Solid index versus intraoral scanners in the full-arch implant impression: in vitro trueness evaluation
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01.12.2020 |
Mangano F.G.
Bonacina M.
Mandelli F.
Marchiori F.
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BMC Research Notes |
10.1186/s13104-020-05353-2 |
0 |
Ссылка
© 2020, The Author(s). Objectives: To assess the trueness of a solid index (SI) in the full-arch (FA) implant impression, and to compare it with that of two intraoral scanners (IOSs). A type-IV gypsum model of a completely edentulous patient with 8 implant scanbodies (SBs) was scanned with a desktop scanner (7Series®) to obtain a reference virtual model (RVM), and with two IOSs (CS 3700® and Emerald S®). Five scans were taken with each IOS. Based on the RVM, an SI (custom tray consisting of hollow cylinders connected by a bar) was fabricated and used to capture a physical impression of the model; from this, a second gypsum model was derived and scanned with a desktop scanner (D15®). The SI-derived and the IOSs-derived models were superimposed onto the RVM, to evaluate trueness. Results: The overall mean trueness was 29 μm (± 26) for the SI-derived model, versus 42.4 μm (± 14.7) for CS 3700® and 52.2 μm (± 4.6) for Emerald S®. Despite its limitations (in vitro design, a limited number of models evaluated, RVM captured with a desktop scanner) this study supports the use of SI for FA implant impressions. Further studies are needed to confirm this evidence.
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Determination of the immunostimulatory drug—glucosoaminyl-muramyl-dipeptide—in human plasma using HPLC–MS/MS and its application to a pharmacokinetic study
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01.12.2020 |
Moskaleva N.E.
Markin P.A.
Kuznetsov R.M.
Andronova T.M.
Appolonova S.A.
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Biomedical Chromatography |
10.1002/bmc.4948 |
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© 2020 John Wiley & Sons, Ltd. GMDP (glucosoaminyl-muramyl-dipeptide), a synthetic analog of the peptidoglycan fragment of the bacterial cell wall, is an active component of the immunomodulatory drug Licopid. But the pharmacokinetic parameters of GMDP in humans after oral administration have not been investigated yet. The present study aimed at developing and validating a sensitive LC–MS/MS method for the analysis of GMDP in human plasma. The sample was prepared by solid-phase extraction using Strata-X 33 μm polymeric reversed-phase 60 mg/3 mL cartridges Phenomenex (Torrance, CA, USA). The analytes were separated using an Acquity UPLC BEN C18 column, 1.7 μm 2.1 × 50 mm Waters (Milford, USA). GMDP and internal standard growth hormone releasing peptide-2 (pralmorelin) were ionized in positive electrospray ionization mode and detected in multiple reaction monitoring mode. The developed method was validated within a linear range of 50–3000 pg/mL for GMDP. Accuracy for all analytes, given as the deviation between the nominal and measured concentration and assay variability, ranged from 1.61 to 3.02% and from 0.89 to 1.79%, respectively, for both within- and between-run variabilities. The developed and validated HPLC–MS/MS method was successfully used to obtain the plasma pharmacokinetic profiles of GMDP distribution in human plasma.
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Parkinson's disease and pesticides: Are microRNAs the missing link?
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20.11.2020 |
Aloizou A.M.
Siokas V.
Sapouni E.M.
Sita N.
Liampas I.
Brotis A.G.
Rakitskii V.N.
Burykina T.I.
Aschner M.
Bogdanos D.P.
Tsatsakis A.
Hadjigeorgiou G.M.
Dardiotis E.
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Science of the Total Environment |
10.1016/j.scitotenv.2020.140591 |
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© 2020 Elsevier B.V. Parkinson's disease (PD) is a common neurodegenerative disorder that leads to significant morbidity and decline in the quality of life. It develops due to loss of dopaminergic neurons in the substantia nigra pars compacta, and among its pathogenic factors oxidative stress plays a critical role in disease progression. Pesticides are a broad class of chemicals widely used in agriculture and households for the protection of crops from insects and fungi. Several of them have been incriminated as risk factors for PD, but the underlying mechanisms have yet to be fully understood. MicroRNAs (miRNAs) are small, non-coding RNA molecules that play an important role in regulating mRNA translation and protein synthesis. miRNA levels have been shown to be affected in several diseases as well. Since the studies on the association between pesticides and PD have yet to reach definitive conclusions, here we review recent evidence on deregulated microRNAs upon pesticide exposure, and attempt to find an overlap between miRNAs deregulated in PD and pesticides, as a missing link between the two, and enhance future research in this direction.
