Your browser doesn't support javascript.
loading
: 20 | 50 | 100
1 - 20 de 90
1.
Article En | MEDLINE | ID: mdl-38237841

Anxiety is among the most prevalent mental disorders present in the general population. Benzodiazepines are the most commonly prescribed drugs for the treatment of anxiety. Using zebrafish as a model organism, we investigated the anxiolytic activity of JM-20, a novel hybrid molecule with a 1,5-benzodiazepine ring fused to a dihydropyridine moiety. Firstly, we carried out some assays to analyze the possible toxicity mediated by JM-20. For this, zebrafish were exposed to different JM-20 concentrations (0-5 µM) for 96 h. Then, using the novel tank test, we evaluated both locomotor and anxiety-like behavior of the animals. Furthermore, brain, liver and plasma were removed to assess toxicity parameters. JM-20 exposure did not cause changes on novel tank, and also did not alter brain viability, hepatic LDH and plasma ALT levels. Afterward, we investigated whether a pre-exposure to JM-20 would prevent the anxiogenic effect evoked by caffeine. In the novel tank test, caffeine significantly decreased the time spent at the top, as well as the number of transitions to the top area. Moreover, caffeine decreased both the total and average time spent in the lit area, as well as increased the number of risk episodes evaluated by the light-dark test. Whole-body cortisol levels were also increased by caffeine exposure. Interestingly, pre-treatment with JM-20 abolished all alterations induced by caffeine. The anxiolytic effect profile of JM-20 was similar to those found for diazepam (positive control). Our findings show, for the first time, the anxiolytic effect of JM-20 in zebrafish, and its relationship with cortisol regulation.


Anti-Anxiety Agents , Humans , Animals , Anti-Anxiety Agents/pharmacology , Caffeine/toxicity , Zebrafish/physiology , Hydrocortisone/pharmacology , Behavior, Animal , Phenotype
2.
Mol Neurobiol ; 61(3): 1225-1236, 2024 Mar.
Article En | MEDLINE | ID: mdl-37698834

Type 2 diabetes mellitus (T2DM) has been shown to affect a series of cognitive processes including memory, increasing the risk for dementia, particularly Alzheimer's disease (AD). Although increasing evidence has supported that both diseases share common features, the pathophysiological mechanisms connecting these two disorders remain to be fully elucidated. Herein, we used Drosophila melanogaster fed on a high-sugar diet (HSD) to mimic T2DM, and investigate its effects on memory as well as identify potential molecular players associated with the memory deficits induced by HSD. Flies hatched from and reared on HSD for 7 days had a substantial decrease in short-term memory (STM). The screening for memory-related genes using transcriptome data revealed that HSD altered the expression of 33% of memory genes in relation to the control. Among the differentially expressed genes (DEGs) with a fold change (FC) higher than two, we found five genes, related to synapse and memory trace formation, that could be considered strong candidates to underlie the STM deficits in HSD flies: Abl tyrosine kinase (Abl), bruchpilot (Brp), minibrain (Mnb), shaker (Sh), and gilgamesh (Gish). We also analyzed genes from the dopamine system, one of the most relevant signaling pathways for olfactory memory. Interestingly, the flies fed on HSD presented a decreased expression of the Tyrosine hydroxylase (Ple) and Dopa decarboxylase (Ddc) genes, signals of a possible dopamine deficiency. In this work, we present promising biomarkers to investigate molecular networks shared between T2DM and AD.


Alzheimer Disease , Diabetes Mellitus, Type 2 , Animals , Drosophila melanogaster/metabolism , Dopamine/metabolism , Memory Disorders/genetics , Diet , Sugars/metabolism , Sugars/pharmacology
3.
Comput Biol Chem ; 107: 107956, 2023 Dec.
Article En | MEDLINE | ID: mdl-37748316

