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Biomedical subjects

R Djaldetti

Publications and source records attributed to R Djaldetti.

At least 19 recordsLinked to original sources

Familial infantile bilateral striatal necrosis: clinical features and response to biotin treatment.

BACKGROUND: Infantile bilateral striatal necrosis (IBSN) encompasses several syndromes of bilateral symmetric, spongy degeneration of the caudate nucleus, putamen, and globus pallidus. The familial form of IBSN is rare, and inheritance is either autosomal recessive or maternal. METHOD: The authors describe an Israeli Bedouin kindred in which 15 children born to consanguineous parents were affected with familial IBSN. They evaluated the clinical and radiologic evolution of the disease in 11 patients and the cerebral pathologic findings in one patient. Three of the children were treated with oral biotin 100 mg/day. RESULTS: Inheritance was apparently autosomal recessive. The untreated children had a similar clinical picture including developmental arrest beginning at the age of 7 to 15 months, choreoathetosis, and dysphagia. Pendular nystagmus appeared at a late stage. MRI, performed at various stages of the disease, showed severe basal ganglia atrophy. Postmortem study in one patient showed severe atrophy of the lenticular nuclei with gliosis and loss of neurons. Biotin, 100 mg/day, administered to the proband over a period of 15 months, may have slowed progression. In two other children treatment was initiated earlier and appeared to arrest or improve disease. CONCLUSIONS: Familial infantile bilateral striatal necrosis was inherited as an autosomal recessive trait. Clinical features included developmental arrest, dysphagia, and choreoathetosis. Imaging and pathology showed atrophy and degeneration of the basal ganglia. Oral biotin may have benefited three children.

Basal Ganglia Diseases↗

The effect of deprenyl washout in patients with long-standing Parkinson's disease.

Deprenyl, an irreversible MAO-B inhibitor, is known to have a symptomatic effect in de novo patients with Parkinson's disease (PD). It has, however, not been studied thoroughly in patients with advanced PD and response fluctuations. This study evaluated the effect of washout of deprenyl in patients with long-standing PD. Eleven PD patients who were on chronic treatment with deprenyl (mean age 57 +/- 8 years, mean disease duration 8.4 +/- 2.9 years), seven with response fluctuations, were enrolled in a double-blind study of a novel MAO-B inhibitor. A deprenyl washout period of one month was required prior to initiation of treatment with the trial drug. Patients were evaluated by Unified Parkinson's Disease Rating scale (UPDRS) before and one month after the washout period. Motor function was quantified by computerized tapping speed and movement time test. Results showed that neither total UPDRS scores (22 +/- 16 vs. 18 +/- 16, respectively) nor tapping speed and movement time changed significantly (4.4 +/- 0.5 vs. 4.2 +/- 0.3 Hz and 159 +/- 45 vs. 161 +/- 40 seconds; p > 0.1, respectively). However, eight patients reported various degrees of subjective deterioration, among them were the seven fluctuating patients. Two patients first began to experience response fluctuations during the washout period. It seems that deprenyl has a symptomatic effect, especially in patients with response fluctuations, and it may postpone the appearance of fluctuations in patients with PD. Attempts to discontinue treatment with deprenyl may aggravate disease symptoms.

Activities of Daily Living↗

Bax ablation prevents dopaminergic neurodegeneration in the 1-methyl- 4-phenyl-1,2,3,6-tetrahydropyridine mouse model of Parkinson's disease.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) damages dopaminergic neurons in the substantia nigra pars compacta (SNpc) as seen in Parkinson's disease. Here, we show that the pro-apoptotic protein Bax is highly expressed in the SNpc and that its ablation attenuates SNpc developmental neuronal apoptosis. In adult mice, there is an up-regulation of Bax in the SNpc after MPTP administration and a decrease in Bcl-2. These changes parallel MPTP-induced dopaminergic neurodegeneration. We also show that mutant mice lacking Bax are significantly more resistant to MPTP than their wild-type littermates. This study demonstrates that Bax plays a critical role in the MPTP neurotoxic process and suggests that targeting Bax may provide protective benefit in the treatment of Parkinson's disease.

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

New therapies for Parkinson's disease.