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Immunosuppressive therapy of biopsy proved immune-mediated lymphocytic myocarditis in the virus-negative and virus-positive patients.
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01.11.2020 |
Blagova O.
Nedostup A.
Kogan E.
Zaitsev A.
Fomin V.
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Cardiovascular Pathology |
10.1016/j.carpath.2020.107260 |
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© 2020 Purpose: to study the effect of immunosupressive therapy (IST) in the virus-negative and virus-positive patients with immune-mediated myocarditis. Methods: in 60 patients (45 male, 46.7 ± 11.8 years, mean LV EDD, 6.7 ± 0.7 cm, EF 26.2 ± 9.1%) active/borderline myocarditis was verified by endomyocardial biopsy (n = 38), intraoperative biopsy (n = 10), examination of explanted heart (n = 3) and autopsy (n = 9). Indications for IST determined based on histological, immune activity. The follow-up was 19.0 [7.25; 40.25] months. Results: The viral genome in the myocardium was detected in 32 patients (V+ group), incl. parvovirus B19 in 23. The anti-heart antibody level was equally high in the V+ and V- patients. Antiviral therapy was administered in 24 patients. IST (in 22 V+ and 24 V- patients) include steroids (n = 40), hydroxychloroquine (n = 20), azathioprine (n = 21). The significant decrease of LV EDD (6.7 ± 0.7 to 6.4 ± 0.8), PAP (48.9 ± 15.5 to 39.4 ± 11.5 mm Hg, р<0,01), increase of EF (26.5 ± 0.9 to 36.0 ± 10.8), and lower lethality (23.9% and 64.3%; RR 0.37, 95% CI 0.19–0.71), p<0.01, were found only in IST group. Significant improvement due to IST were achieved not only in V-, but also in V+ patients. Conclusions: IST in patients with immune-mediated lymphocytic myocarditis is effective and is associated with lower lethality both in virus-negative and virus-positive patients.
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New automatic method for generating atomistic models of multi-branched and arbitrary-shaped seamless junctions of carbon nanostructures
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01.11.2020 |
Zhang G.
Glukhova O.E.
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Computational Materials Science |
10.1016/j.commatsci.2020.109943 |
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© 2020 Elsevier B.V. This work proposes an original method for generating atomistic models of multi-branched and arbitrary-shaped seamless junctions of different nanostructures. Atomic frameworks of new hybrid systems with a wide variety of topological forms based on 1D and 2D structures can be obtained using this method. The topological diversity of generated hybrid systems is provided by the some features of the developed method. This method combines a triangulated nanomesh framework generation with a molecular dynamics (MD) method that allows us to generate dozens of topological configurations of the contact region of different objects. Energetically favorable junctions of carbon nanostructures, including Y- and X-shaped junctions of carbon nanotubes, a fullerene-nanotube junction, and a fullerene-graphene hybrid system are created using the developed original method.
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Effect of the stray field of Fe/Fe<inf>3</inf>O<inf>4</inf> nanoparticles on the surface of the CoFeB thin films
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15.10.2020 |
Morgunov R.B.
Koplak O.V.
Allayarov R.S.
Kunitsyna E.I.
Mangin S.
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Applied Surface Science |
10.1016/j.apsusc.2020.146836 |
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© 2020 Elsevier B.V. Fe/Fe3O4 nanoparticles have been deposited on the surfaces of ultrathin CoFeB film and CoFeB/Ta/CoFeB hetero-structure to be detected due to the stray field generated by one particle or a cluster of particles. Exchange biased Fe/Fe3O4 core-shell nanoparticles have been used to stabilize the particles magnetization. Comparison between the Atomic Force and Magnetic Force Microscope images and subtraction of corresponding phase contrasts allows visualization of the film magnetization affected by the particles. Spectra of Ferromagnetic Resonance of the ultrathin films with deposited particles allow one to estimate particle/film dipolar interaction. The results will be useful for the development of lab-on-chip sensors of magnetically labeled cells. Estimation of particles number by magnetic response of the CoFeB heterostructure is demonstrated.
