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 | |
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143B |
Human osteosarcoma cell line | ATCC CRL-8303 | Human | bone | cell line | adherent | siRNA | RNA-Interference | Metafectene SI | publication | V. R. Lo Vasco et al., Anticancer Res, Aug 2014; 34: 4069 - 4075 | ||
Mouse primary hepatocytes | Mouse | digestive organs | primary cell | adherent | plasmid | Metafectene PRO | publication | A. D. Joshi et al., J. Pharmacol. Exp. Ther., Mar 2015; 353: 201 - 212 | |||||
Plutella xylostella hemocoel of early third instar larvae (diamondback or cabbage moth) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | J. Zhou et al., Pest Manag. Sci., 2020, 76: 712–720, DOI: 10.1002/ps.5569 | Link | ||||
Plutella xylostella larval hemocoel (diamondback or cabbage moth) | Insect | unknown | unknown | dsRNA | RNA-Interference | Metafectene PRO | publication | R. Ali et al., Comparative Biochem. and Physiol., 2015, Part A 179: 44-53; doi.org/10.1016/j.cbpa.2014.09.004 | |||||
Rat primary skeletal myoblast cells (from male newborn Lewis rats) | Rat | muscle | primary cell | adherent | plasmid | Metafectene PRO | publication | B. Blumenthal et al., Eur. J. Cardio-thoracic Surg., 2011, 40: e135—e141, doi:10.1016/j.ejcts.2011.05.026 | Link | ||||
Spodoptera exigua first-day fifth-instar larvae L5D1 (beet armyworm) | Insect | unknown | unknown | dsRNA | RNA-Interference | Metafectene PRO | publication | S. Shrestha et al., Archives of Insect Biochem. and Physiol., 2015, 89(4): 218-229; DOI: 10.1002/arch.21238 | |||||
Spodoptera exigua adult larvae (beet armyworm) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | S. Ahmed et al., Arch. Insect Biochem. Physiol.,2021, 106: e21748, doi.org/10.1002/arch.21748 | Link | ||||
Xenopus laevis (african clawed frog) intestinal fragments | Frog | digestive organs | unknown | plasmid | Metafectene EASY | application note | ![]() |
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Spodoptera exigua larval haemocoel (3-day-old L4 larvae, beet armyworm) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | S. M. Sajjadian et al., Open Biol., 2020, 10: 200197, doi/10.1098/rsob.200197 | Link | ||||
Mouse cultured hippocampal neurons | Mouse | brain | primary cell | adherent | plasmid | Metafectene PRO | publication | A. Schneider, Dissertation, 2018, Albert-Ludwigs-Universität Freiburg | |||||
Mouse primary embryonic forebrain cells | Mouse | brain | primary cell | plasmid | Metafectene | publication | C. Karl et al., J Neurochemistry, 2005, 92, 264-282 | ||||||
Mouse primary hepatocytes | Mouse | digestive organs | primary cell | adherent | siRNA | RNA-Interference | Metafectene PRO | publication | C. Castano et al., PNAS, 2020, 117, 48: 30335–30343, doi:10.1073/pnas.2016112117/-/DCSupplemental | ||||
Maruca vitrata hemocoel of L5 larvae (legume pod borer) | Insect | unknown | unknown | dsRNA | RNA-Interference | Metafectene PRO | publication | A. A. Baki et al., Arch. Insect Biochem. Physiol., 2019:100:e21524, doi.org/10.1002/arch.21524 | |||||
Spodoptera exigua larvae (L5) (beet armyworm) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | M. Vatanparast et al., Dev. and Comp. Immunology, 2019, 95: 108–117, doi.org/10.1016/j.dci.2019.02.008 | Link | ||||
Maruca vitrata hemocoel of L5D1 larvae (legume pod borer) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | M. A. Al Baki et al., PLoS ONE, 2018, 13 (10): e0204935, doi.org/10.1371/journal. pone.0204935 | Link | ||||
Spodoptera exigua hemocoel first-day larvae L5 (beet armyworm) | Insect | unknown | unknown | dsRNA | RNA-Interference | Metafectene PRO | publication | Y. Kim et al., Peptides, 2015, 68: 91-98; doi.org/10.1016/j.peptides.2015.02.003 | |||||
Rat embryonic cerebral cortex | Rat | brain | unknown | plasmid | Metafectene PRO | application note | ![]() |
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Plutella xylostella hemocoel of late second instar larvae | Insect | unknown | unknown | plasmid | in vivo application | 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 immortalized skin fibroblasts | Mouse | unknown | unknown | adherent | plasmid | Metafectene PRO | publication | E. Bartova et al., Protoplasma, 2017, 254: 2035-2043, DOI 10.1007/s00709-017-1076-1 | |||||
Mouse retinal ganglion cells (from multipotent retinal stem cells) | Mouse | sensory organs | stem cell | adherent | plasmid | K2 Transfection System | publication | D.-W. Chen et al., Prec. Nanomed., 2018, 1(2):106-123, DOI: 10.29016/180711.1 | Link | ||||
Plutella xylostella larval hemocoel (diamondback or cabbage moth) | Insect | unknown | unknown | dsRNA | RNA-Interference | Metafectene PRO | publication | L. Gong et al., Toxins, 2020, 12: 76, doi:10.3390/toxins12020076 | Link | ||||
Human primary fibroblasts (derived from ALS patients) | Human | unknown | cell line | adherent | siRNA | RNA-Interference | Metafectene | publication | M. Milani et al., J. of Neuroinflammation, 2021, 18: 132, doi.org/10.1186/s12974-021-02184-1 | Link | |||
Spodoptera exigua (beet armyworm) | Insect | unknown | unknown | dsRNA | in vivo application | Metafectene PRO | publication | Y. Park et al., Arch. Insect Biochem. Physiol., 2017, 95: e21386, oi.org/10.1002/arch.21386 | |||||
Mouse articular chondrocytes | Mouse | other | primary cell | adherent | plasmid | cotransfection (plasmid/plasmid) | Metafectene | publication | J. Rhee, J. of Biol. Chem., 2012, 287, 15: 11751–11760, DOI 10.1074/jbc.M111.281014 | Link | |||
Mouse immortalized differentiated podocytes | Mouse | urinary system | cell line | adherent | siRNA | RNA-Interference | K2 Transfection System | publication | J. G. Greiten et al., The FASEB Journal, 2021, 35: e21560, DOI: 10.1096/fj.202001179RR | Link |