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Biomedical subjects

Jean-Luc Houeto

Publications and source records attributed to Jean-Luc Houeto.

12 recordsLinked to original sources

The immunosuppressant rapamycin exacerbates neurotoxicity of Abeta peptide.

Alzheimer's disease (AD) is a neurodegenerative disease of the central nervous system characterized by two major lesions: extracellular senile plaques and intraneuronal neurofibrillary tangles. beta-Amyloid (Abeta) is known to play a major role in the pathogenesis of AD. Protein synthesis and especially translation initiation are modulated by different factors, including the PKR/eIF2 and the mTOR/p70S6K pathways. mRNA translation is altered in the brain of AD patients. Very little is known about the translation control mediated by mTOR in AD, although mTOR is a central regulator of translation initiation and also ribosome biogenesis and cell growth and proliferation. In this study, by using Western blotting, we show that mTOR pathway is down-regulated by Abeta treatment in human neuroblastoma cells, and the underlying mechanism explaining a transient activation of p70S6K is linked to cross-talk between mTOR and ERK1/2 at this kinase level. This phenomenon is associated with caspase-3 activation, and inhibition of mTOR by the inhibitor rapamycin enhances Abeta-induced cell death. Moreover, in our cell model, insulin-like growth factor-1 is able to increase markedly the p70S6K phosphorylation controlled by mTOR and reduces the caspase-3 activity, but its protective effect on Abeta cell death is mediated via an mTOR-independent pathway. These results demonstrate that mTOR plays an important role as a cellular survival pathway in Abeta toxicity and could represent a possible target for modulating Abeta toxicity.

Amyloid beta-Peptides↗

Subthalamic stimulation in Parkinson disease: behavior and social adaptation.

BACKGROUND: Bilateral subthalamic high-frequency stimulation significantly improves motor functions in patients with advanced forms of Parkinson disease (PD). This favorable effect contrasts with a growing number of reports that the treatment may result in psychiatric complications. OBJECTIVE: To analyze the presence of behavioral disorders and social maladjustment in PD patients successfully treated with continuous bilateral subthalamic stimulation. DESIGN: Prospective study. SETTING: University hospital. METHODS: Twenty PD patients underwent prospective evaluation for behavioral and personality changes, quality of life, and social functioning, 6 and 24 months after surgery to implant bilateral stimulating electrodes within the subthalamic nucleus. RESULTS: At 6 and 24 months after surgery, parkinsonian motor disability (on-stimulation/off-medication) was improved by 81% and 67%, respectively, and the severity of levodopa-related motor complications was improved by 84% and 70%, respectively. Levodopa-equivalent dosage was decreased by 79% and 66%, respectively; severity of depression was improved by 21% and 33%, respectively; and severity of anxiety was improved by 43% and 64%, respectively. The patients' personality traits were unmodified. Twenty-four months after surgery, the global score for quality of life was improved by 28%, whereas scores for social adjustment remained stable. CONCLUSIONS: Provided that patients with PD are rigorously selected for neurosurgery, subthalamic stimulation (1) improves mood, anxiety, and quality of life; (2) does not result in severe permanent psychiatric disorders or modify patients' personality; and (3) does not ameliorate social adaptation.

Activities of Daily Living↗

Deep brain stimulation: preoperative issues.

Numerous factors need to be taken into account in deciding whether a patient with Parkinson's disease (PD) is a candidate for deep brain stimulation. Patient-related personal factors including age and the presence of other comorbid disorders need to be considered. Neuropsychological and neuropsychiatric concerns relate both to the presurgical status of the patient and to the potential for surgery to result in new problems postoperatively. A number of factors related to the underlying PD need to be considered, including the specific parkinsonian motor indications (e.g., tremor, bradykinesia, gait dysfunction), previous medical therapies, including benefit from current therapy and adverse effects, and past surgical treatments. Definable causes of Parkinsonism, particularly atypical Parkinsonisms, should be considered. Finally, methods of evaluating outcomes should be defined and formalized. This is a report from the Consensus on Deep Brain Stimulation for Parkinson's Disease, a project commissioned by the Congress of Neurological Surgeons and the Movement Disorder Society (MDS). The report has been endorsed by the Scientific Issues Committee of the MDS and the American Society of Stereotactic and Functional Neurosurgery. It outlines answers to a series of questions developed to address all aspects of deep brain stimulation preoperative decision-making.

Brain↗

Deep brain stimulation: neuropsychological and neuropsychiatric issues.