The main protease (Mpro) of the novel coronavirus SARS-CoV-2 is a key target for developing antiviral drugs. Ebselen (EbSe) is a selenium-containing compound that has been shown to inhibit Mpro in vitro by forming a covalent bond with the cysteine (Cys) residue in the active site of the enzyme. However, EbSe can also bind to other proteins, like albumin, and low molecular weight compounds that have free thiol groups, such as Cys and glutathione (GSH), which may affect its availability and activity. In this study, we analyzed the Mpro interaction with EbSe, its analogues, and its metabolites with Cys, GSH, and albumin by molecular docking. We also simulated the electronic structure of the generated molecules by density functional theory (DFT) and explored the stability of EbSe and one of its best derivatives, EbSe-2,5-MeClPh, in the catalytic pocket of Mpro through covalent docking and molecular dynamics. Our results show that EbSe and its analogues bound to GSH/albumin have larger distance between the selenium atom of the ligands and the sulfur atom of Cys145 of Mpro than the other compounds. This suggests that EbSe and its GSH/albumin-analogues may have less affinity for the active site of Mpro. EbSe-2,5-MeClPh was found one of the best molecules, and in molecular dynamics simulations, it showed to undergo more conformational changes in the active site of Mpro, in relation to EbSe, which remained stable in the catalytic pocket. Moreover, this study also reveals that all compounds have the potential to interact closely with the active site of Mpro, providing us with a concept of which derivatives may be promising for in vitro analysis in the future. We propose that these compounds are potential covalent inhibitors of Mpro and that organoselenium compounds are molecules that should be studied for their antiviral properties.


COVID-19 , Organoselenium Compounds , Selenium , Humans , Catalytic Domain , Molecular Docking Simulation , SARS-CoV-2 , Albumins , Azoles/pharmacology , Cysteine , Glutathione , Molecular Dynamics Simulation , Organoselenium Compounds/pharmacology , Peptide Hydrolases , Protease Inhibitors , Antiviral Agents/pharmacology
5.
Cell Biochem Funct ; 41(3): 284-295, 2023 Apr.
Article En | MEDLINE | ID: mdl-36929117

In the last 2 years, different pharmacological agents have been indicated as potential inhibitors of SARS-CoV-2 in vitro. Specifically, drugs termed as functional inhibitors of acid sphingomyelinase (FIASMAs) have proved to inhibit the SARS-CoV-2 replication using different types of cells. Those therapeutic agents share several chemical structure characteristics and some well-known representatives are fluoxetine, escitalopram, fluvoxamine, and others. Most of the FIASMAs are primarily used as effective therapeutic agents to treat different pathologies, therefore, they are natural drug candidates for repositioning strategy. In this review, we summarize the two main proposed mechanisms mediating acid sphingomyelinase (ASM) inhibition and how they can explain the inhibition of SARS-CoV-2 replication by FIASMAs. The first mechanism implies a disruption in the lysosomal pH fall as the endosome-lysosome moves toward the interior of the cell. In fact, changes in cholesterol levels in endosome-lysosome membranes, which are associated with ASM inhibition is thought to be mediated by lysosomal proton pump (ATP-ase) inactivation. The second mechanism involves the formation of an extracellular ceramide-rich domain, which is blocked by FIASMAs. The ceramide-rich domains are believed to facilitate the SARS-CoV-2 entrance into the host cells.


COVID-19 , SARS-CoV-2 , Sphingomyelin Phosphodiesterase , Humans , Ceramides/metabolism , Fluoxetine/pharmacology , SARS-CoV-2/drug effects , Sphingomyelin Phosphodiesterase/antagonists & inhibitors , Sphingomyelin Phosphodiesterase/metabolism
6.
Curr Med Chem ; 30(21): 2449-2462, 2023.
Article En | MEDLINE | ID: mdl-36065927

BACKGROUND: This study presents the synthesis and multi-target behavior of the new 5'-hydroxy-3-(chalcogenyl-triazoyl)-thymidine and the biological evaluation of these compounds as antioxidant and anti-HIV agents. OBJECTIVE: Antiretroviral therapy induces oxidative stress. Based on this, this manuscript's main objective is to prepare compounds that combine anti-HIV and antioxidant activities. METHODS: The compounds were prepared from commercially available AZT through a copper-catalyzed Huisgen 1,3-dipolar cycloaddition exploiting the AZT azide group and chalcogenyl alkynes. RESULTS: The chalcogenium-AZT derivatives were obtained in good yields via click chemistry. The compounds evaluated showed antioxidant and anti-HIV activity. Additionally, in vivo toxicity of this class of compounds was also evaluated. The representative nucleoside did not change the survival, behavior, biochemical hepatic, or renal markers compared to the control mice. CONCLUSION: Data suggest the feasibility of modifying the AZT nucleus with simple organohalogen fragments, exploring the reactivity of the azide group via 1,3-dipolar Huisgen cycloaddition reaction. The design of these new compounds showed the initially desired biological activities.


