Publications by authors named "Orlova L"

Sintered porous mullite-alumina ceramics are obtained from the concentrated suspension of powdered raw materials such as kaolin, gamma and alpha AlO, and amorphous SiO, mainly by a solid-state reaction with the presence of a liquid phase. The modification of mullite ceramic is achieved by the use of micro- and nanosize TiO powders. The phase compositions were measured using an X-ray powder diffraction (XRD) Rigaku Ultima+ (Tokyo, Japan) and microstructures of the sintered specimens were analysed using scanning electron microscopy (SEM) Hitachi TM3000-TableTop (Tokyo, Japan).

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Global energy consumption is increasing yearly, yet the world is trying to move toward carbon neutrality to mitigate global warming. More research is being done on energy storage devices to advance these efforts. One well-known and widely studied technology is Zn-ion batteries (ZIBs).

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Biodegradable and bio-based polymers, including polyhydroxyalkanoate (PHA), polylactic acid (PLA), and poly(butylene succinate--adipate) (PBSA), stand out as sustainable alternatives to traditional petroleum-based plastics for a wide range of consumer applications. Studying binary and ternary blends is essential to exploring the synergistic combinations and efficiencies of three distinct biopolyesters. A comprehensive evaluation of melt-extruded binary and ternary polymer blends of PHA, PLA, and PBSA was conducted.

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This study examines how various nanofillers impact thermal conductivity, dielectric characteristics, and electromagnetic interference (EMI) shielding potential of bio-based and biodegradable poly(butylene succinate-co-adipate) (PBSA). TiO, NiFeO, FeO, and FeO were selected as fillers for nanocomposites at 4-50 vol.% (12-81 wt.

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Fatness and fat people are pervasively stigmatized in Western cultures, with significant negative implications for fat people's well-being. Negative evaluations of those in sexual and romantic relationships with fat people (i.e.

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In response to rising concerns over the environmental and human health ramifications of polymers derived from petroleum, particularly in the food packaging industry, research has pivoted towards more sustainable materials. Poly(butylene succinate) (PBS), selected as the polymer matrix, stands out as one of the most promising bio-based and biodegradable polymers suitable for film blowing and lamination. A layered spray-coating technique was employed to apply 1, 5, 10, and 20 layers of nanofibrillated cellulose (NFC) between blown PBS films, creating a three-layer laminate structure.

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Article Synopsis
  • The COVID-19 pandemic highlighted the importance of developing new prophylactic vaccines, including those that combine DNA and protein elements.
  • A combined vaccine was created using the full-length spike protein and the recombinant receptor-binding domain from the SARS-CoV-2 virus, produced in CHO-K1 cells.
  • This combined DNA/protein vaccine demonstrates the advantages of both subunit and DNA vaccines, stimulating both humoral and cellular immune responses.
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Article Synopsis
  • The conventional live smallpox vaccine, based on the vaccinia virus (VACV), has limitations due to high reactogenicity, prompting the need for safer VACV variants with better immune responses.
  • This study explores low-dose VACV variants with genetic modifications that boost immune responses, specifically looking at humoral and T cell-mediated immunity in mice.
  • The research found that the LIVP-A34R*-dA35R variant produced the strongest T cell-mediated immunity and higher antibody levels compared to the parental LIVP strain, suggesting that combining gene modification and deletion enhances the vaccine's effectiveness.
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Despite the fact that a range of vaccines against COVID-19 have already been created and are used for mass vaccination, the development of effective, safe, technological, and affordable vaccines continues. We have designed a vaccine that combines the recombinant protein and DNA vaccine approaches in a self-assembled particle. The receptor-binding domain (RBD) of the spike protein of SARS-CoV-2 was conjugated to polyglucin:spermidine and mixed with DNA vaccine (pVAXrbd), which led to the formation of particles of combined coronavirus vaccine (CCV-RBD) that contain the DNA vaccine inside and RBD protein on the surface.

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The development of preventive vaccines became the first order task in the COVID-19 pandemic caused by SARS-CoV-2. This paper reports the construction of the pVAX-RBD plasmid containing the Receptor-Binding Domain (RBD) of the S protein and a unique signal sequence 176 which promotes target protein secretion into the extracellular space thereby increasing the efficiency of humoral immune response activation. A polyglucine-spermidine conjugate (PGS) was used to deliver pVAX-RBD into the cells.

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The development of preventive vaccines became the first order task in the COVID-19 pandemic caused by SARS-CoV-2. This paper reports the construction of the pVAX-RBD plasmid containing the Receptor-Binding Domain (RBD) of the S protein and a unique signal sequence 176 which promotes target protein secretion into the extracellular space thereby increasing the efficiency of humoral immune response activation. A polyglucine-spermidine conjugate (PGS) was used to deliver pVAX-RBD into the cells.