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Electronic coupling between molybdenum disulfide and gold nanoparticles to enhance the peroxidase activity for the colorimetric immunoassays of hydrogen peroxide and cancer cells
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15.10.2020 |
Sun H.
Gao Y.
Hu N.
Zhang Y.
Guo C.
Gao G.
Ma Z.
Ivan Ivanovich K.
Qiu Y.
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Journal of Colloid and Interface Science |
10.1016/j.jcis.2020.06.001 |
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© 2020 Elsevier Inc. Peroxidase nanoenzymes exhibit a specific affinity toward substrates, thereby demonstrating application potential for realizing the colorimetric immunoassays of hydrogen peroxide (H2O2), which can be further used as a probe for imaging cancer cells. To enhance the intrinsic peroxidase activity of molybdenum sulfide (MoS2) nanomaterials, gold (Au) nanoparticles with an average diameter of approximately 2.1 nm were modified on a MoS2/carbon surface (denoted as MoS2/C-Au600) via ascorbic acid reduction. MoS2/C-Au600 can oxidize 3,3′,5,5′-tetramethylbenzidine (TMB) to generate a blue oxidation product in the presence of H2O2; this product exhibits peroxidase-like activities, superior to those of most existing MoS2-based nanoenzymes. Furthermore, MoS2/C-Au600 exhibits a high detection capability for H2O2 in the range of 1 × 10−5 to 2 × 10−4 mol/L (R2 = 0.99), and the lowest detection limit is 1.82 µmol/L in a sodium acetate and acetic acid buffer solution. Steady state kinetics studies indicate that the catalytic mechanism is consistent with the ping-pong mechanism. Given its strong absorption peak at 652 nm in the visible region, MoS2/C-Au600 can be used to image cancer cells due to the enhanced permeability and retention effect. Our findings demonstrate that the synergistic electronic coupling between multiple components can enhance the peroxidase activity, which can facilitate the development of an effective, facile, and reliable method to perform colorimetric immunoassays of H2O2 and cancer cells.
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Epithelial-to-mesenchymal transition as the driver of changing carcinoma and glioblastoma microenvironment
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01.10.2020 |
Majc B.
Sever T.
Zarić M.
Breznik B.
Turk B.
Lah T.T.
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Biochimica et Biophysica Acta - Molecular Cell Research |
10.1016/j.bbamcr.2020.118782 |
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© 2020 Epithelial-to-mesenchymal transition (EMT) is an essential molecular and cellular process that is part of normal embryogenesis and wound healing, and also has a ubiquitous role in various types of carcinoma and glioblastoma. EMT is activated and regulated by specific microenvironmental endogenous triggers and a complex network of signalling pathways. These mostly include epigenetic events that affect protein translation-controlling factors and proteases, altogether orchestrated by the switching on and off of oncogenes and tumour-suppressor genes in cancer cells. The hallmark of cancer-linked EMT is that the process is incomplete, as it is opposed by the reverse process of mesenchymal-to-epithelial transition, which results in a hybrid epithelial/mesenchymal phenotype that shows notable cell plasticity. This is a characteristic of cancer stem cells (CSCs), and it is of the utmost importance in their niche microenvironment, where it governs CSC migratory and invasive properties, thereby creating metastatic CSCs. These cells have high resistance to therapeutic treatments, in particular in glioblastoma.
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Impact of robotic learning curve on histopathology in rectal cancer: A pooled analysis
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01.09.2020 |
Gachabayov M.
Kim S.H.
Jimenez-Rodriguez R.
Kuo L.J.
Cianchi F.
Tulina I.
Tsarkov P.
Bergamaschi R.