Parkinson's disease (PD) is a neurodegenerative disorder characterized by motor, cognitive, neuropsychiatric, autonomic, and other nonmotor symptoms. The efficacy of deep brain stimulation (DBS) for the motor symptoms of advanced PD is well established. However, the effects of DBS on the cognitive and neuropsychiatric symptoms are less clear. The neuropsychiatric aspects of DBS for PD have recently been of considerable clinical and pathophysiological interest. As a companion to the preoperative and postoperative sections of the DBS consensus articles, this article reviews the published literature on the cognitive and neuropsychiatric aspects of DBS for PD. The majority of the observed neuropsychiatric symptoms are transient, treatable, and potentially preventable. Outcome studies, methodological issues, pathophysiology, and preoperative and postoperative management of the cognitive and neuropsychiatric aspects and complications of DBS for PD are discussed.

Cognition Disorders↗

Bilateral deep-brain stimulation of the globus pallidus in primary generalized dystonia.

BACKGROUND: Severe forms of dystonia respond poorly to medical treatment. Deep-brain stimulation is a reversible neurosurgical procedure that has been used for the treatment of dystonia, but assessment of its efficacy has been limited to open studies. METHODS: We performed a prospective, controlled, multicenter study assessing the efficacy and safety of bilateral pallidal stimulation in 22 patients with primary generalized dystonia. The severity of dystonia was evaluated before surgery and 3, 6, and 12 months postoperatively during neurostimulation, with the use of the movement and disability subscores of the Burke-Fahn-Marsden Dystonia Scale (range, 0 to 120 and 0 to 30, respectively, with higher scores indicating greater impairment). Movement scores were assessed by a review of videotaped sessions performed by an observer who was unaware of treatment status. At three months, patients underwent a double-blind evaluation in the presence and absence of neurostimulation. We also assessed the patients' quality of life, cognition, and mood at baseline and 12 months. RESULTS: The dystonia movement score improved from a mean (+/-SD) of 46.3+/-21.3 before surgery to 21.0+/-14.1 at 12 months (P<0.001). The disability score improved from 11.6+/-5.5 before surgery to 6.5+/-4.9 at 12 months (P<0.001). General health and physical functioning were significantly improved at month 12; there were no significant changes in measures of mood and cognition. At the three-month evaluation, dystonia movement scores were significantly better with neurostimulation than without neurostimulation (24.6+/-17.7 vs. 34.6+/-12.3, P<0.001). There were five adverse events (in three patients); all resolved without permanent sequelae. CONCLUSIONS: These findings support the efficacy and safety of the use of bilateral stimulation of the internal globus pallidus in selected patients with primary generalized dystonia.

Adolescent↗

Effects of high-frequency stimulation on subthalamic neuronal activity in parkinsonian patients.

BACKGROUND: High-frequency stimulation of the subthalamic nucleus (STN) is a neurosurgical alternative to medical treatment in levodopa-responsive forms of Parkinson disease. The mechanism of action of STN stimulation remains controversial, although an inhibition of overactive STN neurons has been postulated. OBJECTIVE: To determine the effects of high-frequency STN stimulation on the neuronal activity of STN neurons in Parkinson disease patients. PATIENTS: Single-unit recordings of the neuronal activity of the STN were obtained before, during, and after the application of intra-STN electrical stimulation in 15 Parkinson disease patients. Changes in firing frequency and pattern were analyzed using various combinations of stimulus frequency (range, 14-140 Hz). RESULTS: Stimulation at a frequency greater than 40 Hz applied within the STN significantly decreased the firing frequency and increased the burst-like activity in the firing pattern of STN neurons. An aftereffect was observed in cells that had been totally inhibited during high-frequency stimulation. CONCLUSION: The beneficial effects of high-frequency stimulation result from a change in the firing pattern of cellular discharge and a blockade of the spontaneous overactivity of STN neurons.

Aged↗

Subthalamic stimulation in Parkinson disease: with or without anesthesia?

OBJECTIVE: To study the effects of general anesthesia on the postoperative outcome of patients with Parkinson disease (PD) who underwent surgery using bilateral placement of stimulating electrodes within the subthalamic nucleus (STN). DESIGN: Retrospective analysis. SETTING: Hôpital de la Salpêtrière, Paris, France. PATIENTS: Fifteen PD patients who underwent bilateral implantation of electrodes within the STN received general anesthesia because of severe anxiety, poorly tolerated off-period dystonia, or respiratory difficulties. These patients were compared with 15 patients matched for age, disease duration, and parkinsonian motor disability who underwent the same neurosurgical procedure under local anesthesia. MAIN OUTCOME MEASURE: Motor disability scores. RESULTS: After surgery, the severity of parkinsonian motor disability was markedly improved in both groups of patients. Compared with patients who were under local anesthesia during the operation, the residual parkinsonian motor score under stimulation (with ["on"] or without ["off"] levodopa) and the intensity of stimulation were higher in patients who were under general anesthesia during the operation. CONCLUSIONS: Although the improvement of parkinsonian motor disability is greater in PD patients who receive local anesthesia during surgery, general anesthesia can be performed in patients unable to tolerate prolonged states without levodopa.

Aged↗

Tardive dystonia induced by atypical neuroleptics: a case report with olanzapine.

