Will fetal striatal transplants correct the akinetic end-stage of Huntington's disease?
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Biomedical subjects
Publications and source records attributed to R A Hauser.
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BACKGROUND: The immunosuppressant cyclosporine-A (CsA) is the primary drug for neural transplantation in Parkinson's disease. However, little is known of its direct effects on movement disorders. Our previous observation of increased locomotor activity in normal rats injected with CsA prompted us to investigate further the effects of CsA on hemiparkinsonian rats. METHODS: We examined the effects of CsA with 6-hydroxydopamine-induced hemiparkinsonism. The animals were randomly assigned to either intraperitoneal injections of CsA (15 mg/kg) or olive oil (the vehicle used for CsA) for 32 days. All animals were tested using the elevated body swing test, and the spontaneous and the amphetamine-induced rotational tests prior to and following the 32-day drug regimen. RESULTS: As revealed by the elevated body swing test, CsA-treated rats had significantly higher mean percent contralateral (to the lesion) swings compared to their pretreatment level (p < 0.01) or to vehicle-treated rats at posttreatment (p < 0.005). In the spontaneous rotational test, CsA-treated rats displayed ipsilateral (to the lesion) rotations which were significantly higher than their pretreatment rotational behavior (p < 0.005) or the posttreatment rotational behavior of olive oil-treated rats (p < 0.0001). Similarly, CsA-treated rats displayed significantly more amphetamine-induced ipsilateral rotations compared to their or the olive oil-treated rats pretreatment level (p < 0.05). CONCLUSION: Our present observations extend our previous findings on motor alterations produced by CsA on normal rats to hemiparkinsonian rats. These results taken together would suggest that CsA may interact with the locomotor effects observed following neural transplantation with adjunctive CsA immunosuppression.
BACKGROUND: Chronic liver failure is associated with high signal abnormalities in the basal ganglia on T1-weighted magnetic resonance imaging of the brain. These abnormalities are strikingly similar to those seen following manganese intoxication. As dietary manganese is normally cleared by the liver, we hypothesize that hepatic dysfunction could lead to manganese overload and account for the MRI abnormalities seen in patients with chronic liver disease. METHODS: We measured blood manganese concentrations in eleven patients with biopsy-proven hepatic cirrhosis and eleven healthy age and sex-matched controls. We also performed semi-quantitative measures of T1 signal abnormalities on MRI in the patients with chronic liver disease. RESULTS: Patients with cirrhosis had significantly higher blood manganese concentrations (20.6 +/- 10.2 mcg/L) than controls (7.2 +/- 2.7, p = .0013). In addition, semi-quantitative scores of T1-weighted signal hyperintensity on MRI correlated with blood manganese concentration in patients with cirrhosis (r = .65, p = .029). CONCLUSIONS: These findings demonstrate that chronic liver disease is associated with manganese overload and suggest that manganese is responsible for the T1-weighted signal hyperintensity seen on MRI of patients with liver disease. As manganese intoxication is known to cause parkinsonism and an encephalopathy similar to those which occur with chronic liver disease, it is possible that manganese toxicity contributes to the development of these symptoms in liver damaged patients and that therapies which prevent or reduce manganese overload may have clinical benefit.
Corticobasal degeneration (CBD) is an adult-onset, progressive parkinsonian syndrome with strikingly asymmetrical features, and signs and symptoms referable to both cerebral cortex and basal ganglia. Although once considered rare, it is now recognized with increasing frequency during life. Eight patients with clinically diagnosed CBD and 8 age- and sex-matched patients with Parkinson's disease underwent high-field-strength magnetic resonance imaging (MRI) of the brain. MRIs were graded by a blinded neuroradiologist using a semiquantitative (0-3) scale. MRI of patients with CBD revealed significantly greater T2-weighted signal hypointensity in the putamena and globi pallidi, and ventricular enlargement. When specifically sought, asymmetrical cortical atrophy was identified in 5 of 8 CBD patients. Increased T2-weighted lenticular signal hypointensity, ventricular enlargement, and asymmetrical cortical atrophy are supportive MRI findings of CBD.