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Surgical Oncology |
10.1016/j.suronc.2020.04.011 |
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© 2020 Elsevier Ltd Background: A beneficial impact of robotic proctectomy on circumferential resection margin (CRM) is expected due to the robot's articulating instruments in the pelvis. There are however concerns about a negative impact on the quality of total mesorectal excision (TME) due to the lack of tactile feedback. The aim of this study was to assess whether surgeons' learning curve impacted CRM and TME quality. Methods: In a multicenter study, individual patient data of robotic proctectomy for resectable rectal cancer were pooled. Patients were stratified into two phases of surgeons’ learning curve. Cumulative sum (CUSUM) analysis was used to determine the transition from learning phase (LP) to plateau phase (PP), which were compared. CRM was microscopically measured in mm by pathologists. TME quality was classified by pathologists as complete, nearly complete or incomplete. T-test and Chi-squared tests were used to compare continuous and categorical variables, respectively. Results: 235 patients underwent robotic proctectomy by five surgeons. 83 LP patients were comparable to 152 PP patients for age (p = 0.20), gender (67.5% vs. 65.1% males; p = 0.72), BMI (p = 0.82), cancer stage (p = 0.36), neoadjuvant chemoradiation (p = 0.13), distance of tumor from anal verge (5.8 ± 4.4 vs. 5.5 ± 3.3; p = 0.56). CRM did not differ (7.7 ± 11.4 mm vs. 8.4 ± 10.3 mm; p = 0.62). The rate of complete TME quality was significantly improved in PP patients as compared to LP patients (73.5% vs. 92.1%; p < 0.001). Conclusion: While learning had no impact on circumferential resection margins, the quality of TME significantly improved during surgeons’ plateau phase as compared to their learning phase.
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Tricalcium phosphate cement supplemented with boron nitride nanotubes with enhanced biological properties
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01.09.2020 |
Rau J.V.
Fosca M.
Fadeeva I.V.
Kalay S.
Culha M.
Raucci M.G.
Fasolino I.
Ambrosio L.
Antoniac I.V.
Uskoković V.
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Materials Science and Engineering C |
10.1016/j.msec.2020.111044 |
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© 2020 Elsevier B.V. A self-setting bone cement containing β-tricalcium phosphate (TCP) supplemented with boron nitride nanotubes (BNNTs, 1 wt%) was synthesized and analyzed in situ for its kinetics of hardening and selected physicochemical and biological properties. Moderately delayed due to the presence of BNNTs, the hardening reaction involved the transformation of the TCP precursor to the dicalcium phosphate (DCPD) product. In spite of the short-lived chemical transformations in the cement upon its hardening, the structural changes in it were extended. As a result, the compressive strength increased from day 1 to day 7 of the hardening reaction and the presence of BNNTs further increased it by ~25%. Fitting of the time-resolved energy-dispersive diffractometric data to the Johnson-Mehl-Avrami-Kolmogorov crystallization kinetics model conformed to the one-dimensional nucleation at a variable rate during the growth of elongated DCPD crystals from round TCP grains. For the first seven days of growth of human mesenchymal stem cells (hMSCs) on the cement, no difference in their proliferation was observed compared to the control. However, between the 7th and the 21st day, the cell proliferation decreased compared to the control because of the ongoing stem cell differentiation toward the osteoblast phenotype. This differentiation was accompanied by the higher expression of alkaline phosphatase, an early marker of hMSC differentiation into a pre-osteoblast phenotype. The TCP cement supplemented with BNNTs was able to thwart the production of reactive oxygen species (ROS) in hMSCs treated with H2O2/Fe2+ and bring the ROS levels down to the concentrations detected in the control cells, indicating the good capability of the material to protect the cells against the ROS-associated damage. Simultaneously, the cement increased the expression of mediators of inflammation in a co-culture of osteoblasts and macrophages, thus attesting to the direct reciprocity between the degrees of inflammation and stimulated new bone production.
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Focused magnetization in sharpened rare-earth microwires with four switchable magnetic states
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15.08.2020 |
Morgunov R.
Koplak O.
