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Localization of Dengue Virus in Naturally Infected Human Tissues, by Immunohistochemistry and In Situ Hybridization

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TLDR
Tissue specimens from patients with serologically or virologically confirmed dengue infections are studied by immunohistochemistry (IHC) and in situ hybridization (ISH), to localize viral antigen and RNA, respectively.
Abstract
Dengue viral antigens have been demonstrated in several types of naturally infected human tissues, but little is known of whether these same tissues have detectable viral RNA. We studied tissue specimens from patients with serologically or virologically confirmed dengue infections by immunohistochemistry (IHC) and in situ hybridization (ISH), to localize viral antigen and RNA, respectively. IHC was performed on specimens obtained from 5 autopsies and 24 biopsies and on 20 blood-clot samples. For ISH, antisense riboprobes to the dengue E gene were applied to tissue specimens in which IHC was positive. Viral antigens were demonstrated in Kupffer and sinusoidal endothelial cells of the liver; macrophages, multinucleated cells, and reactive lymphoid cells in the spleen; macrophages and vascular endothelium in the lung; kidney tubules; and monocytes and lymphocytes in blood-clot samples. Positive-strand viral RNA was detected in the same IHC-positive cells found in the spleen and blood-clot samples. The strong, positive ISH signal in these cells indicated a high copy number of viral RNA, suggesting replication.

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Host Gene Expression Profiling of Dengue Virus Infection in Cell Lines and Patients

TL;DR: Unbiased gene expression analysis has identified new host genes associated with dengue infection, which have been validated in functional studies and showed that some parts of the host response can be used as potential biomarkers for the disease while others can be use to control dengu viral replication, thus representing viable targets for drug therapy.
Journal ArticleDOI

Dengue Virus Induces and Requires Glycolysis for Optimal Replication

TL;DR: An essential role for glycolysis is reported during dengue virus infection, providing further evidence that viral metabolomic analyses can lead to the discovery of novel therapeutic targets to block the replication of medically important human pathogens.
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Pathogenesis of liver involvement during dengue viral infections

TL;DR: Clinical and experimental observations that suggest that liver involvement occurs during dengue infections are described and the possible role played by host immune responses in this process is outlined.
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Tropism of dengue virus in mice and humans defined by viral nonstructural protein 3-specific immunostaining.

TL;DR: DENV2 nonstructural protein 3-specific immunostaining supports roles for infected phagocytes, hepatocytes, and, to a limited degree, endothelial cells in the pathogenesis of severe dengue.
Journal ArticleDOI

Dengue hemorrhagic fever with special emphasis on immunopathogenesis

TL;DR: It is understood that the process is initiated by infection with a virulent d Dengue virus, often in the presence of antibodies that enhance dengue virus infection in secondary infection, and then triggered by rapidly elevated cytokines and chemical mediators that were produced by intense immune activation.
References
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Journal ArticleDOI

A rapid alkaline extraction procedure for screening recombinant plasmid DNA

H C Birnboim, +1 more
TL;DR: In this paper, a procedure for extracting plasmid DNA from bacterial cells is described, which is simple enough to permit the analysis by gel electrophoresis of 100 or more clones per day, yet yields DNA which is pure enough to be digestible by restriction enzymes.

Arapid alkaline extraction procedure forscreening recombinant plasmid DNA

TL;DR: The method is simple enough to permit the analysis by gel electrophoresis of 100 or more clones per day yet yields plasmid DNA which is pure enough to be digestible by restriction enzymes, and achievesequate pH control without using a pH meter.
Journal ArticleDOI

Pathogenesis of dengue: challenges to molecular biology

TL;DR: This work has identified a severe syndrome, dengue hemorrhagic fever/dengue shock syndrome, in Southeast Asian children, which recently has also been identified in children infected with the virus in Puerto Rico.
Journal ArticleDOI

Dengue viruses and mononuclear phagocytes. I. Infection enhancement by non-neutralizing antibody.

TL;DR: In vitro antibody-dependent infection of PBL provides a possible model for study of pathogenetic mechanisms in infants with dengue shock syndrome who passively acquire maternal anti-dengue IgG.
Journal ArticleDOI

Antibody-dependent enhancement of dengue virus growth in human monocytes as a risk factor for dengue hemorrhagic fever.

TL;DR: High serum DEN-2 antibody dependent enhancing activity is a significant (relative risk = 6.2) risk factor for severe illness among children in a dengue hemorrhagic fever endemic region.
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