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Dengue Virus-Polymersome Hybrid Nanovesicles for Advanced Drug Screening Using Real-Time Single Nanoparticle-Virus Tracking

Cited 9 time in Web of Science Cited 11 time in Scopus
Authors

Kim, Hyun-Ouk; Na, Woonsung; Yeom, Minjoo; Lim, Jong -Woo; Bae, Eun-Hye; Park, Geunseon; Park, Chaewon; Lee, Hwunjae; Kim, Hye Kwon; Jeong, Dae Gwin; Lyoo, Kwang-Soo; Van Phan Le; Haam, Seungjoo; Song, Daesub

Issue Date
2020-02
Publisher
American Chemical Society
Citation
ACS Applied Materials & Interfaces, Vol.12 No.6, pp.6876-6884
Abstract
Dengue virus (DENV) is a major infectious viral pathogen that affects millions of individuals worldwide every year, causing a potentially fatal syndrome, while no commercial antiviral drugs are yet available. To develop an antiviral against dengue fever, it is necessary to understand the relationship between DENY and host cells, which could provide a basis for viral dynamics and identification of inhibitory drug targets. In this study, we designed DiD-loaded and BODIPY-ceramide-encapsulated DENV-polymersome hybrid nanovesicles (DENVSomes) prepared by an extrusion method, which trigger red fluorescence in the endosome and green in the Golgi. DENVSome monitors the dynamics of host cell-virus interaction and tracking in living cells with novel state-of-the-art imaging technologies that show images at high resolution. Also, DENVSome can be exploited to screen whether candidate antiviral drugs interact with DENVs. Consequently, we successfully demonstrated that DENVSome is an efficient tool for tracking and unraveling the mechanisms of replication and drug screening for antiviral drugs of DENV.
ISSN
1944-8244
URI
https://hdl.handle.net/10371/218609
DOI
https://doi.org/10.1021/acsami.9b20492
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  • School of Dentistry
  • Department of Dentistry
Research Area Disease Epidemic Management, Virology

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