Referenzen
Produkte Transfektion
Kostenlose Testsamples
Anwendungshinweise:
Im „Transfection Reagent Selection Guide“ können Sie durch Filterfunktionen z.B. für Ihre Kombination aus zu transfizierender Zelle und Nukleinsäure die Liste vorhandener Referenzen durchsuchen. Ebenso können Sie im Feld „Referenzen durchsuchen“ am Anfang der Seite mit passenden Schlagwörtern zu einem Ergebnis gelangen. Eine Referenz zeigt an, dass das gefundene Transfektionsreagenz bereits erfolgreich für die entsprechende Anwendung verwendet wurde. Im Idealfall sind getestete Transfektionsparameter und Transfektionseffizienzen angegeben.
Keine Referenz? > Allgemeine Auswahlhilfe
Wenn Sie keine Referenz gefunden haben, heißt das nicht, dass kein passendes Reagenz zur Verfügung steht, sondern lediglich, dass bisher keine Erfahrungsberichte vorliegen. In diesem Falle kann durch eine Vorauswahl ein erfolgsversprechendes Transfektionsreagenz ausgewählt (Allgemeine Auswahlhilfe) und letztendlich ausgetestet (Kostenlose Testsamples) werden. Wenn Sie einen Erfahrungsbericht für uns schreiben möchten machen wir Ihnen ein Angebot für eine Gegenleistung.
CELL TYPE | DESCRIPTION OF CELL TYPE | CAT.NO. | SPECIES | ORIGIN OF CELLS | COMMON CELL TYPE | GROWTH PROPERTIES | NUCLEIC ACID / DELIVERED MOLECULE | APPLICATION | PRODUCT | REFERENCE TYPE | BIBLIOGRAPHIC DATA | LINK | |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Spodoptera exigua larval hemocoel (beet armyworm) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | M. Mahi Imam Mollah et al., PLoS Pathog., 2021, 17(3): e1009467, doi.org/10.1371/journal.ppat.1009467 | Link | ||||
Human primary hepatocytes | Human | digestive organs | primary cell | adherent | miRNA | Metafectene PRO | publication | J.-S. Park et al., BMC Res. Notes, 2011, 4: 8, doi:10.1186/1756-0500-4-8 | Link | ||||
Plutella xylostella hemocoel of L3D1 NP larvae (diamondback or cabbage moth) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | S. Kumar et al., J. of General Virology, 2016, 97: 2780-2796; DOI 10.1099/jgv.0.000560 | Link | ||||
Plutella xylostella hemocoel of late second instar larvae | Insect | unknown | unknown | dsRNA | cotransfection (plasmid/dsRNA) | Metafectene PRO | publication | S. Kumar et al., Comp. Biochem. and Physiol., 2014, Part A 177: 27-34, doi.org/10.1016/j.cbpa.2014.07.017 | |||||
Mouse primary hepatocytes | Mouse | digestive organs | primary cell | adherent | siRNA | RNA-Interference | Metafectene PRO | publication | A. D. Joshi et al., J. Pharmacol. Exp. Ther., Mar 2015; 353: 201 - 212 | ||||
Human cutaneous melanoma (FFPE tissue sections) | Human | skin | primary cell | adherent | plasmid | Metafectene PRO | publication | M. Venza et al., Biochim. et Biophys. Acta, 2015, 1849: 247-256; doi.org/10.1016/j.bbagrm.2014.12.004 | |||||
Spodoptera exigua larvae (L5) (beet armyworm) | Insect | unknown | unknown | dsRNA | RNA-Interference | Metafectene PRO | publication | M. T. H. Hrithik et al., Insects, 2021, 12,449, doi.org/10.3390/insects12050449 | Link | ||||
Spodoptera exigua third instar larvae (beet armyworm) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | J.-B. Lee et al., Arch. Insect Biochem. Physiol., 2017, 94: e21371, DOI: 10.1002/arch.21371 | |||||
Mouse articular chondrocytes | Mouse | unknown | primary cell | adherent | siRNA | RNA-Interference | Metafectene PRO | publication | S. Kim et al., Nature Communications, 2019, 10:4898, doi.org/10.1038/s41467-019-12910-2 | Link | |||