In the last decade there has been a surge of new therapeutic strategies for the treatment of Parkinson's disease along with a change of concepts about how the disease should be treated. The gold standard remains levodopa preparations, which have a rapid and dramatic symptomatic effect by replenishing the reduced dopamine levels in caudate and putamen nuclei. However, keeping in mind the complications that may emerge following long-term treatment, its initiation should possibly be delayed to the more advanced stages of the illness, especially in younger patients, in favour of dopamine agonists monotherapy. The adverse reactions that become prominent and disabling in late stages of the disease, i. e., dyskinesias, response fluctuations, and psychiatric side effects, can currently be managed by novel pharmacological as well as surgical strategies. Future therapies will focus on transplantation of dopaminergic embryonic tissue, gene therapy, and neuroprotective treatments.

Adult↗

Abnormal skin wrinkling in the less affected side in hemiparkinsonism-a possible test for sympathetic dysfunction in Parkinson's disease.

Some patients with Parkinson's disease (PD) suffer from autonomic dysfunction, even in the early stage of the disease. We examined the skin wrinkling response following immersion of the hands in warm water in 18 patients with hemiparkinsonism. This test evaluates the function of the sympathetic autonomic system. Mean age of the patients was 61 +/- 10 and mean disease duration 5.5 +/- 3.5 years. Both hands of each patient were immersed in warm water for 30 minutes and the number of skin ridges of the fingertip of each finger was counted. The results of each hand were compared to those of nine healthy controls. The mean number of the ridges of the less affected hand was significantly decreased as compared to the affected hand and controls (6.1 +/- 6.8 vs 13.1 +/- 6.8 and 15.3 +/- 8.5, respectively; P < 0.01). These results suggest that autonomic dysfunction is prevalent in the less affected side of patients with PD and can be simply tested by the skin response test.

Adult↗

The role of glutamatergic transmission in the pathogenesis of levodopa-induced dyskinesias. Potential therapeutic approaches.

Dyskinesias are the most frequent adverse effect of chronic levodopa therapy in patients with Parkinson's disease (PD). Current pharmacological treatment for this problem is unsatisfactory. Recently, there is evidence for the role of glutamate in the basal ganglia neuronal circuitry in the generation of dyskinesias. If indeed glutamatergic overactivity beyond the dopaminergic synapses plays a role in the pathogenesis of these involuntary movements, there is hope that its suppression may be beneficial without causing loss of levodopa efficacy and parkinsonian deterioration. Indeed, NMDA receptor antagonists such as amantadine and dextrometorphan can reduce such dyskinesias. We tested the efficacy of riluzole, an inhibitor of glutamatergic transmission in the inhibition of levodopa-induced dyskinesias.

Anticonvulsants↗

Developmental cell death in dopaminergic neurons of the substantia nigra of mice.

Dopaminergic neurons in the substantia nigra pars compacta (SNpc) undergo natural cell death during development in rats. Controversy exists as to the occurrence of this phenomenon in SNpc dopaminergic neurons in the developing mouse. Herein, by using an array of morphologic techniques, we show that many SNpc neurons fulfill the criteria for apoptosis and that the number of apoptotic neurons in the SNpc vary in a time-dependent manner from postnatal day 2 to 32. These dying neurons also show evidence of DNA fragmentation, of activated caspase-3, and of cleavage of beta-actin. Some, but not all of the SNpc apoptotic neurons still express their phenotypic marker tyrosine hydroxylase, confirming their dopaminergic nature. Consistent with the importance of target-derived trophic support in modulating developmental cell death, we demonstrate that destruction of intrinsic striatal neurons by a local injection of quinolinic acid (QA) dramatically enhances the magnitude of SNpc apoptosis and results in a lower number of adult SNpc dopaminergic neurons. Strengthening the apoptotic nature of the observed SNpc developmental cell death, we demonstrate that overexpression of the anti-apoptotic protein Bcl-2 attenuates both natural and QA-induced SNpc apoptosis. The present study provides compelling evidence that developmental neuronal death with a morphology of apoptosis does occur in the SNpc of mice and that this process plays a critical role in regulating the adult number of dopaminergic neurons in the SNpc.

Age Factors↗

Camptocormia (bent spine) in patients with Parkinson's disease--characterization and possible pathogenesis of an unusual phenomenon.

