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Anti-EpCAM functionalized graphene oxide vector for tumor targeted siRNA delivery and cancer therapy

Graphene oxide (GO) has emerged as a potential drug delivery vector. For siRNA delivery, GO should be modified to endow it with gene delivery ability and targeting effect. However, the cationic materials used previously usually had greater toxicity. In this study, GO was modified with a non-toxicity...

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Autores principales: Chen, Si, Zhang, Shuang, Wang, Yifan, Yang, Xin, Yang, Hong, Cui, Chunying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shenyang Pharmaceutical University 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8609427/
https://www.ncbi.nlm.nih.gov/pubmed/34849165
http://dx.doi.org/10.1016/j.ajps.2021.04.002
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author Chen, Si
Zhang, Shuang
Wang, Yifan
Yang, Xin
Yang, Hong
Cui, Chunying
author_facet Chen, Si
Zhang, Shuang
Wang, Yifan
Yang, Xin
Yang, Hong
Cui, Chunying
author_sort Chen, Si
collection PubMed
description Graphene oxide (GO) has emerged as a potential drug delivery vector. For siRNA delivery, GO should be modified to endow it with gene delivery ability and targeting effect. However, the cationic materials used previously usually had greater toxicity. In this study, GO was modified with a non-toxicity cationic material (chitosan) and a tumor specific monoclonal antibody (anti-EpCAM) for the delivery of survivin-siRNA (GCE/siRNA). And the vector (GCE) prepared was proved with excellent biosafety and tumor targeting effect. The GCE exhibited superior performance in loading siRNA, maintained stability in different solutions and showed excellent protection effect for survivin-siRNA in vitro. The gene silencing results in vitro showed that the mRNA level and protein level were down-regulated by 48.24% ± 2.50% and 44.12% ± 3.03%, respectively, which was equal with positive control (P > 0.05). It was also demonstrated that GCE/siRNA had a strong antitumor effect in vitro, which was attributed to the efficient antiproliferation, and migration and invasion inhibition effect of GCE/siRNA. The results in vivo indicated that GCE could accumulate siRNA in tumor tissues. The tumor inhibition rate of GCE/siRNA 54.74% ± 5.51% was significantly higher than control 4.87% ± 8.49%. Moreover, GCE/siRNA showed no toxicity for blood and main organs, suggesting that it is a biosafety carrier for gene delivery. Taken together, this study provides a novel design strategy for gene delivery system and siRNA formulation.
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spelling pubmed-86094272021-11-29 Anti-EpCAM functionalized graphene oxide vector for tumor targeted siRNA delivery and cancer therapy Chen, Si Zhang, Shuang Wang, Yifan Yang, Xin Yang, Hong Cui, Chunying Asian J Pharm Sci Original Research Paper Graphene oxide (GO) has emerged as a potential drug delivery vector. For siRNA delivery, GO should be modified to endow it with gene delivery ability and targeting effect. However, the cationic materials used previously usually had greater toxicity. In this study, GO was modified with a non-toxicity cationic material (chitosan) and a tumor specific monoclonal antibody (anti-EpCAM) for the delivery of survivin-siRNA (GCE/siRNA). And the vector (GCE) prepared was proved with excellent biosafety and tumor targeting effect. The GCE exhibited superior performance in loading siRNA, maintained stability in different solutions and showed excellent protection effect for survivin-siRNA in vitro. The gene silencing results in vitro showed that the mRNA level and protein level were down-regulated by 48.24% ± 2.50% and 44.12% ± 3.03%, respectively, which was equal with positive control (P > 0.05). It was also demonstrated that GCE/siRNA had a strong antitumor effect in vitro, which was attributed to the efficient antiproliferation, and migration and invasion inhibition effect of GCE/siRNA. The results in vivo indicated that GCE could accumulate siRNA in tumor tissues. The tumor inhibition rate of GCE/siRNA 54.74% ± 5.51% was significantly higher than control 4.87% ± 8.49%. Moreover, GCE/siRNA showed no toxicity for blood and main organs, suggesting that it is a biosafety carrier for gene delivery. Taken together, this study provides a novel design strategy for gene delivery system and siRNA formulation. Shenyang Pharmaceutical University 2021-09 2021-07-22 /pmc/articles/PMC8609427/ /pubmed/34849165 http://dx.doi.org/10.1016/j.ajps.2021.04.002 Text en © 2021 Shenyang Pharmaceutical University. Published by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research Paper
Chen, Si
Zhang, Shuang
Wang, Yifan
Yang, Xin
Yang, Hong
Cui, Chunying
Anti-EpCAM functionalized graphene oxide vector for tumor targeted siRNA delivery and cancer therapy
title Anti-EpCAM functionalized graphene oxide vector for tumor targeted siRNA delivery and cancer therapy
title_full Anti-EpCAM functionalized graphene oxide vector for tumor targeted siRNA delivery and cancer therapy
title_fullStr Anti-EpCAM functionalized graphene oxide vector for tumor targeted siRNA delivery and cancer therapy
title_full_unstemmed Anti-EpCAM functionalized graphene oxide vector for tumor targeted siRNA delivery and cancer therapy
title_short Anti-EpCAM functionalized graphene oxide vector for tumor targeted siRNA delivery and cancer therapy
title_sort anti-epcam functionalized graphene oxide vector for tumor targeted sirna delivery and cancer therapy
topic Original Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8609427/
https://www.ncbi.nlm.nih.gov/pubmed/34849165
http://dx.doi.org/10.1016/j.ajps.2021.04.002
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