BACKGROUND: Trials are under way to determine whether fetal nigral grafts can improve motor function in patients with Parkinson's disease. Some studies use fluorodopa uptake on positron-emission tomography (PET) as a marker of graft viability, but fluorodopa uptake does not distinguish between host and grafted neurons. There has been no direct evidence that grafts of fetal tissue can survive and innervate the striatum. METHODS: We studied a 59-year-old man with advanced Parkinson's disease who received bilateral grafts of fetal ventral mesencephalic tissue in the postcommissural putamen. The tissue came from seven embryos between 6 1/2 and 9 weeks after conception. The patient died 18 months later from a massive pulmonary embolism. The brain was studied with the use of tyrosine hydroxylase immunohistochemical methods. RESULTS: After transplantation, the patient had sustained improvement in motor function and a progressive increase in fluorodopa uptake in the putamen on PET scanning. On examination of the brain, each of the large grafts appeared to be viable. Each was integrated into the host striatum and contained dense clusters of dopaminergic neurons. Processes from these neurons had grown out of the grafts and provided extensive dopaminergic reinnervation to the striatum in a patch-matrix pattern. Ungrafted regions of the putamen showed sparse dopaminergic innervation. We could not identify any sprouting of host dopaminergic processes. CONCLUSIONS: Grafts of fetal mesencephalic tissue can survive for a long period in the human brain and restore dopaminergic innervation to the striatum in patients with Parkinson's disease. In the patient we studied, clinical improvement and enhanced fluorodopa with uptake on PET scanning were associated the survival of the grafts and dopaminergic reinnervation of the striatum.
We performed fetal nigral transplantations in 4 Parkinson's disease (PD) patients. Solid grafts were bilaterally implanted into the postcommissural putamen using 3 to 4 donors per side aged 6 1/2 to 9 weeks postconception. Transplant deposits were separated by no more than 5 mm in three dimensions. Cyclosporine was employed for a total of 6 months. Patients were evaluated at baseline and at 1, 3, and 6 months postoperatively. Striatal 18-fluorodopa uptake was assessed by positron emission tomography at baseline and at 6 months postoperatively. The procedure was well tolerated in all patients. One patient had a clinically asymptomatic superficial cortical hemorrhage along the needle tract and a second had transient postoperative confusion and hallucinations. All patients experienced clinically meaningful benefit. Significant improvement (p < 0.05) was detected in total UPDRS score during the "off" state, Schwab-England disability score during the "off" state, percent "off" time, and percent "on" time with dyskinesia. Increased striatal fluorodopa uptake was observed bilaterally in each patient, with mean increases of 53% on the right (p = 0.01) and 33% on the left (p = 0.08). Our study demonstrated clear and consistent improvement in clinical features and striatal fluorodopa uptake following fetal tissue transplantation in patients with advanced PD whose condition was not improved preoperatively by drug manipulation. These preliminary results are encouraging and support further studies to evaluate grafting strategies as a therapy for PD.
We have performed a 14-month, prospective, randomized, double-blind, placebo-controlled study to evaluate the effect of deprenyl and levodopa/carbidopa (Sinemet) on the progression of signs and symptoms in patients with mild Parkinson's disease (PD). One hundred one untreated PD patients were randomly assigned to one of the following four treatment groups: Group I, deprenyl + Sinemet; Group II, placebo-deprenyl + Sinemet; Group III, deprenyl + bromocriptine; and Group IV, placebo-deprenyl + bromocriptine. The final visit was performed at 14 months, i.e., 2 months after withdrawal of deprenyl or its placebo and 7 days after withdrawal of Sinemet or bromocriptine. Deterioration in Unified Parkinson's Disease Rating Score (UPDRS) between untreated baseline and final visits was used as an index of disease progression. Placebo-treated patients deteriorated by 5.8 +/- 1.4 points, while deprenyl-treated patients deteriorated by 0.4 +/- 1.3 points (p < 0.001). This effect was sufficiently powerful that a significant deprenyl effect could be detected in the subgroup of 41 patients randomized to Sinemet (p < 0.01) as well as in the 23 patients who completed a 14-day washout of Sinemet or bromocriptine (p < 0.05). No difference in the extent of deterioration was detected in patients randomized to Sinemet versus bromocriptine. This study demonstrates that deprenyl attenuates deterioration in UPDRS score in patients with early PD. These findings are not readily explained by the drug's symptomatic effects and are consistent with the hypothesis that deprenyl has a neuroprotective effect.
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Manganese intoxication and chronic liver failure are associated with strikingly similar clinical, imaging, and pathological abnormalities. As manganese is primarily cleared by the liver, inadequate elimination of manganese absorbed from the normal diet may lead to manganese overload in patients with liver disease. We report a significant elevation of blood manganese concentration in 3 patients with biopsy-proved hepatic cirrhosis who exhibited neurological dysfunction and characteristic abnormal signal hyperintensity in the globi pallidi and substantia nigra on T1-weighted magnetic resonance imaging. We speculate that manganese accumulation in the brain accounts for the magnetic resonance imaging abnormalities and contributes to neurological dysfunction in patients with liver disease.
