Chimeric MrNV-GE11-VLPs serve as a nano-container to deliver Doxorubicin into cancer cells

We have reported that virus-like particle from shrimp virus, MrNV-VLP, effectively encapsulates and delivers plasmid DNA and dsRNA into Sf9 insect cells and shrimp tissues. Additionally, modifying VLP with GE-11 peptide extension on the surface (so called, E-MrNV-GE11-VLP) allows them to interact sp...

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Main Author: Grataitong K.
Other Authors: Mahidol University
Format: Article
Published: 2023
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/86453
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spelling th-mahidol.864532023-06-19T01:05:01Z Chimeric MrNV-GE11-VLPs serve as a nano-container to deliver Doxorubicin into cancer cells Grataitong K. Mahidol University Multidisciplinary We have reported that virus-like particle from shrimp virus, MrNV-VLP, effectively encapsulates and delivers plasmid DNA and dsRNA into Sf9 insect cells and shrimp tissues. Additionally, modifying VLP with GE-11 peptide extension on the surface (so called, E-MrNV-GE11-VLP) allows them to interact specifically with the EGFR-positive SW480 cancer cells. This work extrapolated the use of E-MrNV-GE11-VLP to encapsulate and deliver doxorubicin (DOX) towards SW480 cells. The results showed that DOX was passively loaded into VLPs in a molar ratio of >200 DOX/VLP equivalent to a loading efficiency of 3%. Specific targeting of E-MrNV-GE11-VLP + DOX and its anti-cancer effect towards SW480 was more pronounced than that of N-MrNV-VLP + DOX, suggesting an interaction and internalization of E-MrNV-GE11-VLP through surface EGFR. This claim was also supported by a lower DOX delivery into MCF7 than SW480 cells. Finally, the cell cytotoxicity assay showed that E-MrNV-GE11-VLP + DOX significantly decreased cell viability in SW480 cells more than that by N-MrNV-VLP + DOX (P<0.05), while its cytotoxicity effect on MFC7 cells was much lower than on SW480 cells. This study provides insights into how to develop target-specific drug delivery for carrying therapeutic agents towards specific tumor cells. 2023-06-18T18:05:01Z 2023-06-18T18:05:01Z 2022-11-01 Article Songklanakarin Journal of Science and Technology Vol.44 No.6 (2022) , 1517-1523 01253395 2-s2.0-85149290182 https://repository.li.mahidol.ac.th/handle/123456789/86453 SCOPUS
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Multidisciplinary
spellingShingle Multidisciplinary
Grataitong K.
Chimeric MrNV-GE11-VLPs serve as a nano-container to deliver Doxorubicin into cancer cells
description We have reported that virus-like particle from shrimp virus, MrNV-VLP, effectively encapsulates and delivers plasmid DNA and dsRNA into Sf9 insect cells and shrimp tissues. Additionally, modifying VLP with GE-11 peptide extension on the surface (so called, E-MrNV-GE11-VLP) allows them to interact specifically with the EGFR-positive SW480 cancer cells. This work extrapolated the use of E-MrNV-GE11-VLP to encapsulate and deliver doxorubicin (DOX) towards SW480 cells. The results showed that DOX was passively loaded into VLPs in a molar ratio of >200 DOX/VLP equivalent to a loading efficiency of 3%. Specific targeting of E-MrNV-GE11-VLP + DOX and its anti-cancer effect towards SW480 was more pronounced than that of N-MrNV-VLP + DOX, suggesting an interaction and internalization of E-MrNV-GE11-VLP through surface EGFR. This claim was also supported by a lower DOX delivery into MCF7 than SW480 cells. Finally, the cell cytotoxicity assay showed that E-MrNV-GE11-VLP + DOX significantly decreased cell viability in SW480 cells more than that by N-MrNV-VLP + DOX (P<0.05), while its cytotoxicity effect on MFC7 cells was much lower than on SW480 cells. This study provides insights into how to develop target-specific drug delivery for carrying therapeutic agents towards specific tumor cells.
author2 Mahidol University
author_facet Mahidol University
Grataitong K.
format Article
author Grataitong K.
author_sort Grataitong K.
title Chimeric MrNV-GE11-VLPs serve as a nano-container to deliver Doxorubicin into cancer cells
title_short Chimeric MrNV-GE11-VLPs serve as a nano-container to deliver Doxorubicin into cancer cells
title_full Chimeric MrNV-GE11-VLPs serve as a nano-container to deliver Doxorubicin into cancer cells
title_fullStr Chimeric MrNV-GE11-VLPs serve as a nano-container to deliver Doxorubicin into cancer cells
title_full_unstemmed Chimeric MrNV-GE11-VLPs serve as a nano-container to deliver Doxorubicin into cancer cells
title_sort chimeric mrnv-ge11-vlps serve as a nano-container to deliver doxorubicin into cancer cells
publishDate 2023
url https://repository.li.mahidol.ac.th/handle/123456789/86453
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