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Materials Letters |
10.1016/j.matlet.2020.127954 |
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© 2020 Elsevier B.V. New class of microwires based on rare-earth PrDyFeCoB alloy is developed. Chemical technique of the microwire tip designing is proposed. The α-Fe core microwire covered with amorphous shell provides stepwise switching between four magnetic states in external homogeneous magnetic field. Focusing of the stray field in the microwire tip was visualized. Bias field ~20 Oe, high saturation magnetization and attraction force up to 2000 pN, large field gradient and techniques of chemical sharpening provide novelty and significance of the obtained results.
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Changes of nNOS expression in the tuberal hypothalamic nuclei during ageing
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01.08.2020 |
Moiseev K.Y.
Vishnyakova P.A.
Porseva V.V.
Masliukov A.P.
Spirichev A.A.
Emanuilov A.I.
Masliukov P.M.
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Nitric Oxide - Biology and Chemistry |
10.1016/j.niox.2020.04.002 |
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© 2020 Elsevier Inc. The hypothalamus is the most important integrator of autonomic and endocrine regulation in the body and it also has a fundamental role in ageing development and lifespan control. In order to better understand the role of NO-ergic system in the hypothalamic regulation of ageing, the purpose of this study was to investigate the expression of neuronal nitric oxide synthase (nNOS) in the arcuate (ARC), ventromedial (VMH) and dorsomedial (DMH) hypothalamic nuclei in young (2-3-month-old) and old (24-month-old) male and female rats using immunohistochemistry and western blot analysis. In young animals, only single nNOS-immunoreactive (IR) neurons were detected in ARC, and nNOS-IR neurons were found in the VMH (19 ± 3.2% in females and 14.5 ± 2.6% in males) and DMH (17 ± 4.0% in females and 21 ± 2.8% in males). In aged animals, the number of nNOS-IR neurons increased in all studied nuclei, including ARC (36 ± 3.1% in females and 33.5 ± 3.7% in males), VMH (83 ± 4.3% in females and 58 ± 2.1% in males) and DMH (57 ± 1.9% in females and 54 ± 1.8% in males). The expression of nNOS also significantly increased in the ARC, VMH and DMH during ageing by western blot analysis. In conclusion, ageing is accompanied by increasing of nNOS expression in the hypothalamus and this process is related to regions involved in the control of feeding behavior.
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Diagnosis of central disorders of hypersomnolence: A reappraisal by European experts
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01.08.2020 |
Lammers G.J.
Bassetti C.L.A.
Dolenc-Groselj L.
Jennum P.J.
Kallweit U.
Khatami R.
Lecendreux M.
Manconi M.
Mayer G.
Partinen M.
Plazzi G.
Reading P.J.
Santamaria J.
Sonka K.
Dauvilliers Y.
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Sleep Medicine Reviews |
10.1016/j.smrv.2020.101306 |
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Ссылка
© 2020 The Author(s) The aim of this European initiative is to facilitate a structured discussion to improve the next edition of the International Classification of Sleep Disorders (ICSD), particularly the chapter on central disorders of hypersomnolence. The ultimate goal for a sleep disorders classification is to be based on the underlying neurobiological causes of the disorders with clear implication for treatment or, ideally, prevention and or healing. The current ICSD classification, published in 2014, inevitably has important shortcomings, largely reflecting the lack of knowledge about the precise neurobiological mechanisms underlying the majority of sleep disorders we currently delineate. Despite a clear rationale for the present structure, there remain important limitations that make it difficult to apply in routine clinical practice. Moreover, there are indications that the current structure may even prevent us from gaining relevant new knowledge to better understand certain sleep disorders and their neurobiological causes. We suggest the creation of a new consistent, complaint driven, hierarchical classification for central disorders of hypersomnolence; containing levels of certainty, and giving diagnostic tests, particularly the MSLT, a weighting based on its specificity and sensitivity in the diagnostic context. We propose and define three diagnostic categories (with levels of certainty): 1/“Narcolepsy” 2/“Idiopathic hypersomnia”, 3/“Idiopathic excessive sleepiness” (with subtypes).
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Diagnosis of central disorders of hypersomnolence: A reappraisal by European experts
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01.08.2020 |
Lammers G.J.