Camptocormia is characterized by severe forward flexion of the thoracolumbar spine which increases while walking and disappears in the recumbent position. We describe for the first time eight patients with presumed idiopathic Parkinson's disease (mean age 66+/-5 yrs; mean symptom duration 13.1+/-5.1 yrs) who developed camptocormia. This impressive abnormal posture emerged 4-14 years from disease onset, and in some patients stooped posture was the prominent symptom at diagnosis. There was no clear correlation between camptocormia and levodopa treatment. In some patients the camptocormic posture improved, and in others it was unchanged or even aggravated following levodopa administration. Three patients reported worsening of this symptom during "off" periods and also with fatigue. The pathogenesis of this phenomenon is unknown but might represent either a rare type of dystonia or an extreme form of rigidity.

Aged↗

Current management of motor fluctuations in patients with advanced Parkinson's disease treated chronically with levodopa.

Motor fluctuations after long-term administration of levodopa may be due to central pharmacodynamic mechanisms such as reduced striatal synthesis and storage of dopamine from exogenous levodopa and subsensitization of postsynaptic dopaminergic receptors. Peripheral pharmacokinetic mechanisms may be equally important, particularly in motor fluctuations of the "delayed on" (increased time latencies from dose intake to start-up of clinical benefit) and "no-on" (complete failure of a levodopa dose to exert an "on" response) types. Levodopa itself has a very poor solubility. In addition, there is delayed gastric emptying in many advanced patients. Therefore, an oral dose of levodopa may remain in the stomach for long periods of time before it passes into the duodenum where there is immediate absorption. Consequently, in order to overcome response fluctuations caused by impaired pharmacokinetic mechanisms and to improve its absorption, we recommend that levodopa be taken in multiple small doses, on an empty stomach, preferably crushed and mixed with a lot of liquid. Protein intake should be minimized. Prokinetic drugs such as prepulsid (Cisaprid) could be used to facilitate gastric motility and levodopa transit time. Administration of crushed levodopa through nasoduodenal or gastrojejunostomy tubes may be helpful in certain circumstances. Bypassing the stomach with subcutaneous injections of apomorphine may provide dramatic rescue from difficult "off" situations. Oral and s.c. administration of novel, extremely soluble prodrugs of levodopa, e.g., levodopa ethylester, may offer a new approach to overcome difficulties in levodopa absorption. Addition of dopamine agonists, MAO-B inhibitors, COMT inhibitors and controlled release levodopa preparations may be helpful in prolonging the duration of efficacy of each single levodopa dose. Levodopa, administered orally, usually combined with peripheral dopa decarboxylase inhibitors, continues to be the most widely-used and most effective pharmacological treatment for Parkinson's disease (Melamed, 1987). Undoubtedly, the outstanding therapeutic success of levodopa represents a dramatic and revolutionary breakthrough in medicine, in general, and in neurology, in particular. Although, since the introduction of levodopa, there have been many additional pharmacological and even surgical anti-parkinsonian strategies, it still stands out as a mandatory axis of treatment in the majority of patients (Steigler and Quinn, 1992). Indeed, levodopa therapy improves, sometimes markedly, the motor signs and symptoms of the illness, the functional capacity and quality of life and perhaps also life expectancy of the afflicted patients. It is therefore unfortunate that after an initial problem-free period of successful, smooth and stable clinical benefit from levodopa that lasts about two to five years, the responsiveness of many patients worsens with the emergence of a variety of complications (Marsden et al., 1982; Hardie et al., 1984). These adverse reactions include dyskinesias and dystonias, psychotic problems and, particularly, the troublesome motor fluctuations (Marsden and Parkes, 1977; Marsden, 1994). The latter phenomenon may be particularly complex, limiting and disabling. It is believed that most patients on long-term levodopa therapy will, sooner or later, develop response fluctuations of varying types and severity (Riley and Lang, 1993). Because of the serious impact of these phenomena on the quality of life and function of the patients, many efforts are now being undertaken to identify the responsible mechanisms and to devise preventive and therapeutic measures.

Antiparkinson Agents↗

IL-1 beta, IL-2, IL-6 and TNF-alpha production by peripheral blood mononuclear cells from patients with Parkinson's disease.

