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1.
Clin Neurol Neurosurg ; 193: 105794, 2020 06.
Article in English | MEDLINE | ID: mdl-32203707

ABSTRACT

OBJECTIVE: Depression, anxiety, and obsessive-compulsive disorder have been widely reported in patients with dystonia. On the other hand, cognitive impairment, frontal lobe function, impulsiveness and pseudobulbar affect are less studied. The objective of the study is to assess these neuropsychiatric symptoms along with the quality of life of subjects with craniocervical dystonia. PATIENTS AND METHODS: A cross-sectional study was carried out in patients with craniocervical dystonia. Sex- and age-matched healthy controls were included. Neuropsychiatric assessment included the Montreal Cognitive Assessment (MoCA), Frontal Assessment Battery (FAB), Barrat Impulsiveness Scale (BIS-11), Center for Neurologic Study-Lability Scale (CNS-LS), Anxiety Rating Scale (HAM-A), Hamilton Depression Rating Scale (HAM-D), and the 12-item Short Form Health Survey (SF-12). RESULTS: A total of 44 patients with craniocervical dystonia and 44 controls were included. The mean age was 57 ± 13.7 years. Depression (56.1 % vs 9.1 %, p < 0.001), anxiety (56.8 % vs 6.8 %, p < 0.001), and pseudobulbar affect (31.8 % vs 9.1 %, p = 0.02) were more common in the dystonia group in comparison to controls. No difference between groups was found in impulsiveness (p = 0.65), MoCA score (p = 0.14) or executive dysfunction (p = 0.42). Quality of life was worst in the dystonia group with 90.9 % (p = 0.03) and 61.4 % (p < 0.001) of the subjects scoring under average in the Physical Composite Score (PCS) and Mental Composite Score (MCS) of the SF-12. CONCLUSION: MoCA scores ≤18, pseudobulbar affect, depression and anxiety are more prevalent in subjects with craniocervical dystonia in comparison to sex- and age-matched healthy controls. Regarding quality of life, MCS is more affected that the PCS in subjects with dystonia.


Subject(s)
Torticollis/psychology , Adult , Aged , Anxiety/psychology , Case-Control Studies , Cognitive Dysfunction/etiology , Cognitive Dysfunction/psychology , Cross-Sectional Studies , Depression/psychology , Executive Function , Female , Humans , Impulsive Behavior , Male , Mental Status and Dementia Tests , Middle Aged , Neuropsychological Tests , Pseudobulbar Palsy/psychology , Quality of Life
2.
Biomed Pharmacother ; 88: 745-753, 2017 Apr.
Article in English | MEDLINE | ID: mdl-28157650

ABSTRACT

BACKGROUND: URB597 is a compound largely linked to the inhibition of fatty acid amide hydrolase (FAAH), an enzyme responsible for the metabolic degradation of the endocannabinoid anandamide (AEA). Despite this pharmacological property accounts for its modulatory profile demonstrated in some neurotoxic paradigms, the possible protective properties of this agent have been poorly investigated, and deserve exploration in different neurotoxic models. In this study, we explored the effects of URB597 on oxidative damage to lipids and other major endpoints of toxicity in two neurotoxic models in vivo in rats (the first one produced by the mitochondrial neurotoxin 3-nitropropionic acid [3-NP], and the other generated by the striatal injection of the pro-oxidant toxin 6-hydroxidopamine [6-OHDA]) in order to provide further supporting evidence of its modulatory profile. METHODS: Male Wistar adult rats were treated for 5 or 7 consecutive days with URB597 (0.3mg/kg, i.p.) and simultaneously exposed to three injections of 3-NP (30mg/kg, i.p.) or a single intrastriatal infusion of 6-OHDA (0.02mg/2µl), respectively. Twenty four hours after all treatments were administered, lipid peroxidation was measured in the striatum of 3-NP-treated rats, and in the midbrain of 6-OHDA-treated rats. Motor skills and histological assessment in the striatum were also evaluated in 3-NP-treated rats 6 and 7days after the last drug administration, respectively; whereas apomorphine-induced circling behavior and tyrosine hydroxylase immunolocalization in the striatum and substantia nigra were investigated 21 and 22days after the last drug infusion, respectively. RESULTS: URB597 prevented the oxidative damage to lipids induced by 3-NP in the striatum, and this effect could account for the attenuation of motor deficits in this model. Attenuation of motor disturbances induced by URB597 in both models was associated with the morphological preservation of the striatum in the 3-NP model and the partial preservation of tyrosine hydroxylase in the 6-OHDA model in the SNpc and striatum. CONCLUSION: The modulatory actions exerted by URB597 in both toxic models support its potential against toxic conditions implying motor and neurochemical alterations linked to energy depletion, excitotoxicity and oxidative stress. Although most of these effects could be attributable to its action on FAAH and further AEA accumulation, in light of our present findings other properties are suggested.


Subject(s)
Benzamides/therapeutic use , Carbamates/therapeutic use , Neuroprotective Agents/therapeutic use , Neurotoxicity Syndromes/drug therapy , Amidohydrolases/antagonists & inhibitors , Animals , Apomorphine , Behavior, Animal/drug effects , Body Weight/drug effects , Injections , Lipid Peroxidation/drug effects , Male , Motor Skills/drug effects , Neostriatum , Neurotoxicity Syndromes/pathology , Neurotoxicity Syndromes/psychology , Nitro Compounds , Oxidopamine , Propionates , Rats , Rats, Wistar
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