Anti-HIV Agents , HIV Infections , Animals , Mice , Antioxidants/pharmacology , Antioxidants/therapeutic use , Azides/chemistry , Anti-HIV Agents/pharmacology , Anti-HIV Agents/therapeutic use , Anti-HIV Agents/chemistry , HIV Infections/drug therapy , Oxidative Stress , Zidovudine/pharmacology , Zidovudine/metabolism
7.
Int J Clin Pharm ; 45(1): 17-25, 2023 Feb.
Article En | MEDLINE | ID: mdl-36369412

BACKGROUD: Peripheral arterial disease can progress to critical limb ischemia, which requires revascularization. The endovascular approach is associated with a lower long-term patency due to restenosis resulting from neointimal hyperplasia. Statins offer significant advantages in patients undergoing percutaneous interventions. However, there are few studies on statin therapy associated with improved clinical outcomes after endovascular treatment in this patients. AIM: This systematic review and meta-analysis examined the effects of statins (in comparison with no statin) on outcomes of lower-limb arterial angioplasty by evaluating patency, amputation and mortality. METHOD: We searched MEDLINE, Academic Search Premier and CINAHL using a predetermined search strategy from inception to September 21, 2022. Study selection (first by title and abstract and then by full text) and data extraction was conducted by two independent reviewers. Risk of bias was assessed using the Newcastle-Ottawa Scale. According to data availability, we conducted meta-analysis using RevMan v.5.4. RESULTS: The search identified 841 relevant articles and included 10 studies with 43,543 patients. Statin use in patients before undergoing lower-limb arterial angioplasty was associated with improved primary patency at 12 (12.57%, 95% confidence interval [CI] 6.86-18.28, p < 0.0001) and 24 months (7.19%, 95% CI 1.02-13.37, p = 0.02), decreased mortality in 39% at 12 months (relative risk (RR): 0.61, 95% CI 0.55-0.74, p < 0.00001) and decreased limb loss in 23% in the studied patients (RR: 0.77, 95% CI 0.65-0.91, p = 0.003). CONCLUSION: Statin therapy before the procedure was associated with significantly improved patency and overall survival and decreased limb loss after lower-limb arterial angioplasty.


Hydroxymethylglutaryl-CoA Reductase Inhibitors , Humans , Hydroxymethylglutaryl-CoA Reductase Inhibitors/therapeutic use , Vascular Patency , Ischemia/surgery , Amputation, Surgical , Angioplasty/adverse effects , Angioplasty/methods , Treatment Outcome , Risk Factors
8.
J Trace Elem Med Biol ; 75: 127099, 2023 Jan.
Article En | MEDLINE | ID: mdl-36372013

The antioxidant effects of selenium as a component of selenoproteins has been thought to modulate host immunity and viral pathogenesis. Accordingly, the association of low dietary selenium status with inflammatory and immunodeficiency has been reported in the literature; however, the causal role of selenium deficiency in chronic inflammatory diseases and viral infection is still undefined. The COVID-19, characterized by acute respiratory syndrome and caused by the novel coronavirus 2, SARS-CoV-2, has infected millions of individuals worldwide since late 2019. The severity and mortality from COVID-19 have been associated with several factor, including age, sex and selenium deficiency. However, available data on selenium status and COVID-19 are limited, and a possible causative role for selenium deficiency in COVID-19 severity has yet to be fully addressed. In this context, we review the relationship between selenium, selenoproteins, COVID-19, immune and inflammatory responses, viral infection, and aging. Regardless of the role of selenium in immune and inflammatory responses, we emphasize that selenium supplementation should be indicated after a selenium deficiency be detected, particularly, in view of the critical role played by selenoproteins in human health. In addition, the levels of selenium should be monitored after the start of supplementation and discontinued as soon as normal levels are reached. Periodic assessment of selenium levels after supplementation is a critical issue to avoid over production of toxic metabolites of selenide because under normal conditions, selenoproteins attain saturated expression levels that limits their potential deleterious metabolic effects.


