9 results match your criteria: "Institute of Advanced Virology (IAV)[Affiliation]"

Article Synopsis
  • Biocontainment regulations require research on Nipah virus (NiV) to be carried out in BSL-4 labs, hindering studies on how the virus enters host cells and causes disease.
  • The study developed HiBiT-tagged NiV virus-like particles (VLPs) that can be safely handled in BSL-2 labs, by co-expressing viral proteins in HEK293T cells, while maintaining similarities to the native virus.
  • The HiBiT tag allows for rapid detection of viral interactions and effectiveness of neutralizing antibodies, providing a new, safer method for studying NiV assembly, binding, and entry, as well as for antibody neutralization assays.
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Background: Dengue shows high geographic heterogeneity within and across endemic countries. In the context of increasing burden and predicted outbreaks due to climate change, understanding the heterogeneity will enable us to develop region specific targeted interventions, including vaccination. World Health Organisation (WHO) suggests standard methodologies to study the burden and heterogeneity at national and subnational levels.

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Extensive vascular leakage and shock is a major cause of dengue-associated mortality. At present, there are no specific treatments available. Sphingolipid pathway is a key player in the endothelial barrier integrity; and is mediated through the five sphingosine-1-phosphate receptors (S1PR1-S1PR5).

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Chikungunya virus (CHIKV) hijacks host cell machinery to support its replication. Nucleophosmin 1 (NPM1/B23), a nucleolar phosphoprotein, is one of the host proteins known to restrict CHIKV infection; however, the mechanistic details of the antiviral role of NPM1 are not elucidated. It was seen in our experiments that the level of NPM1 expression affected the expression levels of interferon-stimulated genes (ISGs) that play antiviral roles in CHIKV infection, such as , , , and , indicating that one of the antiviral mechanisms could be through modulation of interferon-mediated pathways.

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The factors that drive dengue virus (DENV) evolution, and selection of virulent variants are yet not clear. Higher environmental temperature shortens DENV extrinsic incubation period in mosquitoes, increases human transmission, and plays a critical role in outbreak dynamics. In the present study, we looked at the effect of temperature in altering the virus virulence.

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Ethyl palmitate, an anti-chikungunya virus principle from Sauropus androgynus, a medicinal plant used to alleviate fever in ethnomedicine.

J Ethnopharmacol

June 2023

Molecular Virology Laboratory, Rajiv Gandhi Centre for Biotechnology (RGCB), Thycaud P.O., Thiruvananthapuram, 695014, Kerala, India; Institute of Advanced Virology (IAV), Bio360 Life Sciences Park, Thonnakkal P.O, Thiruvananthapuram, 695317, Kerala, India. Electronic address:

Ethnopharmacological Relevance: Sauropus androgynus is a medicinal shrub used for the treatment of fever in ethnomedical traditions in various Southeast Asian countries.

Aim Of The Study: This study was aimed to identify antiviral principles from S. androgynus against Chikungunya virus (CHIKV), a major mosquito-borne pathogen that re-emerged in the last decade, and to unravel their mechanism of action.

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Chikungunya virus (CHIKV) re-emergence in the last decade has resulted in explosive epidemics. Along with the classical symptoms of fever and debilitating arthralgia, there were occurrences of unusual clinical presentations such as neurovirulence and mortality. These generated a renewed global interest to develop prophylactic vaccines.

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Epstein-Barr virus or human herpesvirus 4 (EBV/HHV-4) is an omnipresent oncovirus etiologically associated with various B-cell lymphomas and epithelial cancers. The malignant transformation associated with the persistent expression of viral proteins often deregulates the host cellular machinery and EBV infection is coupled to elevated levels of reactive oxygen species. Here, we investigated the role that the glutamate transporter EAAT3 plays in regulating the antioxidant system as a protective mechanism of EBV-infected cells against the virus-induced oxidative stress.

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Article Synopsis
  • Hand, foot, and mouth disease (HFMD) is a childhood infection primarily caused by enteroviruses, characterized by fever and a rash on hands, feet, and mouth, with changing virus types observed in South India from 2015 to 2017.
  • In a study analyzing samples from suspected HFMD cases, CVA6 was identified as the most common virus (64% of cases), followed by CVA16 and CVA10, while 20% of cases could not be typed.
  • The majority of affected individuals were children under five years old, indicating a strong prevalence in young children during this period.
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