A Polyamidoamine Dendrimer-Capped Mesoporous Silica Nanosphere-Based Gene Transfection Reagent
Трансфекционный реагент на основе мезопористых кремнеземных наносфер, покрытых полиамидоаминовым дендримером
2004-09-25
SCID: 54.1/auufwrkd
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Gene transfectionIntracellular drug deliveryMCM-41 mesoporous silicaPAMAM-capped mesoporous silica nanospheresPlasmid DNA delivery
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Abstract (AI)
We synthesized a MCM-41-type mesoporous silica nanosphere (MSN)-based gene transfection system, where second generation (G2) polyamidoamines (PAMAMs) were covalently attached to the surface of MSN. The G2-PAMAM-capped MSN material (G2-MSN) was used to complex with a plasmid DNA (pEGFP-C1) that encodes for an enhanced green fluorescence protein. The gene transfection efficacy, uptake mechanism, and biocompatibility of the G2-MSN system with various cell types, such as neural glia (astrocytes), human cervical cancer (HeLa), and Chinese hamster ovarian (CHO) cells, were investigated. The mesoporous structure of the MSN material allows membrane-impermeable molecules, such as pharmaceutical drugs and fluorescent dyes, to be encapsulated inside the MSN channels. The system renders the possibility to serve as a universal transmembrane carrier for intracellular drug delivery and imaging applications.
Key Findings
1
A MCM-41-type mesoporous silica nanosphere gene-delivery system was synthesized by covalently attaching second-generation PAMAM dendrimers to the MSN surface.
2
Gene-transfection efficacy, cellular uptake mechanisms, and biocompatibility were investigated in astrocytes, HeLa cells, and CHO cells.
3
The G2-MSN platform is proposed as a potentially universal transmembrane carrier for combined gene, drug-delivery, and imaging applications.
4
The MSN mesopores can encapsulate membrane-impermeable pharmaceutical drugs and fluorescent dyes, supporting intracellular delivery and imaging applications.
5
The resulting G2-MSN material complexes with pEGFP-C1 plasmid DNA encoding enhanced green fluorescent protein for gene transfection.
Research Object
G2-PAMAM-capped MCM-41-type mesoporous silica nanospheres (G2-MSN) used as a plasmid-DNA gene transfection system in astrocytes, HeLa cells, and CHO cells
Research Subject
Gene transfection efficacy, cellular uptake mechanism, and biocompatibility of the G2-MSN system
Publication Details
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2004-09-25
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