COVID-19 , Selenium , Humans , SARS-CoV-2
9.
J Biomol Struct Dyn ; 41(19): 9562-9575, 2023 11.
Article En | MEDLINE | ID: mdl-36447407

Acid Sphingomyelinase (ASM) is a human phosphodiesterase that catalyzes the metabolism of sphingomyelin (SM) to ceramide and phosphocholine. ASM is involved in the plasma membrane cell repair and is associated with the lysosomal inner lipid membrane by nonbonding interactions. The disruption of those interaction would result in ASM release into the lysosomal lumen and consequent degradation of its structure. Furthermore, SARS-CoV-2 infection has been linked with ASM activation and with a ceramide domain formation in the outer leaflet of the plasma membrane that is thought to be crucial for the viral particles recognition by the host cells. In this study, we have explored in silico the behavior of fluoxetine and related drugs as potential inhibitors of ASM. Theoretically, these drugs would be able to overpass lysosomal membrane and reach the interactions that sustain ASM structure, breaking them and inhibiting the ASM. The analyses of docking data indicated that fluoxetine allocated mainly in the N-terminal saposin domain via nonbonding interactions, mostly of hydrophobic nature. Similar results were obtained for venlafaxine, citalopram, atomoxetine, nisoxetine and fluoxetine's main metabolite norfluoxetine. In conclusion, it was observed that the saposin allocation may be a good indicative of the drugs inhibition mechanism, once this domain is responsible for the binding of ASM to lysosomal membrane and some of those drugs have previously been reported to inhibit the phosphodiesterase by releasing its structure in the lysosomal lumen. Our MD data also provides some insight about natural ligand C18 sphingomyelin conformations on saposin.Communicated by Ramaswamy H. Sarma.


COVID-19 , Sphingomyelin Phosphodiesterase , Humans , Sphingomyelin Phosphodiesterase/metabolism , Fluoxetine/pharmacology , SARS-CoV-2/metabolism , Sphingomyelins , Saposins , Antidepressive Agents/pharmacology , Ceramides/metabolism
10.
Genes (Basel) ; 13(12)2022 12 16.
Article En | MEDLINE | ID: mdl-36553641

Transposable elements (TEs) are abundant in genomes. Their mobilization can lead to genetic variability that is useful for evolution, but can also have deleterious biological effects. Somatic mobilization (SM) has been linked to degenerative diseases, such as Alzheimer's disease and cancer. We used a Drosophila simulans strain, in which SM can be measured by counting red spots in the eyes, to investigate how chemotherapeutic agents affect expression and SM of the mariner TE. Flies were treated with Cisplatin, Dacarbazine, and Daunorubicin. After acute exposure, relative expression of mariner was quantified by RT-qPCR and oxidative stress was measured by biochemical assays. Exposure to 50 and 100 µg/mL Cisplatin increased mariner expression and ROS levels; catalase activity increased at 100 µg/mL. With chronic exposure, the number of spots also increased, indicating higher mariner SM. Dacarbazine (50 and 100 µg/mL) did not significantly alter mariner expression or mobilization or ROS levels, but decreased catalase activity (100 µg/mL). Daunorubicin (25 and 50 µM) increased mariner expression, but decreased mariner SM. ROS and catalase activity were also reduced. Our data suggest that stress factors may differentially affect the expression and SM of TEs. The increase in mariner transposase gene expression is necessary, but not sufficient for mariner SM.


DNA Transposable Elements , Drosophila simulans , Animals , DNA Transposable Elements/genetics , Drosophila/genetics , Catalase/genetics , Cisplatin , Reactive Oxygen Species
11.
Biofouling ; 38(5): 427-440, 2022 05.
Article En | MEDLINE | ID: mdl-35670068

Candida krusei is a candidiasis etiological agent of relevance in the clinical setting because of its intrinsic resistance to fluconazole. Also, it has opened up new paths in the area of alternative therapeutic techniques. This project demonstrated the effects of diphenyl diselenide (PhSe)2 and p-cloro diphenyl diselenide (pCl-PhSe)2, two organochalcogen compounds, on relevant virulence factors for the early stage of the C. krusei host interaction and infection process. Both compounds inhibited adherence of C. krusei to both polystyrene surfaces and cervical epithelial cells and biofilm formation; the structure of the biofilm was also changed in a dose-dependent manner. In addition, both compounds inhibited C. krusei growth, but (PhSe)2 significantly increased the time duration of the lag phase and delayed the start of the exponential phase in growth kinetics. (PhSe)2 has more potential antifungal activity than (pCl-PhSe)2 in inhibiting the adherence to epithelial cells, biofilm formation, and growth of C. krusei.