Bassetti C.L.A.
Dolenc-Groselj L.
Jennum P.J.
Kallweit U.
Khatami R.
Lecendreux M.
Manconi M.
Mayer G.
Partinen M.
Plazzi G.
Reading P.J.
Santamaria J.
Sonka K.
Dauvilliers Y.
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Sleep Medicine Reviews |
10.1016/j.smrv.2020.101306 |
0 |
Ссылка
© 2020 The Author(s) The aim of this European initiative is to facilitate a structured discussion to improve the next edition of the International Classification of Sleep Disorders (ICSD), particularly the chapter on central disorders of hypersomnolence. The ultimate goal for a sleep disorders classification is to be based on the underlying neurobiological causes of the disorders with clear implication for treatment or, ideally, prevention and or healing. The current ICSD classification, published in 2014, inevitably has important shortcomings, largely reflecting the lack of knowledge about the precise neurobiological mechanisms underlying the majority of sleep disorders we currently delineate. Despite a clear rationale for the present structure, there remain important limitations that make it difficult to apply in routine clinical practice. Moreover, there are indications that the current structure may even prevent us from gaining relevant new knowledge to better understand certain sleep disorders and their neurobiological causes. We suggest the creation of a new consistent, complaint driven, hierarchical classification for central disorders of hypersomnolence; containing levels of certainty, and giving diagnostic tests, particularly the MSLT, a weighting based on its specificity and sensitivity in the diagnostic context. We propose and define three diagnostic categories (with levels of certainty): 1/“Narcolepsy” 2/“Idiopathic hypersomnia”, 3/“Idiopathic excessive sleepiness” (with subtypes).
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Relationship between the plasma acylcarnitine profile and cardiometabolic risk factors in adults diagnosed with cardiovascular diseases
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01.08.2020 |
Kukharenko A.
Brito A.
Kozhevnikova M.V.
Moskaleva N.
Markin P.A.
Bochkareva N.
Korobkova E.O.
Belenkov Y.N.
Privalova E.V.
Larcova E.V.
Ariani A.
La Frano M.R.
Appolonova S.A.
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Clinica Chimica Acta |
10.1016/j.cca.2020.04.035 |
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© 2020 Elsevier B.V. The development of cardiovascular diseases (CVDs) is often asymptomatic. Identification of initial indicators of cardiometabolic disruption may assist in its early detection. The objective was to determine the relationships between plasma acylcarnitines (ACs) and cardiometabolic risk factors in adults with and without CVDs. The AC profile in human plasma of healthy controls [non-CVD group, n = 13)] and individuals diagnosed with CVDs (CVD group, n = 34) were compared. A targeted analysis of 29 ACs was performed using flow injection analysis-tandem mass spectrometry. There were significant direct correlations (p < 0.05) between ACs and cardiometabolic risk factors. Comparing the groups after adjustment for covariates, showed that the ACs that were best differentiated (p < 0.05) between the two groups and that presented “good” diagnostic accuracy were carnitine [30.7 (25.5–37.7) vs. 37.7 (32.3–45.0) µM], the short-chain ACs: acetylcarnitine [8.9 (7.4–10.2) vs. 11.9 (9.2–14.4) µM] and isovalerylcarnitine [0.10 (0.06–0.13) vs. 0.13 (0.10–0.16) µM], and the medium-chain ACs: hexanoylcarnitine [0.04 (0.03–0.05) vs. 0.06 (0.05–0.07) µM] and decenoylcarnitine [0.18 (0.12–0.22) vs. 0.22 (0.17–0.32) µM]. This assessment contributes to the identification of the unique metabolic features exhibited in association with cardiometabolic risk in adults diagnosed with CVD. The altered metabolites have the potential to be used as biomarkers for early detection of CVD.
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The exudative-constrictive tuberculosis pericarditis diagnosed by toracoscopic biopsy
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01.08.2020 |
Blagova O.V.
Alijeva I.N.
Nedostup A.V.
Senchihin P.V.
Parshin V.D.
Kogan E.A.