The capacity of peripheral blood mononuclear cells (PBMC) from patients with treated Parkinson's disease (PD) to produce interleukin (IL) IL-1 beta IL-2, IL-6, tumor necrosis factor (TNF)-alpha and the proliferative response to mitogens, was compared with that from cells from healthy subjects. The production of IL-2 and the mitogen response were significantly lower in PD patients, whereas the secretion of IL-1 beta, IL-6 and TNF-alpha were significantly enhanced. To evaluate the role of levodopa in creating immunological alterations, PBMC of patients and controls were incubated with concentrations of the drug extrapolated from those used in clinical practice. Levodopa caused an inhibition of mitogen-induced proliferation, stimulation of IL-6 and TNF-alpha production, whereas the secretion of IL-1 beta and IL-2 was not affected. The results of the study provide a further support for the interrelationship between the central nervous and immune system. In addition, the data indicate that the immunological alterations found in PD may be partially attributed to levodopa administration.

Cell Division↗

Decreased phagocytic function in patients with Parkinson's disease.

To determine the phagocytic function of the peripheral blood polymorphonuclears from patients with treated and untreated Parkinson's disease (PD), these cells were incubated with latex particles and the number of phagocytes, as well as the number of particles engulfed by each individual cell, were counted. Cells of untreated PD patients were significantly less phagocytotic than those of matched subjects without neurological or immune disorders (24% vs. 45%, P < 0.001). In addition, phagocytes from PD patients engulfed less particles per cell than those of the controls (8.4 +/- 0.7 vs. 16.5 +/- 1.3, P < 0.001). There was no significant difference in both functions in untreated and treated PD. The results indicate that in addition to the known immune alterations in patients with PD, the ability of their peripheral blood phagocytic cells to engulf latex particles is impaired.

Female↗

Early-occurrence of manual motor blocks in Parkinson's disease: a quantitative assessment.

OBJECTIVES: Quantitative analysis of internally-cued, repetitive motor performance in patients with Parkinson's disease (PD). MATERIAL AND METHODS: Computerized quantitative measurements of the frequency, duration and temporal profile of manual motor blocks (MMBs) during performance of a manual tapping task, in 39 patients with PD, as compared to 17 age-matched healthy controls. RESULTS: Performance of PD patients was markedly abnormal both quantitatively and qualitatively, as reflected by an increase (7.0% vs. 4.6%) in MMBs, and by their occurrence from onset of movement. The phenomenon was already observed in the early stages of the disease, and was also correlated with the occurrence of freezing of gait. A standard levodopa-carbidopa (125-12.5 mg) dose only partially affected this phenomenon. CONCLUSIONS: Augmented motor blocks in internally-cued performance should be recognized as a frequent, distinct and generalized feature of PD. Whereas the gait disorder is regarded as characteristic of the advanced stage of PD, our findings suggest that the basic defect in internal rhythm formation can be detected by sensitive measurement tools from the early stages of the disease. In addition, the methodology developed in this study to quantitatively measure manual motor blocks may be a useful tool for future development of therapeutic regimens for this debilitating aspect of motor dysfunction in PD.

Aged↗

Levodopa toxicity and apoptosis.

Many in vitro studies have shown that levodopa is a potent toxin which is lethal to various cultured neuronal and non-neuronal cells. The in vitro toxicity of levodopa is linked mainly to its auto-oxidation, which generates a variety of harmful free radical species including superoxide, hydrogen peroxide, and hydroxyl radicals, and also semiquinones and quinones produced via the dopa-melanin metabolic route. Such toxic effects of levodopa can be blocked by co-treatment with antioxidants, particularly thiol-containing compounds. Several studies have shown that levodopa kills cells by triggering apoptosis, an active, intrinsic cell suicide program. Exposure of cultured neurons to levodopa induced the characteristic apoptotic cascade, including cell shrinkage, membrane blebbing, and nuclear and DNA fragmentation. Although levodopa is extremely toxic in vitro, there is no evidence that it damages nigrostriatal dopaminergic neurons in vivo in experimental animals and in patients with Parkinson's disease (PD). Likewise, although there is some evidence for the occurrence of apoptosis in the parkinsonian substantia nigra, it is not known whether levodopa administration is capable of inducing or accelerating programmed cell death of residual pigmented nigral neurons in PD.

Animals↗

Diagnosis of "non-organic" limb paresis by a novel objective motor assessment: the quantitative Hoover's test.