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Magnetic resonance imaging (MRI) has become an important diagnostic tool in the evaluation of neurodegenerative diseases. Although MRI currently does not yield sufficient predictive power to provide a diagnosis in most individual cases, important features have been identified in population studies that help support or exclude a clinical diagnosis under consideration. In parkinsonian patients, putamenal signal hypointensity is commonly observed in patients with atypical parkinsonism. In demented patients, hippocampal atrophy and prolonged T2 relaxation may help identify individuals with Alzheimer's disease. Caudate and putamenal atrophy are seen in Huntington's disease and may serve as markers of disease progression.
Dyskinesia is a common adverse effect complicating chronic dopaminergic therapy for Parkinson's disease. Movements are frequently choreic in nature and have been ascribed to overstimulation of "supersensitive" striatal postsynaptic dopamine receptors. Anticholinergic medications, despite some clinical efficacy in Parkinson's disease, have rarely been reported to cause dyskinesia. We report a patient with Parkinson's disease who developed orobuccal dyskinesia while being treated with trihexyphenidyl (Artane). Dyskinesia was observed following the introduction of trihexyphenidyl, resolved with its discontinuation, and reappeared with its reinstitution. Carbidopa-levodopa (Sinemet) alone did not cause dyskinesia but augmented dyskinesia associated with trihexyphenidyl.
We monitored the motor response and plasma and ventricular CSF (CSFv) concentrations of L-dopa during IV infusions of L-dopa in two patients with advanced Parkinson's disease. Concentrations of L-dopa in CSFv mirrored, but lagged behind, those in plasma. In the fasting state, the duration, but not the magnitude, of the motor response was greater with increasing plasma and CSFv levels of L-dopa. During IV infusions of L-dopa following oral administration of phenylalanine, a large neutral amino acid that shares a transport system into the brain with L-dopa, the duration of the motor response was markedly attenuated despite undiminished CSFv levels of L-dopa. These observations suggest that either L-dopa entry into CSFv and the brain are differentially affected by phenylalanine or that phenylalanine affects other steps in the motor response. These observations demonstrate that, except in the fasting state, L-dopa in CSFv is not a reliable predictor of motor response.
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Computed tomographic (CT) and magnetic resonance imaging (MRI) views of the brain were obtained in two adults and one child with hypertensive encephalopathy (HTE). Noncontrast CT was normal in one case and demonstrated decreased density posteriorly in two cases; MRI demonstrated focal, symmetric increased signal intensity in white matter and cortex, with occipital lobe involvement in each case. These lesions were better visualized on T2-weighted than on spin density images and were resolved on follow-up MRI four to five weeks later. These MRI studies support the concept that HTE is caused by the multifocal extravasation of fluid and proteins across the blood-brain barrier during "breakthrough" of cerebral autoregulation. We found that MRI appears more sensitive than CT and better defines the anatomy of cerebral involvement in HTE.
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In clinical trials for patients with Parkinson's disease (PD) with motor fluctuations, efficacy is generally ascribed to an intervention if motor function is significantly improved or if "off" time is significantly reduced. However, we have argued that patients might not be improved if off time is reduced only to the extent that unwanted dyskinesia is increased. Therefore, a home diary should include an assessment of dyskinesia to provide an accurate reflection of clinical status over a period of time. We undertook two studies to develop a home diary to assess functional status in patients with PD with motor fluctuations and dyskinesia. In both studies, patients concurrently completed a test and a reference diary. In Study I, we evaluated the impact of different severities of dyskinesia on patient-defined functional status. There were 1,149 evaluable half-hour time periods from 24 patients; 94.3% of off time was considered "bad" time and 90.2% of "on" time without dyskinesia, 72.6% of on time with mild dyskinesia, 43.0% of on time with moderate dyskinesia, and 15.2% of on time with severe dyskinesia was considered "good" time. In Study II, we evaluated a new home diary designed to separate dyskinesia that had a negative impact on patient-defined functional status from dyskinesia that did not. There were 816 evaluable time periods from 17 patients; 84.9% of off time and 89.9% of on time with troublesome dyskinesia was considered bad time while 85.5% of on time without dyskinesia and 93.8% of on time with nontroublesome dyskinesia was considered good time. With this diary (Diary II), the effect of an intervention can be expressed as the change in off time and the change in on time with troublesome dyskinesia (bad time). The sum can be used as an outcome variable and compared to baseline or across groups. In evaluating the efficacy of an intervention, assessment of change in off time and change in on time with troublesome dyskinesia provides a more accurate reflection of clinical response than change in off time alone.