there are transient antichoreatic effects and more sustained effects of riluzole on psychomotor speed and behavior in patients with HD. A double-blind, placebo-controlled trial appears highly warranted to establish definitely the symptomatic versus neuroprotective actions of riluzole in HD.

Administration, Oral↗

No functional effects of embryonic neuronal grafts on motor deficits in a 3-nitropropionic acid rat model of advanced striatonigral degeneration (multiple system atrophy).

Intrastriatal injection of 3-nitropropionic acid results in secondary excitotoxic local damage and retrograde neuronal cell loss in substantia nigra pars compacta, thus mimicking salient features of striatonigral degeneration, the core pathology underlying Parkinsonism associated with multiple system atrophy. We used 3-nitropropionic acid to create a rat model of advanced striatonigral degeneration in order to assess the effects of embryonic allografts upon rotational and complex-motor behavioural abnormalities. Following stereotaxic intrastriatal administration of 500nmol 3-nitropropionic acid in male Wistar rats we observed consistent amphetamine- and apomorphine-induced ipsiversive rotation. Furthermore, there were marked deficits of contralateral paw reaching. Subsequently, animals received intrastriatal implantations of either E14 mesencephalic or striatal or mixed embryonic cell suspensions. In addition, one group received sham injections. Grafted rats were followed for up to 21 weeks and repeated behavioural tests were obtained during this period. Drug-induced rotation asymmetries and complex motor deficits measured by paw reaching tests were not compensated by embryonic grafts. Persistence of drug-induced rotations and of paw reaching deficits following transplantation probably reflects severe atrophy of adult striatum, additional nigral degeneration as well as glial demarcation of embryonic grafts. We suggest that dopamine rich embryonic grafts fail to induce functional recovery in a novel 3-nitropropionic acid rat model of advanced striatonigral degeneration (multiple system atrophy).

Animals↗

Multiple system atrophy.

Multiple system atrophy (MSA) is an adult-onset sporadic progressive neurodegenerative disorder of unknown etiology. It is clinically characterized by the variable combination of autonomic failure, parkinsonism, cerebellar ataxia, and pyramidal signs. The present review summarizes up-to-date knowledge on the clinical diagnosis and molecular pathology of MSA. We also review the role of additional investigations that may support a clinical diagnosis of MSA. Finally, we briefly discuss the management of MSA, focusing on possible future therapeutic strategies.

Central Nervous System↗

Failure of neuroprotection by embryonic striatal grafts in a double lesion rat model of striatonigral degeneration (multiple system atrophy).

In the present experiment we studied the ability of embryonic striatal grafts to protect against striatal quinolinic acid (QA)-induced excitotoxicity in a previously established double lesion rat model of striatonigral degeneration (SND), the neuropathological substrate of parkinsonism associated with multiple system atrophy (MSA). Male Wistar rats received under halothane inhalation anesthesia a 6-hydroxydopamine 6-OHDA injection into the left medial forebrain bundle. Four to 5 weeks later apomorphine-induced rotation behavior was tested. Rats were divided into two treatment groups receiving either embryonic striatal cell suspensions or sham injections. Apomorphine-induced rotation behavior was retested 2 and 4 weeks after the grafting procedure. Following the rotation test animals of the striatal and sham graft group received a stereotaxic injection of 150 nmol QA. Again rotation behavior was assessed 2 and 4 weeks after lesioning. Brains were then processed to dopamine reuptake ([(3)H]mazindol), dopamine D1 ([(3)H]SCH23390), and D2 ([(3)H]spiperone) receptor autoradiography. Gliosis was detected using [(3)H]PK11195, a marker for peripheral benzodiazepine binding sites. Behavioral and autoradiographic analysis failed to show striatal protection in 6-OHDA prelesioned animals receiving embryonic striatal grafts. These findings indicate that beneficial protective effects of striatal grafts implanted into host striatum prior to excitotoxic insults are abolished in the presence of severe dopaminergic denervation. Our present results are relevant to future applications of neural grafting in MSA-SND.

Animals↗

In vivo magnetic resonance imaging of embryonic neural grafts in a rat model of striatonigral degeneration (multiple system atrophy).

