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Attenuation of zika virus by passage in human HeLa cells
Li Li
, Natalie D. Collins
, Steven G. Widen
, Emily H. Davis
, Jaclyn A. Kaiser
, Mellodee M. White
, M. Banks Greenberg
,
Alan D.T. Barrett
,
Nigel Bourne
, Vanessa V. Sarathy
Biochemistry & Molecular Biology
Pathology
Pediatrics
Research output
:
Contribution to journal
›
Article
›
peer-review
11
Scopus citations
Overview
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Keyphrases
Attenuation
100%
Zika Virus
100%
Human HeLa Cells
100%
HeLa
50%
HeLa Cells
37%
Virus
25%
Mosquito-borne Flavivirus
25%
Plaque-forming Units
25%
Cell Passage
25%
West Nile Virus
12%
Flavivirus
12%
Non-structural Protein
12%
Vaccine Development
12%
Yellow Fever
12%
Viral Outbreaks
12%
Amino Acid Substitution
12%
Genome Sequencing
12%
Vero Cells
12%
Viremia
12%
Japanese Encephalitis
12%
Cytokine Response
12%
A549 Cells
12%
Chemokine Responses
12%
Premembrane
12%
Median Survival
12%
Human Isolates
12%
Animal Tissues
12%
Multiple Platforms
12%
AG129 Mice
12%
Low-level Viremia
12%
In Vitro Replication
12%
Serial Passaging
12%
Immunology and Microbiology
Zika Virus
100%
Hela Cell
100%
Flavivirus
37%
Wild Type
25%
Viremia
25%
Plaque-Forming Unit
25%
Virus
25%
Infection
25%
West Nile Virus
12%
Yellow Fever
12%
Amino Acid Substitution
12%
Japanese Encephalitis
12%
Genome Sequencing
12%
Cytokine Response
12%
Chemokine Response
12%
Animal Tissue
12%
Replication
12%
In Vitro
12%
Medicine and Dentistry
Zika Virus
100%
Flavivirus
37%
Infection
25%
Viremia
25%
Virus
25%
In Vitro
12%
West Nile Virus
12%
Yellow Fever
12%
Vaccine Development
12%
Cytokine Response
12%
Genome Sequencing
12%
Amino Acid Substitution
12%
Nonstructural Protein 1
12%
Japanese Encephalitis
12%
Chemokine Response
12%
Animal Tissue
12%