The differentiation of "non-organic" limb weakness from genuine paralysis is sometimes difficult in neurological practice. To address this problem, we developed a computerized quantitative method, based on the Hoover's test principle, that determines the extent of involuntary limb activation when contralateral movement is performed. Measurements of hip or arm extension isometric force are performed during direct maximal voluntary effort and during contralateral hip flexion. Maximal involuntary/voluntary force ratio (IVVR) is calculated. IVVR of the lower limbs in ten healthy subjects was 0.614, 0.044 (mean, SEM). Similar results were obtained from seven patients with genuine weakness and in the non-affected limbs of nine patients with "non-organic" mono- or hemiparesis. In contrast, IVVR in the affected limbs in the "non-organic" group was markedly increased (2.48, 0.61; P < 0.001). The same pattern was elicited in the upper limbs (2.27, 0.46 vs 0.406, 0.06; P < 0,001). We conclude that Hoover's sign in "nonorganic" paralysis is a preservation or increase of a normal synkinetic phenomenon. Quantitative measurement of the IVVR can serve as a useful ancillary test in diagnosing non-organic weakness in either lower or upper limbs.

Adult↗

Management of response fluctuations: practical guidelines.

More than 50% of patients with Parkinson's disease (PD) develop response fluctuations following prolonged treatment with levodopa. Some are due to central pharmacodynamic mechanisms such as reduced striatal synthesis and storage of dopamine from exogenous levodopa and subsensitization of post synaptic dopaminergic receptors. Other fluctuations, especially the "delayed on" (increased time latencies from dose intake to turning "on") and "no on" (complete failure of levodopa dose to induce an "on" response) are caused by peripheral pharmacokinetic mechanisms. Patients with PD, especially those with response fluctuations, have gastric atony. The reduced motility of the stomach, combined with the poor solubility of levodopa, is the cause for the delayed and incomplete absorption of levodopa. The best strategy to overcome central pharmacodynamic mechanisms and to increase daily "on" hours can be achieved by using dopamine agonists, controlled release preparations, MAO-B and COMT inhibitors. Therapeutic strategies that improve levodopa absorption are needed to overcome response fluctuations that are caused by peripheral mechanisms. This can be achieved by crushing levodopa and drinking it as a suspension. Administration of crushed levodopa or levodopa/carbidopa/ascorbic acid solutions orally or through gastroduodenal or gastrojejunostomy tubes may also be helpful. Prokinetic drugs, such as prepulsid, improve absorption of levodopa by enhancing gastric motility. Bypassing the stomach by subcutaneous dopamine agonists (apomorphine and lisuride pumps) or by the novel prodrug of levodopa, i.e., levodopa ethylester, may produce dramatic rescue from incapacitating "off" states.

Antiparkinson Agents↗

Enhanced fatigue during motor performance in patients with Parkinson's disease.

OBJECTIVE: To measure fatigue quantitatively during continuous motor performance in patients with PD. BACKGROUND: Enhanced fatigue on performance of motor tasks is a very frequent and disabling complaint of PD patients, and is poorly characterized and understood. Recent evidence suggests a role for mitochondrial dysfunction in the pathogenesis of PD. Reduced exercise capacity is one of the hallmarks of systemic mitochondrial impairment. METHODS: The authors used an automated system to measure muscle fatigue during a continuous (30-second), maximal, isometric forearm flexion in 17 PD patients and 10 age-matched control subjects. A fatigue index (FI) was then calculated. Peak force (PF) was measured as an internal standard of the examination. Measurements were performed before and 2 hours after an oral dose of levodopa/carbidopa (125 mg/12.5 mg). RESULTS: In PD patients there was a 50% increase in FI. The increased FI was often asymmetric and more pronounced on the side more affected by the disease. FI was significantly responsive to, and improved after, an oral dose of levodopa. The rate of improvement in FI induced by levodopa correlated with disease severity, as measured by the Unified Parkinson's Disease Rating Scale. No significant alterations in PF were observed. CONCLUSIONS: Enhanced muscle fatigue should be recognized as an integral part of the spectrum of motor impairment of PD. However, our data argue for its association with a central dopamine deficiency rather than with a muscle mitochondrial abnormality.

Adult↗