The effects of embryonic neural transplantation in experimental models of neurodegenerative disorders are commonly assessed by behavioral tests and postmortem neurochemical or anatomical analysis. The purpose of the present study was to evaluate embryonic neuronal grafts in a novel rat model of multiple system atrophy (MSA) with the help of in vivo magnetic resonance imaging (MRI) and to correlate imaging with histological parameters. Striatonigral double lesions were created in male Wistar rats by unilateral intrastriatal injection of 3-nitropropionic acid (3-NP). Seven weeks following lesion surgery animals were divided into four transplantation groups receiving either pure mesencephalic, pure striatal, mesencephalic-striatal cografts, or sham grafts. In vivo structural imaging was performed 21 weeks after transplantation using a whole body 1.5 Tesla MR scanner. The imaging protocol comprised T2-weighted TSE and T1-weighted TIR sequences. Immunohistochemistry using DARPP-32 as striatal marker and tyrosinhydroxylase as marker for nigral neurons was performed for correlation analysis of imaging and histological parameters. The sensitivity of graft detection by in vivo MRI was 100%. The graft tissue was clearly demarcated from the remaining striatal tissue in both T2- and T1-weighted sequences. Morphometrically, cross-sectional areas of the grafts and spared intact striatum as defined by immunohistochemistry correlated significantly with measurements obtained by in vivo MRI. In conclusion, we were able to evaluate in vivo both lesion-induced damage and graft size in a 3-NP rat model of MSA using a conventional whole body 1.5 Tesla MRI scanner. Additionally, we obtained an excellent correlation between MRI and histological measurements.

Animals↗

Depression in alpha-synucleinopathies: prevalence, pathophysiology and treatment.

Parkinson's disease (PD), dementia with Lewy bodies (DLB) and multiple system atrophy (MSA) are increasingly recognized as alpha-synucleinopathies, i.e. neurodegenerative disorders that share a common subcellular pathology characterized by alpha-synuclein abnormal aggregation. In the present review we focus on depression in alpha-synucleinopathies, discussing epidemiological, pathophysiological and treatment aspects of this frequently disabling clinical feature which may occur in PD, DLB and MSA alike.

Animals↗

[Dementia with Lewy bodies].

Dementia with Lewy bodies (DLB) is the second most frequent neuropathologically diagnosed degenerative dementing illness. The clinical characteristics are progressive dementia, parkinsonian syndrome, fluctuations of cognitive functions, alertness, and attention, visual hallucinations (usually detailed and well described), depression, REM sleep behavior disorder, adverse responses to standard neuroleptics doses, falls, syncopes, systematized delusions, and other modalities of hallucinations. Specificity of the clinical diagnostic criteria is high (95%), and sensitivity is considerably lower. Mean age at disease onset ranges between 60 and 68 years. The male gender prevails. Disease duration is 6 to 8 years. The differential diagnoses of DLB are dementia of the Alzheimer type, Parkinson's disease, subcortical arteriosclerotic encephalopathy, progressive supranuclear palsy, multiple system atrophy, and rarely Creutzfeldt-Jakob disease. The genetic background of the disease is unclear. Magnetic resonance imaging and single photon emission tomography can contribute to the diagnosis. Controlled pharmacological studies have so far not been published. The disease is treated with L-dopa, atypical neuroleptics, acetylcholine esterase inhibitors, antihypotensive agents, and peripheral anticholinergic and alpha receptor-blocking medications to improve neurogenic bladder dysfunction.

Aged↗

Seizures and death on a white river float trip. Report of water hemlock poisoning.

White river rafting is becoming a major summer recreational activity throughout the United States. Many people who are ill prepared physically or emotionally to survive will find themselves isolated and in extremely dangerous situations without access to medical help. In addition to the physical dangers of drowning, there are dangers that exist in the concept of "living off the land" and foraging for food. Cicuta douglasii is found in all of our western states, is extremely toxic and can easily be confused with wild parsnip or carrot. Physicians and poison control centers need to be aware of the common poisonous plants in their area and be prepared to treat cases of poisoning from these plants.

Adult↗