Elucidating pharmacophore of novel NS3 inhibitor for dengue via proteochemometric modeling and molecular dynamics simulation / Zafirah Liyana Abdullah
The global incidence of infectious diseases presents a substantial threat to human health. Among these infections, dengue virus (DENV) has become the most notable and the most rapidly spreading mosquito-borne viral disease1. According to the World Health Organization (WHO), the number of incidences...
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my.uitm.ir.1056742024-12-02T11:03:51Z https://ir.uitm.edu.my/id/eprint/105674/ Elucidating pharmacophore of novel NS3 inhibitor for dengue via proteochemometric modeling and molecular dynamics simulation / Zafirah Liyana Abdullah Abdullah, Zafirah Liyana Pharmaceutical supplies Pharmaceutical chemistry The global incidence of infectious diseases presents a substantial threat to human health. Among these infections, dengue virus (DENV) has become the most notable and the most rapidly spreading mosquito-borne viral disease1. According to the World Health Organization (WHO), the number of incidences has increased 30-fold from the past 50 years, as well as the geographical expansion of the disease to new countries2. Therefore, the research titled "Elucidating Pharmacophore of Novel NS3 Inhibitor for Dengue via Proteochemometric Modeling and Molecular Dynamics Simulation" is proposed to make contributions to the development of antivirals for dengue infection, a mosquitoborne viral disease that affects millions of people worldwide Faculty of Pharmacy 2024-10 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/105674/1/105674.pdf Elucidating pharmacophore of novel NS3 inhibitor for dengue via proteochemometric modeling and molecular dynamics simulation / Zafirah Liyana Abdullah. (2024) Prescription <https://ir.uitm.edu.my/view/publication/Prescription/> (10). |
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Pharmaceutical supplies Pharmaceutical chemistry Abdullah, Zafirah Liyana Elucidating pharmacophore of novel NS3 inhibitor for dengue via proteochemometric modeling and molecular dynamics simulation / Zafirah Liyana Abdullah |
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The global incidence of infectious diseases presents a substantial threat to human health. Among these infections, dengue virus (DENV) has become the most notable and the most rapidly spreading mosquito-borne viral disease1. According to the World Health Organization (WHO), the number of incidences has increased 30-fold from the past 50 years, as well as the geographical expansion of the disease to new countries2. Therefore, the research titled "Elucidating Pharmacophore of Novel NS3 Inhibitor for Dengue via Proteochemometric Modeling and Molecular Dynamics Simulation" is proposed to make contributions to the development of antivirals for dengue infection, a mosquitoborne viral disease that affects millions of people worldwide |
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Article |
author |
Abdullah, Zafirah Liyana |
author_facet |
Abdullah, Zafirah Liyana |
author_sort |
Abdullah, Zafirah Liyana |
title |
Elucidating pharmacophore of novel NS3 inhibitor for dengue via proteochemometric modeling and molecular dynamics simulation / Zafirah Liyana Abdullah |
title_short |
Elucidating pharmacophore of novel NS3 inhibitor for dengue via proteochemometric modeling and molecular dynamics simulation / Zafirah Liyana Abdullah |
title_full |
Elucidating pharmacophore of novel NS3 inhibitor for dengue via proteochemometric modeling and molecular dynamics simulation / Zafirah Liyana Abdullah |
title_fullStr |
Elucidating pharmacophore of novel NS3 inhibitor for dengue via proteochemometric modeling and molecular dynamics simulation / Zafirah Liyana Abdullah |
title_full_unstemmed |
Elucidating pharmacophore of novel NS3 inhibitor for dengue via proteochemometric modeling and molecular dynamics simulation / Zafirah Liyana Abdullah |
title_sort |
elucidating pharmacophore of novel ns3 inhibitor for dengue via proteochemometric modeling and molecular dynamics simulation / zafirah liyana abdullah |
publisher |
Faculty of Pharmacy |
publishDate |
2024 |
url |
https://ir.uitm.edu.my/id/eprint/105674/1/105674.pdf https://ir.uitm.edu.my/id/eprint/105674/ |
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1817847324060155904 |
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