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We studied the effect of various detergents (Tween-20, Triton X-100, and sodium deoxycholate) on activity and magnesium-dependent properties of Na,K-ATPase of the crude membrane fraction of rat cerebral cortex. All studied detergents significantly increased activity of the studied enzyme in a concentration-dependent manner. Sodium deoxycholate provided significantly higher values Na,K-ATPase activity (by ≈50%) than Triton X-100 and Tween-20.

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After the genome sequence of SARS-CoV-2 (Severe acute respiratory syndrome-related coronavirus 2) was published and the number of infected people began to increase rapidly, many global companies began to develop a vaccine. Almost all known approaches to vaccine design were applied for this purpose, including inactivated viruses, mRNA and DNA-vaccines, vaccines based on various viral vectors, synthetically generated peptides and recombinant proteins produced in cells of insects and mammals. This review considers one of the promising vaccine platforms based on messenger RNA.

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One of the key stages in the development of mRNA vaccines is their delivery. Along with liposome, other materials are being developed for mRNA delivery that can ensure both the safety and effectiveness of the vaccine, and also facilitate its storage and transportation. In this study, we investigated the polyglucin:spermidine conjugate as a carrier of an mRNA-RBD vaccine encoding the receptor binding domain (RBD) of the SARS-CoV-2 spike protein.

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Objective: To evaluate the feasibility of ultrasound in diagnosis of chronic paracolic inflammatory mass in patients with diverticular disease.

Material And Methods: We analyzed ultrasonic findings in 216 patients with chronic inflammatory complications of colonic diverticular disease. Chronic paracolic inflammatory mass as the most common and significant chronic complication of diverticular disease was analyzed in 116 patients.

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Behçet's disease (BD) is a systemic vasculitis of unknown origin, characterized by recurrences of the ulcerative process in the oral cavity and on the genitals, inflammatory damage of the eyes, joints, vessels and other organs. The severity and prognosis of BD determines organ pathology. Intestinal manifestations of BD (intestinal BD) are the least studied.

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Aim: Present comparative epidemiologic characteristics of viral hepatitis C in Mongolia and Irkutsk Region taking into account racial origin of the studied populations.

Materials And Methods: The studies were carried out in 2009-014 on the territory of Irkutsk Region in Mongolia. Prevalence of viral hepatitis based on serological monitoring, virus RNA detection, risk factors, change in structure of circulating genotypes, hepatocellular carcinoma morbidity were studied.

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Aim: Transanal endoscopic microsurgery (TEM) is a main treatment technique for rectal adenomas, but can also be used for selected malignant tumors. This study presents TEM experience.

Methods: The study enrolled patients with rectal adenomas, and selected adenocarcinomas.

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Extinction of the woolly mammoth in Beringia has long been subject to research and speculation. Here we use a new geo-referenced database of radiocarbon-dated evidence to show that mammoths were abundant in the open-habitat of Marine Isotope Stage 3 (∼45-30 ka). During the Last Glacial Maximum (∼25-20 ka), northern populations declined while those in interior Siberia increased.

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Here we examined the mechanism of propagation of variation potential (VP) induced by burning in wheat leaves. Participation of hydraulic and chemical mechanisms in VP transmission was analyzed by optical coherent tomography and a radioactive tracer method, respectively. The speed of the hydraulic signal considerably exceeded the VP velocity.

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Electrical signals (action and variation potentials) caused by environmental stimuli induce a number of physiological responses in plants including changes in photosynthesis; however, mechanisms of these changes remain unclear. We investigated the influence of the variation potential on photosynthesis in geranium (Pelargonium zonale) under different conditions (control, low external CO₂ concentration, and actinic light absence). The variation potential caused by lamina burning induced a reduction in photosynthesis (decreases in effective quantum yields of photosystem I and II, CO₂ assimilation rate, and stomatal conductance) in unstimulated leaves under control conditions.

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Action potential is considered to be one of the primary responses of a plant to action of various environmental factors. Understanding plant action potential propagation mechanisms requires experimental investigation and simulation; however, a detailed mathematical model of plant electrical signal transmission is absent. Here, the mathematical model of action potential propagation in plants has been worked out.

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Confocal microscopy technique was applied for registration of apoplast pH changes in the Cucurbita pepo seedling stem during generation of action potential and variation potential. Fluorescent dye FITC-dextran was used for pH-changes registration. Analysis of fluorescence images and fluorescence spectra showed, that FITC-dextran was localized in cell walls.

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Human remains from the Xarusgol Valley, Ordos Plateau, northwestern China, have been considered to date to the Late Pleistocene. In order to ascertain their true age, direct AMS (14)C dating of a femur collected in the early 1920s was conducted. The results demonstrate that the femur is very young, with one sample of 'post-bomb' age and the other sample c.

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One hundred and seventeen patients with anal fissure underwent fissure excision in combination with lateral subcutaneous sphincterotomy. The mean follow-up after treatment was 4.3 years.

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