Biofilms , Virulence Factors , Antifungal Agents/pharmacology , Antifungal Agents/therapeutic use , Benzene Derivatives , Fluconazole/pharmacology , Organoselenium Compounds , Pichia
12.
J Trace Elem Med Biol ; 73: 127019, 2022 Sep.
Article En | MEDLINE | ID: mdl-35709560

BACKGROUND: Systemic candidiasis is produced by Candida albicans or non-albicans Candida species, opportunistic fungi that produce both superficial and invasive infections. Despite the availability of a wide range of antifungal agents for the treatment of candidiasis, failure of therapy is observed frequently, which opens new avenues in the field of alternative therapeutic strategies. METHODS: The effects of p,p'-methoxyl-diphenyl diselenide [(MeOPhSe)2], a synthetic organic selenium (organochalcogen) compound, were investigated on virulence factors of C. krusei and compared with its antifungal effects on the virulence factors related to adhesion to cervical epithelial cell surfaces with C. albicans. RESULTS: (MeOPhSe)2, a compound non-toxic in epithelial (HeLa) and fibroblastic (Vero) cells, inhibited the growth in a dose-dependent manner and changed the kinetics parameters of C. krusei and, most importantly, extending the duration of lag phase of growth, inhibiting biofilm formation, and changing the structure of biofilm. Also, (MeOPhSe)2 reduced C. albicans and C. krusei adherence to cervical epithelial cells, an important factor for the early stage of the Candida-host interaction. The reduction was 37.24 ± 2.7 % in C. krusei (p = 0.00153) and 32.84 ± 3.2 % in C. albicans (p = 0.0072) at 20 µM (MeOPhSe)2, and the effect is in a concentration-dependent manner. Surprisingly, the antifungal potential on adhesion was similar between both species, indicating the potential of (MeOPhSe)2 as a promising antifungal drug against different Candida infections. CONCLUSION: Overall, we demonstrated the potential of (MeOPhSe)2 as an effective antifungal drug against the virulence factors of Candida species.


Antifungal Agents , Selenium , Antifungal Agents/chemistry , Antifungal Agents/pharmacology , Benzene Derivatives , Biofilms , Candida , Candida albicans , Epithelial Cells , Microbial Sensitivity Tests , Organoselenium Compounds , Pichia , Selenium/metabolism , Selenium/pharmacology , Virulence Factors/metabolism , Virulence Factors/pharmacology
13.
Curr Neuropharmacol ; 20(6): 1046-1072, 2022.
Article En | MEDLINE | ID: mdl-34781871

BACKGORUND: Oxidative stress is one of the main contributing factors involved in cerebral biochemical impairment. The higher susceptibility of the central nervous system to reactive oxygen species mediated damage could be attributed to several factors. For example, neurons use a greater quantity of oxygen, many parts of the brain have higher concentraton of iron, and neuronal mitochondria produce huge content of hydrogen peroxide. In addition, neuronal membranes have polyunsaturated fatty acids, which are predominantly vulnerable to oxidative stress (OS). OS is the imbalance between reactive oxygen species generation and cellular antioxidant potential. This may lead to various pathological conditions and diseases, especially neurodegenerative diseases such as, Parkinson's, Alzheimer's, and Huntington's diseases. OBJECTIVES: In this study, we explored the involvement of OS in neurodegenerative diseases. METHODS: We used different search terms like "oxidative stress and neurological disorders" "free radicals and neurodegenerative disorders" "oxidative stress, free radicals, and neurological disorders" and "association of oxidative stress with the name of disorders taken from the list of neurological disorders. We tried to summarize the source, biological effects, and physiologic functions of ROS. RESULTS: Finally, it was noted that more than 190 neurological disorders are associated with oxidative stress. CONCLUSION: More elaborated studies in the future will certainly help in understanding the exact mechanism involved in neurological diseases and provide insight into revelation of therapeutic targets.


