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Elastin-Derived VGVAPG Fragment Decorated Cell-Penetrating Peptide with Improved Gene Delivery Efficacy

Cell-penetrating peptides (CPPs) are attractive non-viral gene delivery vectors due to their high transfection capacity and safety. Previously, we have shown that cell-penetrating peptide RALA can be a promising gene delivery vector for chronic wound regeneration application. In this study, we engin...

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Autores principales: Shen, Wen-Juan, Tian, Duo-Mei, Fu, Le, Jin, Biao, Liu, Yu, Xu, Yun-Sheng, Ye, Yong-Bin, Wang, Xiao-Bo, Xu, Xiao-Jun, Tang, Chun, Li, Fang-Ping, Wang, Chun-Fei, Wu, Gang, Yan, Le-Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961289/
https://www.ncbi.nlm.nih.gov/pubmed/36839992
http://dx.doi.org/10.3390/pharmaceutics15020670
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author Shen, Wen-Juan
Tian, Duo-Mei
Fu, Le
Jin, Biao
Liu, Yu
Xu, Yun-Sheng
Ye, Yong-Bin
Wang, Xiao-Bo
Xu, Xiao-Jun
Tang, Chun
Li, Fang-Ping
Wang, Chun-Fei
Wu, Gang
Yan, Le-Ping
author_facet Shen, Wen-Juan
Tian, Duo-Mei
Fu, Le
Jin, Biao
Liu, Yu
Xu, Yun-Sheng
Ye, Yong-Bin
Wang, Xiao-Bo
Xu, Xiao-Jun
Tang, Chun
Li, Fang-Ping
Wang, Chun-Fei
Wu, Gang
Yan, Le-Ping
author_sort Shen, Wen-Juan
collection PubMed
description Cell-penetrating peptides (CPPs) are attractive non-viral gene delivery vectors due to their high transfection capacity and safety. Previously, we have shown that cell-penetrating peptide RALA can be a promising gene delivery vector for chronic wound regeneration application. In this study, we engineered a novel peptide called RALA-E by introducing elastin-derived VGVAPG fragment into RALA, in order to target the elastin-binding protein on the cell surface and thus improve delivery efficacy of RALA. The transfection efficiency of RALA-E was evaluated by transfecting the HEK-293T and HeLa cell lines cells with RALA-E/pDNA complexes and the flow-cytometry results showed that RALA-E significantly increased the transfection efficiency by nearly 20% in both cell lines compared to RALA. Inhibition of pDNA transfection on HEK-293T cells via chlorpromazine, genistein and mβCD showed that the inhibition extent in transfection efficiency was much less for RALA-E group compared to RALA group. In addition, RALA-E/miR-146a complexes showed up to 90% uptake efficiency in macrophages, and can escape from the endosome and enter the nucleus to inhibit the expression of inflammation genes. Therefore, the developed RALA-E peptide has high potential as a safe and efficient vector for gene therapy application.
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spelling pubmed-99612892023-02-26 Elastin-Derived VGVAPG Fragment Decorated Cell-Penetrating Peptide with Improved Gene Delivery Efficacy Shen, Wen-Juan Tian, Duo-Mei Fu, Le Jin, Biao Liu, Yu Xu, Yun-Sheng Ye, Yong-Bin Wang, Xiao-Bo Xu, Xiao-Jun Tang, Chun Li, Fang-Ping Wang, Chun-Fei Wu, Gang Yan, Le-Ping Pharmaceutics Article Cell-penetrating peptides (CPPs) are attractive non-viral gene delivery vectors due to their high transfection capacity and safety. Previously, we have shown that cell-penetrating peptide RALA can be a promising gene delivery vector for chronic wound regeneration application. In this study, we engineered a novel peptide called RALA-E by introducing elastin-derived VGVAPG fragment into RALA, in order to target the elastin-binding protein on the cell surface and thus improve delivery efficacy of RALA. The transfection efficiency of RALA-E was evaluated by transfecting the HEK-293T and HeLa cell lines cells with RALA-E/pDNA complexes and the flow-cytometry results showed that RALA-E significantly increased the transfection efficiency by nearly 20% in both cell lines compared to RALA. Inhibition of pDNA transfection on HEK-293T cells via chlorpromazine, genistein and mβCD showed that the inhibition extent in transfection efficiency was much less for RALA-E group compared to RALA group. In addition, RALA-E/miR-146a complexes showed up to 90% uptake efficiency in macrophages, and can escape from the endosome and enter the nucleus to inhibit the expression of inflammation genes. Therefore, the developed RALA-E peptide has high potential as a safe and efficient vector for gene therapy application. MDPI 2023-02-16 /pmc/articles/PMC9961289/ /pubmed/36839992 http://dx.doi.org/10.3390/pharmaceutics15020670 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shen, Wen-Juan
Tian, Duo-Mei
Fu, Le
Jin, Biao
Liu, Yu
Xu, Yun-Sheng
Ye, Yong-Bin
Wang, Xiao-Bo
Xu, Xiao-Jun
Tang, Chun
Li, Fang-Ping
Wang, Chun-Fei
Wu, Gang
Yan, Le-Ping
Elastin-Derived VGVAPG Fragment Decorated Cell-Penetrating Peptide with Improved Gene Delivery Efficacy
title Elastin-Derived VGVAPG Fragment Decorated Cell-Penetrating Peptide with Improved Gene Delivery Efficacy
title_full Elastin-Derived VGVAPG Fragment Decorated Cell-Penetrating Peptide with Improved Gene Delivery Efficacy
title_fullStr Elastin-Derived VGVAPG Fragment Decorated Cell-Penetrating Peptide with Improved Gene Delivery Efficacy
title_full_unstemmed Elastin-Derived VGVAPG Fragment Decorated Cell-Penetrating Peptide with Improved Gene Delivery Efficacy
title_short Elastin-Derived VGVAPG Fragment Decorated Cell-Penetrating Peptide with Improved Gene Delivery Efficacy
title_sort elastin-derived vgvapg fragment decorated cell-penetrating peptide with improved gene delivery efficacy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9961289/
https://www.ncbi.nlm.nih.gov/pubmed/36839992
http://dx.doi.org/10.3390/pharmaceutics15020670
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