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Journal of Clinical Tuberculosis and Other Mycobacterial Diseases |
10.1016/j.jctube.2020.100165 |
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Ссылка
© 2020 The Authors Purpose: To present the problems and possibilities of diagnostic and treatment in a patient with resistant exudative-constrictive pericarditis. Methods: The male patient 31 y. was admitted to the clinic due to exudative pericarditis and arthritis of the left knee joint. His medical history periodic febrile fever with a cough, episodes of syncope and atrial fibrillation, treatment with antibiotics and corticosteroids with a temporary effect. Results: No data were received for systemic disease, hypothyroidism, tumors. With CT in both lungs, small areas of fibrosis and lymphadenopathy were identified. Pericardial sheets diffusely thickened. EchoCG shows one liter of pericardial fluid with fibrin. All tests for viruses and tuberculosis are negative. Thoracoscopy was performed. Morphological examination showed tuberculosis granulomas with caseous necrosis. The growth of mycobacteria of tuberculosis from sputum was obtained. Therapy included pyrazinamide, ethambutol, levofloxacin, prednisolone 20 mg / day. Ponce's disease regressed. Due to the increase of constriction, subtotal pericardectomy was performed. Conclusion: Tuberculosis is one of the real causes of pericarditis with massive effusion and an outcome in constriction. The negative results of all laboratory tests for tuberculosis do not exclude the diagnosis. It is necessary to use invasive morphological diagnosis, including thoracoscopic biopsy.
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The exudative-constrictive tuberculosis pericarditis diagnosed by toracoscopic biopsy
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01.08.2020 |
Blagova O.V.
Alijeva I.N.
Nedostup A.V.
Senchihin P.V.
Parshin V.D.
Kogan E.A.
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Journal of Clinical Tuberculosis and Other Mycobacterial Diseases |
10.1016/j.jctube.2020.100165 |
0 |
Ссылка
© 2020 The Authors Purpose: To present the problems and possibilities of diagnostic and treatment in a patient with resistant exudative-constrictive pericarditis. Methods: The male patient 31 y. was admitted to the clinic due to exudative pericarditis and arthritis of the left knee joint. His medical history periodic febrile fever with a cough, episodes of syncope and atrial fibrillation, treatment with antibiotics and corticosteroids with a temporary effect. Results: No data were received for systemic disease, hypothyroidism, tumors. With CT in both lungs, small areas of fibrosis and lymphadenopathy were identified. Pericardial sheets diffusely thickened. EchoCG shows one liter of pericardial fluid with fibrin. All tests for viruses and tuberculosis are negative. Thoracoscopy was performed. Morphological examination showed tuberculosis granulomas with caseous necrosis. The growth of mycobacteria of tuberculosis from sputum was obtained. Therapy included pyrazinamide, ethambutol, levofloxacin, prednisolone 20 mg / day. Ponce's disease regressed. Due to the increase of constriction, subtotal pericardectomy was performed. Conclusion: Tuberculosis is one of the real causes of pericarditis with massive effusion and an outcome in constriction. The negative results of all laboratory tests for tuberculosis do not exclude the diagnosis. It is necessary to use invasive morphological diagnosis, including thoracoscopic biopsy.
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Novel Cu(II), Ni(II), Zn(II), Cd(II), and Mg(II) complexes with a series of 2-arylhydrazono-1,3-dicarbonyl compounds. Synthesis, structure and spectroscopic characteristics
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01.07.2020 |
Kovalchukova O.V.
Anh V.T.N.
Utenyshev A.N.
Stash A.I.
Ryabov M.A.
Abbas A.T.R.A.
Voronkova V.K.
Bazan L.V.