Neurodegenerative Diseases , Oxidative Stress , Antioxidants/pharmacology , Free Radicals/pharmacology , Free Radicals/therapeutic use , Humans , Neurodegenerative Diseases/drug therapy , Reactive Oxygen Species
14.
Molecules ; 26(21)2021 Nov 06.
Article En | MEDLINE | ID: mdl-34771137

In this study, the interactions of ESIPT fluorescent lipophile-based benzazoles with bovine serum albumin (BSA) were studied and their binding affinity was evaluated. In phosphate-buffered saline (PBS) solution these compounds produce absorption maxima in the UV region and a main fluorescence emission with a large Stokes shift in the blue-green regions due to a proton transfer process in the excited state. The interactions of the benzazoles with BSA were studied using UV-Vis absorption and steady-state fluorescence spectroscopy. The observed spectral quenching of BSA indicates that these compounds could bind to BSA through a strong binding affinity afforded by a static quenching mechanism (Kq~1012 L·mol-1·s-1). The docking simulations indicate that compounds 13 and 16 bind closely to Trp134 in domain I, adopting similar binding poses and interactions. On the other hand, compounds 12, 14, 15, and 17 were bound between domains I and III and did not directly interact with Trp134.


Benzothiazoles/chemistry , Lipids/chemistry , Serum Albumin, Bovine/chemistry , Animals , Cattle , Fluorescence , Molecular Structure , Spectrometry, Fluorescence , Spectrophotometry, Ultraviolet
15.
Biofouling ; 37(2): 235-245, 2021 02.
Article En | MEDLINE | ID: mdl-33715534

Adhesion capacity on biological surfaces and biofilm formation is considered an important step in the infection process by Candida albicans. The ability of (PhSe)2 and (pCl-PhSe)2, two synthetic organic selenium (organochalcogen) compounds, to act on C. albicans virulence factors related to adhesion to human endocervical (HeLa) cell surfaces and their anti-biofilm activities was analyzed. Both organochalcogen compounds inhibited C. albicans adhesion to HeLa cells, dependent on compound concentrations. (PhSe)2 (at 20 µM; p = 0.0012) was significantly more effective than (pCl-PhSe)2 (at 20 µM; p = 0.0183) compared with the control. (PhSe)2 inhibited biofilm formation and decreased biofilm viability in both early and mature biofilms more efficiently than (pCl-PhSe)2. Overall, the organochalcogen compounds, especially (PhSe)2, were demonstrated to be effective antifungal drugs against C. albicans virulence factors related to epithelial cell surface adhesion and the formation and viability of biofilms.


Biofilms , Candida albicans , Antifungal Agents , HeLa Cells , Humans
16.
CNS Neurol Disord Drug Targets ; 20(7): 574-593, 2021.
Article En | MEDLINE | ID: mdl-33602110

BACKGROUND: The objective of the present review is to perform the 1st bibliometric analysis of sleep disorders research. METHODS: The data was retrieved from Scopus in July 2020 for detailed analysis. RESULTS: The 1st precise document about the sleep disorder was published in 1945. Till 15th July 2020, a total of 69657 documents were found in the Scopus database. Approximately eighty-two percent (57013/81.87%) of documents are published in the last twenty years (from 2001-2020). We calculated the per-year Growth Rate (GR) of publications (from 2000-onwards). The highest number of documents are published in 2019 (4337/7.90% of 57013) followed by 2018 (4249/7.74% of 57013) and 2017 (3974/7.24% of 57013). The productivity index (PI) for 1950-1960 and 2011-2020 era was found to be 100.21. We also provided the details of the top 50 countries with the maximum number of publications (from 1945 to July 2020). The top three (3) countries are the USA, with 24262 publications (34.83%), followed by UK (5566/8.0%) and Germany (4791/6.87%). We also performed the co-words analysis. Total 956643 (0.95 million) keywords were retrieved from 69657 published documents. After a critical analysis, we categorized them into different groups to show the trend in various domains. In the next phase of the study, only those documents were analyzed, which contained the phrase "sleep disorder" in the titles of the publications. Total 3626 documents were found. We calculated the per-year growth rate (GR). The continental distribution, the list of top twenty authors, sources/journals, departments or institutes, countries and research documents with highest citations are provided. By VOS viewer analysis, 6752, 36511 and 11473 terms in titles of the manuscripts, abstracts, and keywords were recorded, respectively. This may help in describing the overall trend in these publications. CONCLUSIONS: The present study provides a detailed list of top authors, departments, countries, sources, and top 20 most cited documents. The co-words analysis may help in describing the trends in the field of sleep disorders.