We report the case of a 17-year-old-boy with schizophrenia who developed tardive dystonia after 9 months of treatment with olanzapine. This case and the relevant literature show that when neuroleptic treatment is indicated, switching to another atypical neuroleptic might be helpful for both tardive dystonia and schizophrenia. In such a case, clozapine appears to be the first-line therapeutic option.

Adolescent↗

Subthalamic stimulation in Parkinson disease: intraoperative predictive factors.

BACKGROUND: High-frequency stimulation of the subthalamic nucleus (STN) is an effective treatment for advanced forms of Parkinson disease. Postoperative improvement of motor parkinsonian disability is known to depend on patient selection and surgical targeting. OBJECTIVE: To determine which clinical and electrophysiological variables evaluated during the operation predict the postoperative clinical outcome of patients with Parkinson disease treated by bilateral high-frequency stimulation of the STN. METHODS: Intraoperative clinical and electrophysiological data obtained in 41 patients with Parkinson disease who underwent bilateral implantation of electrodes for STN stimulation were correlated with the improvement in parkinsonian disability assessed 6 months after the operation. RESULTS: The extent of STN neuronal activity recorded along the trajectory of the therapeutic electrode had no effect on the postoperative clinical outcome. The intraoperative improvement in segmental akinesia, but not rigidity, was predictive of the postoperative improvement in parkinsonian motor disability and reduction in daily levodopa-equivalent dosage. Parkinsonian motor disability scores assessed after surgery were lower in patients with intraoperative stimulation-induced dyskinesias than in those without stimulation-induced dyskinesias. CONCLUSION: The improvement of segmental akinesia and the observation of dyskinesias provoked by stimulation during the operation predict the best postoperative effects of bilateral STN stimulation on parkinsonian motor disability.

Disability Evaluation↗

Parkinson's disease, subthalamic stimulation, and selection of candidates: a pathological study.

We report on a patient with Parkinson's disease (PD) who was moderately improved by stimulation of the subthalamic nucleus (STN) and died 2 years after electrode implantation. After neurosurgery, symptoms that had responded to levodopa treatment preoperatively continued to improve. Postural instability, dysarthria, and cognitive impairment continued to worsen, despite STN stimulation and levodopa treatment. Postmortem examination of the brain confirmed the diagnosis of PD and showed that the electrodes had been correctly positioned within the STN. The failure of STN stimulation in this patient confirms the importance of screening and excluding patients from surgery with evolving parkinsonian axial symptoms or cognitive impairment.

Aged↗

Localization of stimulating electrodes in patients with Parkinson disease by using a three-dimensional atlas-magnetic resonance imaging coregistration method.

OBJECT: The aim of this study was to correlate the clinical improvement in patients with Parkinson disease (PD) treated using deep brain stimulation (DBS) of the subthalamic nucleus (STN) with the precise anatomical localization of stimulating electrodes. METHODS: Localization was determined by superimposing figures from an anatomical atlas with postoperative magnetic resonance (MR) images obtained in each patient. This approach was validated by an analysis of experimental and clinical MR images of the electrode, and the development of a three-dimensional (3D) atlas-MR imaging coregistration method. The PD motor score was assessed through two contacts for each of two electrodes implanted in 10 patients: the "therapeutic contact" and the "distant contact" (that is, the next but one to the therapeutic contact). Seventeen therapeutic contacts were located within or on the border of the STN, most of which were associated with significant improvement of the four PD symptoms tested. Therapeutic contacts located in other structures (zona incerta, lenticular fasciculus, or midbrain reticular formation) were also linked to a significant positive effect. Stimulation applied through distant contacts located in the STN improved symptoms of PD, whereas that delivered through distant contacts in the remaining structures had variable effects ranging from worsening of symptoms to their improvement. CONCLUSIONS: The authors have demonstrated that 3D atlas-MR imaging coregistration is a reliable method for the precise localization of DBS electrodes on postoperative MR images. In addition, they have confirmed that although the STN is the main target during DBS treatment for PD, stimulation of surrounding regions, particularly the zona incerta or the lenticular fasciculus, can also improve symptoms of PD.

Adult↗

Compulsions, Parkinson's disease, and stimulation.

Pathophysiological models suggest that obsessive compulsive disorder (OCD) might be associated with dysfunctions in cortico-striato-pallido-thalamo-cortical neuronal circuits. We implanted subthalamic electrodes to alleviate parkinsonian symptoms in two patients who had Parkinson's disease and a history of severe OCD. Parkinsonian disability improved postoperatively in both patients, and 2 weeks after the procedure, their compulsions had disappeared and obsessive symptoms improved (58% improvement for patient 1 on the Yale-Brown obsessive compulsive scale, 64% for patient 2). The improvements in these two patients suggest that high-frequency stimulation could improve function in the subcortical-limbic circuitry in patients with severe OCD.

Electric Stimulation Therapy↗