Gold Nanoparticle Mediated Laser Transfection for Efficient siRNA Mediated Gene Knock Down

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dc.identifier.uri http://dx.doi.org/10.15488/4602
dc.identifier.uri https://www.repo.uni-hannover.de/handle/123456789/4644
dc.contributor.author Heinemann, Dag
dc.contributor.author Schomaker, Markus
dc.contributor.author Kalies, Stefan
dc.contributor.author Schieck, Maximilian
dc.contributor.author Carlson, Regina
dc.contributor.author Murua Escobar, Hugo
dc.contributor.author Ripken, Tammo
dc.contributor.author Meyer, Heiko
dc.contributor.author Heisterkamp, Alexander
dc.date.accessioned 2019-03-27T11:46:30Z
dc.date.available 2019-03-27T11:46:30Z
dc.date.issued 2013
dc.identifier.citation Heinemann, D.; Schomaker, M.; Kalies, S.; Schieck, M.; Carlson, R. et al.: Gold Nanoparticle Mediated Laser Transfection for Efficient siRNA Mediated Gene Knock Down. In: PLoS ONE 8 (2013), Nr. 3, e58604. DOI: https://doi.org/10.1371/journal.pone.0058604
dc.description.abstract Laser based transfection methods have proven to be an efficient and gentle alternative to established molecule delivery methods like lipofection or electroporation. Among the laser based methods, gold nanoparticle mediated laser transfection bears the major advantage of high throughput and easy usability. This approach uses plasmon resonances on gold nanoparticles unspecifically attached to the cell membrane to evoke transient and spatially defined cell membrane permeabilization. In this study, we explore the parameter regime for gold nanoparticle mediated laser transfection for the delivery of molecules into cell lines and prove its suitability for siRNA mediated gene knock down. The developed setup allows easy usage and safe laser operation in a normal lab environment. We applied a 532 nm Nd:YAG microchip laser emitting 850 ps pulses at a repetition rate of 20.25 kHz. Scanning velocities of the laser spot over the sample of up to 200 mm/s were tested without a decline in perforation efficiency. This velocity leads to a process speed of ~8 s per well of a 96 well plate. The optimal particle density was determined to be ~6 particles per cell using environmental scanning electron microscopy. Applying the optimized parameters transfection efficiencies of 88% were achieved in canine pleomorphic adenoma ZMTH3 cells using a fluorescent labeled siRNA while maintaining a high cell viability of >90%. Gene knock down of d2-EGFP was demonstrated and validated by fluorescence repression and western blot analysis. On basis of our findings and established mathematical models we suppose a mixed transfection mechanism consisting of thermal and multiphoton near field effects. Our findings emphasize that gold nanoparticle mediated laser transfection provides an excellent tool for molecular delivery for both, high throughput purposes and the transfection of sensitive cells types. eng
dc.language.iso eng
dc.publisher San Francisco, California, US : PLOS
dc.relation.ispartofseries PLoS ONE 8 (2013), Nr. 3
dc.rights CC BY 3.0 Unported
dc.rights.uri https://creativecommons.org/licenses/by/3.0/
dc.subject enhanced green fluorescent protein eng
dc.subject gold nanoparticle eng
dc.subject small interfering RNA eng
dc.subject animal cell eng
dc.subject article eng
dc.subject cell line eng
dc.subject cell viability eng
dc.subject controlled study eng
dc.subject density eng
dc.subject fluorescence eng
dc.subject gene delivery system eng
dc.subject gene silencing eng
dc.subject genetic transfection eng
dc.subject laser transfection eng
dc.subject neodymium YAG laser eng
dc.subject nonhuman eng
dc.subject pleomorphic adenoma eng
dc.subject protein depletion eng
dc.subject scanning electron microscopy eng
dc.subject tumor cell eng
dc.subject velocity eng
dc.subject Western blotting eng
dc.subject Animals eng
dc.subject Cell Line eng
dc.subject Cell Survival eng
dc.subject Dogs eng
dc.subject Gene Knockdown Techniques eng
dc.subject Gold eng
dc.subject Lasers eng
dc.subject Metal Nanoparticles eng
dc.subject RNA Interference eng
dc.subject RNA, Small Interfering eng
dc.subject Transfection eng
dc.subject.ddc 500 | Naturwissenschaften ger
dc.subject.ddc 610 | Medizin, Gesundheit ger
dc.title Gold Nanoparticle Mediated Laser Transfection for Efficient siRNA Mediated Gene Knock Down
dc.type Article
dc.type Text
dc.relation.issn 1932-6203
dc.relation.doi https://doi.org/10.1371/journal.pone.0058604
dc.bibliographicCitation.issue 3
dc.bibliographicCitation.volume 8
dc.bibliographicCitation.firstPage e58604
dc.description.version publishedVersion
tib.accessRights frei zug�nglich


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    Frei zugängliche Publikationen aus An-Instituten der Leibniz Universität Hannover

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