Bibliometrics , Sleep Wake Disorders , Databases, Factual , Humans
17.
Neurochem Res ; 46(1): 120-130, 2021 Jan.
Article En | MEDLINE | ID: mdl-32285377

Most pharmacological studies concerning the beneficial effects of organoselenium compounds have focused on their ability to mimic glutathione peroxidase (GPx). However, mechanisms other than GPx-like activity might be involved on their biological effects. This study was aimed to investigate and compare the protective effects of two well known [(PhSe)2 and PhSeZnCl] and two newly developed (MRK Picolyl and MRK Ester) organoselenium compounds against oxidative challenge in cultured neuronal HT22 cells. The thiol peroxidase and oxidase activities were performed using the glutathione reductase (GR)-coupled assay. In order to evaluate protective effects of the organoselenium compounds against oxidative challenge in neuronal HT22 cells, experiments based on glutamate-induced oxytosis and SIN-1-mediated peroxynitrite generation were performed. The thiol peroxidase activities of the studied organoselenium compounds were smaller than bovine erythrocytes GPx enzyme. Besides, (PhSe)2 and PhSeZnCl showed higher thiol peroxidase and lower thiol oxidase activities compared to the new compounds. MRK Picolyl and MRK Ester, which showed lower thiol peroxidase activity, showed higher thiol oxidase activity. Both pre- or co-treatment with (PhSe)2, PhSeZnCl, MRK Picolyl and MRK Ester protected HT22 cells against glutamate-induced cytotoxicity. (PhSe)2 and MRK Picolyl significantly prevented peroxinitrite-induced dihydrorhodamine oxidation, but this effect was observed only when HT22 were pre-treated with these compounds. The treatment with (PhSe)2 increased the protein expression of antioxidant defences (Prx3, CAT and GCLC) in HT22 cells. Taking together, our results suggest that the biological effects elicited by these compounds are not directly related to their GPx-mimetic and thiol oxidase activities, but might be linked to the up-regulation of endogenous antioxidant defences trough their thiol-modifier effects.


Antioxidants/pharmacology , Neurons/drug effects , Organoselenium Compounds/pharmacology , Oxidative Stress/drug effects , Animals , Catalase/metabolism , Cattle , Cell Line , Glutamate-Cysteine Ligase/metabolism , Glutathione Peroxidase/metabolism , Homeodomain Proteins/metabolism , Mice
18.
Curr Drug Metab ; 21(9): 685-703, 2020.
Article En | MEDLINE | ID: mdl-32851957

BACKGROUND: Scopus is regularly covering Current Drug Metabolism from 2000 onwards. OBJECTIVE: The major objective is to perform the 1st bibliometric analysis of Current Drug Metabolism (CDM). METHODS: The data was retrieved from Scopus in April-May 2020 for detail analysis. RESULTS: The total number of publications was found to be 1551, with 955 reviews (61.57%) and 466 articles (30.05%). From 2000 onwards, we calculated the relative growth rate and doubling time. Based on the number of publications, total 4418 authors, 3235 institutions and 83 countries were directly involved in all publications. M.A. Kamal is the highly productive scientist with fifty-three (53 or 3.73%) publications, King Abdulaziz University is the top university with the highest number of publications (58 or 4.13%) and the USA is the top-ranked country with 365 publications (25.96%). We also provided the h-index, total citations (TC), h-index without self-citations (WSC) and total WSC of the top ten authors, universities and countries. In citations analysis, Prof. Zhou S.F. was the top scientist with the highest (1594) number of citations. In institutional category Department of Drug Metabolism, Merck Research Laboratories, Rahway, United States, is the top ranked institutes with 654 total citations. While, United States is the top-ranked country with 18409 total citations. In co-words analysis, 3387, 30564 and 17333 terms in titles of the manuscripts, abstracts and keywords were recorded, respectively. This indicated that CDM principally focused on understanding drug development ranging from its efficacy to delivery, metabolism, distribution, safety and mechanism of actions. Similarly, various specific drugs were thoroughly discussed in publications. Various enzymatic, genetics, proteins and cancer-related aspects were also described. For data presentations, we used VOSviewer graphical maps. CONCLUSION: The data confirm that CDM showed continuous growth in the number of publications and citations. However significant measures are needed to make overall progress and improve the rankings in relevant categories.


