Publications by authors named "Bayramyan N"

The spread of the African swine fever virus (ASF virus) genotype ii in the Eurasian region has been very successful and often inexplicable. The virus spreads rapidly and persists in areas with wild boar populations, but areas without feral pig populations are also affected. The virus has shown the ability to survive for a long time in the environment without a population of susceptible hosts, both pigs and Ornithodoros soft ticks.

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  • The study investigates the antiviral effects of newly synthesized heterocyclic compounds against SARS-CoV-2, aiming to explore their potential as treatment options due to the severity of COVID-19.
  • The research utilized various methods including cell culturing and qRT-PCR to analyze the compounds' effectiveness, showing that they significantly reduced the viral load and improved symptoms in infected hamsters.
  • Results indicated that these compounds not only decreased SARS-CoV-2 replication in vitro but also positively affected pathological changes in hamsters, suggesting their potential for further development as antiviral drugs.
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Shortly after the establishment of African swine fever virus (ASFV) genotype II in 2007, cases of acute fatal infection were observed. However, after several years of circulation in the Eurasian region, the clinical signs of the disease changed. Currently, this disease can occur acutely, subclinically, chronically, or asymptomatically.

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African swine fever virus (ASFV) can accumulate and survive in leeches for a long time. The reasons for the survival of ASFV in leeches are not entirely clear. Here, we elucidate the virus survival pathway in infected leeches.

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At the end of 2019, an outbreak of a new severe acute respiratory syndrome caused by a coronavirus occurred in Wuhan, China, after which the virus spread around the world. Here, we have described the adaptive capacity and pathogenesis of the SARS-CoV-2 Delta variant, which is widespread in Armenia, in vitro and vivo on Syrian hamsters. We have studied the changes in the SARS-CoV-2genome using viral RNA sequencing during virus adaptation in vitro and in vivo.

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Article Synopsis
  • African swine fever virus prompts infected G0 cells to transition to the S phase of the cell cycle, only to later halt their progression in the G2 phase.
  • DNA synthesis in the infected cells begins around 10-12 hours post-infection, driven by the activation of specific viral genes linked to nucleotide synthesis and cell cycle regulation.
  • The virus manipulates the cell cycle to exploit the host cell’s resources for nucleotide synthesis, while later interactions with nucleotides reduce the transcriptional activity of genes involved in replication.
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Background And Aim: A drawback of studies on bat blood smears in the field is the lack of time for fixation because blood sampling using a non-lethal method often provides less time for fixation in smear preparations due to the small volume of blood collected. Usually, there is insufficient blood for another smear preparation, so it is necessary to use blood smears as rationally as possible, especially for rare bats. Many stains are used for staining peripheral blood smears, and they have advantages and disadvantages.

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The water-based combination of two inorganic chemical compounds such as sodium tungstate dihydrate-NaWO × 2HO and Aluminum sulfate octadecahydrate-Al (SO) 3 × 18HO that we have conditionally named 'Vomifal' has a broad antiviral activity in various DNA and RNA viruses, including Human Herpes Virus (HHV), African Swine Fever Virus (ASFV), Vaccinia Virus (VV), Hepatitis C Virus (HCV), Foot and Mouth Disease Virus (FMDV), Influenza A virus (A/Aichi/2/68 (H3N2)). In vitro and In vivo assays in several tissue cultures as well as in laboratory animals, conformed 'Vomifal' has a very low toxicity and the antiviral properties partially are due to its ability to induce gamma-IFN. Based on the results obtained, we can assume the presence of at least two mechanisms of the antiviral action of the studied drug.

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In this study, we investigated the possible biological factors affecting the survival of the African swine fever virus (ASFV) in the environment and their potential to influence the ecology of the ASFV. Specifically, we tested the survival and replication of ASFV in four phylogenetically distinct organisms: Paramecium caudatum, Dendrobaena alpine, Aedes aegypti andXeropicta derbentina using qReal-Time PCR and hemadsorbtion analysis. Levels of ASFV in earthworms (Dendrobaena alpina) and soil declined at similar rates, suggesting that earthworms likely have no influence on the ecology of the ASFV.

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