Biotechnic & Histochemistry · 2010 · 22 citations · 11 references
NanoparticlesNanomedicineMagnetic NanoparticlesEngineeringMinimally Invasive ProcedureEffective Sirna DeliveryMagnetic ResonanceGentle Sirna DeliverySirna DeliveryNano-drug DeliveryGene DeliveryBiomedical EngineeringGene VectorDrug Delivery SystemMedicineCell BiologyDelivery System
Magnetic force combined with magnetic nanoparticles recently has shown potential for enhancing nucleic acid delivery. Achieving effective siRNA delivery into primary cultured cells is challenging. We compared the utility of magnetofection with lipofection procedures for siRNA delivery to primary and immortalized mammalian fibroblasts. Transfection efficiency and cell viability were analyzed by flow cytometry and effects of gene knockdown were quantified by real-time PCR. Lipofectamine 2000 and magnetofection achieved high transfection efficiencies comparable to similar gene silencing effects of about 80%; the cytotoxic effect of magnetofection, however, was significantly less. Magnetofection is a reliable and gentle alternative method with low cytotoxicity for siRNA delivery into difficult to transfect cells such as mammalian fibroblasts. These features are especially advantageous for functional end point analyses of gene silencing, e.g., on the metabolite level.
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Efficient Transfection Method for Primary Cells
Astrid Hamm, Nicole Krott, Ines Breibach et al. · Tissue Engineering · 2002 · 267 citations
T Porstmann, Thérèse Ternynck, Stratis Avraméas · Journal of Immunological Methods · 1985 · 193 citations
5-Bromo-2-deoxyuridine Incorporation, Lymphoid Neoplasia, Autoimmune Disease +6