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Polyhedron |
10.1016/j.poly.2020.114557 |
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© 2020 A series of novel metal complexes of Cu(II), Ni(II), Zn(II), Cd(II), and Mg(II) with four N-heterocyclic derivatives of 2-arylhydrazono-1,3-dicarbonyl compounds were isolated and identified by FT IR, 1H NMR, EPR, and UV–Vis spectroscopy. The crystallographic data for two organic ligands as well as Mg(II) and Ni(II) complexes were obtained. It was indicated that the organic species exist in the form of hydrazo-tautomers. The Ni complex is monomeric and is characterized by the tridentate coordination of the ligand through a deprotonated N-atom of the hydrazo-fragment and two neighboring O-atoms of the carbonyl and deprotonated hydroxy-groups. In the case of the Mg complex the polymeric structure is observed with the additional coordination through the sulfamide group of the organic specie. Formation constants of the complexes in ethanol aqueous solutions were calculated and correlated with some physical characteristics of the metal cations. Structures of yet unstudied metal complexes were proposed based on quantum-chemical modeling at the DFT/B3LYP level.
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Aquatic toxicity and mode of action of CdS and ZnS nanoparticles in four microalgae species
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01.07.2020 |
Pikula K.
Mintcheva N.
Kulinich S.A.
Zakharenko A.
Markina Z.
Chaika V.
Orlova T.
Mezhuev Y.
Kokkinakis E.
Tsatsakis A.
Golokhvast K.
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Environmental Research |
10.1016/j.envres.2020.109513 |
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© 2020 Elsevier Inc. This study reports the differences in toxic action between cadmium sulfide (CdS) and zinc sulfide (ZnS) nanoparticles (NPs) prepared by recently developed xanthate-mediated method. The aquatic toxicity of the synthesized NPs on four marine microalgae species was explored. Growth rate, esterase activity, membrane potential, and morphological changes of microalgae cells were evaluated using flow cytometry and optical microscopy. CdS and ZnS NPs demonstrated similar level of general toxicity and growth-rate inhibition to all used microalgae species, except the red algae P. purpureum. More specifically, CdS NPs caused higher inhibition of growth rate for C. muelleri and P. purpureum, while ZnS NPs were more toxic for A. ussuriensis and H. akashiwo species. Our findings suggest that the sensitivity of different microalgae species to CdS and ZnS NPs depends on the chemical composition of NPs and their ability to interact with the components of microalgal cell-wall. The red microalga was highly resistant to ZnS NPs most likely due to the presence of phycoerythrin proteins in the outer membrane bound Zn2+ cations defending their cells from further toxic influence. The treatment with CdS NPs caused morphological changes and biochemical disorder in all tested microalgae species. The toxicity of CdS NPs is based on their higher photoactivity under visible light irradiation and lower dissociation in water, which allows them to generate more reactive oxygen species and create a higher risk of oxidative stress to aquatic organisms. The results of this study contribute to our understanding of the parameters affecting the aquatic toxicity of semiconductor NPs and provide a basis for further investigations.
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Novel Cu(II), Ni(II), Zn(II), Cd(II), and Mg(II) complexes with a series of 2-arylhydrazono-1,3-dicarbonyl compounds. Synthesis, structure and spectroscopic characteristics
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01.07.2020 |
Kovalchukova O.V.
Anh V.T.N.
Utenyshev A.N.
Stash A.I.
Ryabov M.A.
Abbas A.T.R.A.
Voronkova V.K.
Bazan L.V.
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Polyhedron |
10.1016/j.poly.2020.114557 |
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© 2020 A series of novel metal complexes of Cu(II), Ni(II), Zn(II), Cd(II), and Mg(II) with four N-heterocyclic derivatives of 2-arylhydrazono-1,3-dicarbonyl compounds were isolated and identified by FT IR, 1H NMR, EPR, and UV–Vis spectroscopy. The crystallographic data for two organic ligands as well as Mg(II) and Ni(II) complexes were obtained. It was indicated that the organic species exist in the form of hydrazo-tautomers. The Ni complex is monomeric and is characterized by the tridentate coordination of the ligand through a deprotonated N-atom of the hydrazo-fragment and two neighboring O-atoms of the carbonyl and deprotonated hydroxy-groups. In the case of the Mg complex the polymeric structure is observed with the additional coordination through the sulfamide group of the organic specie. Formation constants of the complexes in ethanol aqueous solutions were calculated and correlated with some physical characteristics of the metal cations. Structures of yet unstudied metal complexes were proposed based on quantum-chemical modeling at the DFT/B3LYP level.
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