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  1. Nov 24, 2020 · The present article reviews the current concepts of the various mechanisms involved in the pathogenesis of dengue virus infection and gives a comprehensive overview of the multiple factors responsible for severe clinical manifestations of the disease.

  2. Dec 15, 2021 · Potential antiviral mechanism and molecular targets of the bioactive compounds inhibiting viral entry and replication of dengue virus. Infection of virus involves various stages: In the initial steps, DENV binds to cell receptors including mannose-binding receptor (MR) and DC-SIGN (dendritic cell-specific ICAM3 grabbing nonintegrin) receptor ...

    • 10.1155/2021/4224816
    • 2021
    • Biomed Res Int. 2021; 2021: 4224816.
  3. Apr 22, 2024 · This review aims to summarize the complex interaction between DENV and the host cellular machinery, comprising regulatory mechanisms at various molecular levels such as epigenetic modulation of the host genome, transcription of host genes, translation of viral and host mRNAs, post-transcriptional regulation of the host transcriptome, post-transl...

  4. Jan 15, 2023 · FcR-dependent ADE is the most common mechanism for a wide range of virus infection such as HIV, influenza A, dengue and Ebola. Cells which have FcR such as monocytes, B cells, neutrophils and macrophages are easily attached by the virus-antibody complexes because the Fc region of the antibody will bind on the cell surface with FcR which leads ...

  5. Jan 24, 2019 · Dengue is a viral illness that is spread primarily by Aedes mosquitoes and infects ~390 million people each year worldwide 1.It is caused by dengue virus (DENV), which belongs to the family of ...

    • Ashley L St John, Ashley L St John, Abhay P S Rathore
    • 2019
  6. May 1, 2024 · Bleeding following dengue virus infection occurs due to multiple mechanisms including platelet activation by NS1, serotonin, and PAF, accompanied by a wide range of other coagulation abnormalities. Abstract

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  8. Nov 19, 2023 · It was observed that PAIgG-coated platelets go through increased clearance via Fcγ receptors expressed on mononuclear phagocytic cells. The mechanism of action of IVIGs involves the ligation of inhibitory receptors or competitive suppression of Fcγ receptors.

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