Mouse primary hepatocytes | Mouse | digestive organs | primary cell | adherent | siRNA | RNA-Interference | Metafectene PRO | publication | A. D. Joshi et al., Mol. Pharmacol., Sept 2017, 92:366-374, doi.org/10.1124/mol.117.108878 | ||||
Rat primary neonatal cardiomyocytes (isolated from the heart of 18-day-old embryos of Sprague-Dawley rats) | Rat | muscle | primary cell | adherent | plasmid | K2 Transfection System | publication | E. Echeverría et al., Front. Pharmacol., 2020, 11: 113, doi: 10.3389/fphar.2020.00113 | Link | ||||
Mouse fibroblast cell line, deficient of N-WASP | Mouse | unknown | cell line | adherent | plasmid | Metafectene | publication | S. Benesch et al., J. Cell Sci., Jul 2005; 118: 3103 - 3115 | Link | ||||
Plutella xylostella hemocoel of NP3 larvae (diamondback or cabbage moth) | Insect | unknown | unknown | plasmid | in vivo application | Metafectene PRO | publication | S. Kumar et al., PLOSONE, 2017, doi.org/10.1371/journal.pone.0177066 | Link | ||||
Primary human skin fibroblasts | Human | skin | primary cell | adherent | plasmid | Metafectene | publication | T. Kiel, Dissertation 2012, Julius-Maximilians-Universität Würzburg | |||||
Plutella xylostella, third instar larvae (diamondback or cabbage moth) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | Z. Wang et al., PLoS Genet., 2021, 17(9): e1009751. https://doi.org/10.1371/journal.pgen.1009751 | Link | ||||
Spodoptera exigua (beet armyworm) | Insect | unknown | unknown | dsRNA | RNA-Interference | Metafectene PRO | publication | Y. Park et al.,BMC Biology, 2014, 12: 46, doi:10.1186/1741-7007-12-46 | Link | ||||
Mouse cultured fetal ovaries | Mouse | genital tract | primary cell | siRNA | RNA-Interference | Metafectene | publication | B. Xu et al., PLoS One, 2011, 6(1): e16046, doi: 10.1371/journal.pone.0016046 | Link | ||||
Spodoptera exigua fifth instar larvae (L5) (beet armyworm) | Insect | unknown | unknown | dsRNA | RNA-Interference | Metafectene PRO | publication | J. Park et al., Archives of Insect Biochem. and Physiol., 2014, 85(4) :234-247, DOI: 10.1002/arch.21156 | |||||
Human primary skin fibroblasts | Human | skin | primary cell | adherent | siRNA | RNA-Interference | Metafectene | publication | M. Milani et al., ResearchSquare, 2021, doi.org/10.21203/rs.3.rs-138253/v1 | Link | |||
Plutella xylostella hemocoel of early third instar larvae (diamondback or cabbage moth) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | S. Kumar et al., Scientific Reports, 7:43287, DOI: 10.1038/srep43287 | Link | ||||
Spodoptera exigua fifth instar larvae (L5) (beet armyworm) | Insect | unknown | unknown | dsRNA | RNA-Interference | Metafectene PRO | publication | J. Park et al., PLoS ONE, 2014, 9(9): e105717, doi:10.1371/journal.pone.0105717 | Link | ||||
Spodoptera exigua forth and fifth instar larvae (beet armyworm) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | S. Ahmed et al., J. of Invertebrate Pathology, 2018, doi.org/10.1016/j.jip.2018.05.009 | |||||
Maruca vitrata late L4 larvae (legume pod borer) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | A. Al Baki et al., Pest Manag. Sci., 2020, 76: 1020–1030, DOI: 10.1002/ps.5612 | Link | ||||
Human fibrous dysplasia cells | Human | unknown | unknown | plasmid | Metafectene | publication | P. Orth et al., Mol Biotechnol, Feb 2008; 38(2): 137-44 | ||||||
Spodoptera exigua | Insect | unknown | unknown | plasmid | in vivo application | Metafectene PRO | publication | S. Ahmed et al., J. of Exp. Biology, 2019, 222, doi:10.1242/jeb.207019 | Link |