| ID | 69359 |
| FullText URL | |
| Author |
Matsuura, Koji
CNRS, Immunology, Immunopathology and Therapeutic Chemistry, UPR3572, University of Strasbourg, ISIS
Reina, Giacomo
CNRS, Immunology, Immunopathology and Therapeutic Chemistry, UPR3572, University of Strasbourg, ISIS
Gao, Zhengfeng
CNRS, Immunology, Immunopathology and Therapeutic Chemistry, UPR3572, University of Strasbourg, ISIS
Nishina, Yuta
Research Institute for Interdisciplinary Science, Okayama University
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Kaken ID
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Bianco, Alberto
CNRS, Immunology, Immunopathology and Therapeutic Chemistry, UPR3572, University of Strasbourg, ISIS
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| Abstract | Graphene oxide (GO) conjugated with short polyethylenimine (PEI) chains (GO-PEI) has been designed as a candidate nanocarrier for small interfering RNA (siRNA) delivery to mammalian cells based on the efficient interaction between the positively charged GO-based platform and the negatively charged siRNA. The function and efficiency of siRNA delivery using GO-PEI were compared to those using the positive control Lipofectamine RNAiMax by analyzing the differentiation to myotubes, and myogenin gene and protein expression in C2C12 cells. RNAiMax transfection induced cellularization and reduction of both myogenin gene and protein expression, suggesting that the differentiation of C2C12 cells was triggered by gene silencing. While GO-PEI also promoted cellularization, the myogenin gene expression remained comparable to scrambled controls, whereas the protein levels were higher than those observed with RNAiMax. Mechanistically, we attributed the reduced gene silencing efficiency of GO-PEI to a poor endosomal escape, despite strong siRNA complexation. This limitation was likely due to a low buffering capacity of GO-PEI, as a significant fraction of nitrogen atoms were already protonated, reducing the availability of free amines necessary for endosomal disruption. An appropriate chemical modification to enhance siRNA release from the endosomes is therefore essential for advancing the development of GO-based platforms as versatile and efficient nanocarriers in gene therapy applications.
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| Keywords | graphene oxide
polyethylenimine
myotubes
myogenin
small interfering RNA
transfection
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| Published Date | 2025-08-11
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| Publication Title |
ACS Nanoscience Au
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| Publisher | American Chemical Society (ACS)
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| ISSN | 2694-2496
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| Content Type |
Journal Article
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| language |
English
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| OAI-PMH Set |
岡山大学
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| Copyright Holders | © 2025 The Authors.
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| File Version | publisher
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| DOI | |
| Web of Science KeyUT | |
| Related Url | isVersionOf https://doi.org/10.1021/acsnanoscienceau.5c00078
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| License | https://creativecommons.org/licenses/by-nc-nd/4.0/
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| 助成情報 |
18K12069:
精子運動性の制御に基づく運動精子選別システムの開発
( 文部科学省 / Ministry of Education )
23K11818:
哺乳類精子のATPイメージングによる運動制御機構の解明
( 文部科学省 / Ministry of Education )
( Centre National de la Recherche Scientifique )
( Interdisciplinary Thematic Institute SysChem )
( Jean-Marie Lehn Foundation )
|