Periodicals as Topic/history , Bibliometrics , History, 21st Century , Pharmaceutical Preparations/metabolism
19.
Neurotox Res ; 38(3): 603-610, 2020 Oct.
Article En | MEDLINE | ID: mdl-32651842

Chlorpyrifos (CPF) is a neurotoxic organophosphorus (OP) insecticide widely used for agricultural purposes. CPF-mediated neurotoxicity is mainly associated with its anticholinesterase activity, which may lead to a cholinergic syndrome. CPF metabolism generates chlorpyrifos-oxon (CPF-O), which possesses higher anticholinesterase activity and, consequently, plays a major role in the cholinergic syndrome observed after CPF poisoning. Recent lines of evidence have also reported non-cholinergic endpoints of CPF- and CPF-O-induced neurotoxicities, but comparisons on the non-cholinergic toxic properties of CPF and CPF-O are lacking. In this study, we compared the non-cholinergic toxicities displayed by CPF and CPF-O in cultured neuronal cells, with a particular emphasis on their pro-oxidant properties. Using immortalized cells derived from mouse hippocampus (HT22 line, which does present detectable acetylcholinesterase activity), we observed that CPF-O was 5-fold more potent in decreasing cell viability compared with CPF. Atropine, a muscarinic acetylcholine receptor antagonist, protected against acetylcholine (ACh)-induced toxicity but failed to prevent the CPF- and CPF-O-induced cytotoxicities in HT22 cells. CPF or CPF-O exposures significantly decreased the levels of the antioxidant glutathione (GSH); this event preceded the significant decrease in cell viability. Pretreatment with N-acetylcysteine (NAC, a GSH precursor) protected against the cytotoxicity induced by both CPF and CPF-O. The present study indicates that GSH depletion is a non-cholinergic event involved in CPF and CPF-O toxicities. The study also shows that in addition of being a more potent AChE inhibitor, CPF-O is also a more potent pro-oxidant molecule when compared with CPF, highlighting the role of CPF metabolism (bioactivation to CPF-O) in the ensuing non-cholinergic toxicity.


Chlorpyrifos/analogs & derivatives , Glutathione/pharmacology , Neurons/drug effects , Neurotoxicity Syndromes/drug therapy , Acetylcholine/pharmacology , Acetylcholinesterase/metabolism , Animals , Atropine/pharmacology , Cell Survival/drug effects , Chlorpyrifos/pharmacology , Cholinesterase Inhibitors/pharmacology , Glutathione/metabolism
20.
Naunyn Schmiedebergs Arch Pharmacol ; 393(12): 2439-2452, 2020 12.
Article En | MEDLINE | ID: mdl-32725283

This study evaluated the effect of (+)-catechin, a polyphenolic compound, on orofacial dyskinesia (OD) induced by reserpine in mice. The potential modulation of monoaminoxidase (MAO) activity, tyrosine hydroxylase (TH) and glutamic acid decarboxylase (GAD67) immunoreactivity by catechin were used as biochemical endpoints. The interaction of catechin with MAO-A and MAO-B was determined in vitro and in silico. The effects of catechin on OD induced by reserpine (1 mg/kg for 4 days, subcutaneously) in male Swiss mice were examined. After, catechin (10, 50 or 100 mg/kg, intraperitoneally) or its vehicle were given for another 20 days. On the 6th, 8th, 15th and 26th day, vacuous chewing movements (VCMs) and locomotor activity were quantified. Biochemical markers (MAO activity, TH and GAD67 immunoreactivity) were evaluated in brain structures. In vitro, catechin inhibited both MAO isoforms at concentrations of 0.34 and 1.03 mM being completely reversible for MAO-A and partially reversible for MAO-B. Molecular docking indicated that the catechin bound in the active site of MAO-A, while in the MAO-B it interacted with the surface of the enzyme in an allosteric site. In vivo, reserpine increased the VCMs and decreased the locomotor activity. Catechin (10 mg/kg), decreased the number of VCMs in the 8th day in mice pre-treated with reserpine without altering other behavioral response. Ex vivo, the MAO activity and TH and GAD67 immunoreactivity were not altered by the treatments. Catechin demonstrated a modest and transitory protective effect in a model of OD in mice.


Catechin/therapeutic use , Dyskinesias/drug therapy , Dyskinesias/metabolism , Mastication/drug effects , Motor Activity/drug effects , Reserpine/toxicity , Animals , Antipsychotic Agents/toxicity , Catechin/pharmacology , Dose-Response Relationship, Drug , Male , Mastication/physiology , Mice , Molecular Docking Simulation/methods , Monoamine Oxidase Inhibitors/pharmacology , Monoamine Oxidase Inhibitors/therapeutic use , Motor Activity/physiology , Protein Structure, Secondary , Treatment Outcome
...