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 | |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Human primary pterygium fibroblasts | Human | sensory organs | primary cell | adherent | plasmid | RNA-Interference | Metafectene PRO | publication | Y. Su et al., Mol. Vis., 2011, 17: 247–256 | Link | |||
Human tenon’s capsule fibroblasts | Human | sensory organs | unknown | oligonucleotide | Metafectene | publication | H. Mietz et al., Invest. Ophthalmol. Vis. Sci., May 2003; 44: 4290 | ||||||
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 | ||||
Mouse (C57Bl/L6) cells in the area of the organ of Corti | Mouse | sensory organs | unknown | plasmid | in vivo application | Metafectene | publication | M. Praetorius et al., HNO, May 2008; 56(5): 524-9 | |||||
Mouse (BALB/c mice) organ of Corti explants | Mouse | sensory organs | unknown | miRNA | K2 Transfection System | publication | Y. Li et al., Cell Death and Disease, 2016, 7:e2362, doi:10.1038/cddis.2016.246 | Link | |||||
A7 |
Rat transformed retinal astrcyte cell line | Rat | sensory organs | cell line | adherent | plasmid | K2 Transfection System | publication | D. W. Chen et al., Drug Deliv. and Transl. Res., DOI 10.1007/s13346-016-0324-9 | ||||
hConEC |
Human primary conjunctival epithel cells | Human | sensory organs | primary cell | adherent | miRNA | Metafectene SI | publication | Q. Pilson et al., Scientific Reports, 2020, 10: 7484, doi.org/10.1038/s41598-020-64422-5 | Link | |||
hESC-RPE |
Human embryonic stem cell-derived retinal pigment epithelium cells | Human | sensory organs | primary cell | siRNA | RNA-Interference | Metafectene PRO | publication | E. Ramsay et al., Pharmaceutics, 2020, 12(7): 667, doi: 10.3390/pharmaceutics12070667 | Link | |||
hLEC |
Human lens epithelial cell line | Human | sensory organs | cell line | adherent | plasmid | stable transfection | Metafectene PRO | publication | Y. Su et al., Molecular Vision, 2012, 18: 601-605 | Link | ||
hLEC |
Human lens epithelial cell line | Human | sensory organs | cell line | adherent | plasmid | RNA-Interference | Metafectene PRO | publication | Y. Su et al., Molecular Vision, 2012, 18: 601-605 | Link | ||
hOMs |
Human primary olfactory mucosal cells | Human | sensory organs | primary cell | adherent | siRNA | RNA-Interference | Metafectene SI | publication | S. Chew et al., Chew et al. Particle and Fibre Toxicology , 2020, 17: 18, doi.org/10.1186/s12989-020-00352-4 | Link | ||
hRPE |
Human retinal pigment epithelium cells | Human | sensory organs | unknown | plasmid | Metafectene PRO | publication | I. Knütter et al., J. Pharmacol. Exp. Ther., Nov 2008; 327: 432 - 441 | Link | ||||
hRPEC |
Human retinal pigment epithelial cells | Human | sensory organs | primary cell | adherent | siRNA | stable transfection | Metafectene | publication | I-Ta Lee et al., PLoS ONE 10(2): e0117911. doi:10.1371/journal.pone.0117911 | Link | ||
hTM |
Human trabecular meshwork cells | Human | sensory organs | primary cell | adherent | siRNA | RNA-Interference | Metafectene PRO | publication | Y. Su et al., Molecular Vision, 2012, 18: 1881-1884, | Link | ||
MiEye8 retinal 3D neurospheres |
Mouse retinal 3D neurospheres (from multipotent retinal stem cells) | Mouse | sensory organs | stem cell | plasmid | 3D cell culture | K2 Transfection System | publication | D.-W. Chen et al., Prec. Nanomed., 2018, 1(2):106-123, DOI: 10.29016/180711.1 | Link | |||
NTM |
Human normal trabecular meshwork cells | Human | sensory organs | primary cell | adherent | plasmid | K2 Transfection System | publication | T. A. Carreon et al., SCIENTIfIC REPORTS, nature.com, 7:452, DOI:10.1038/s41598-017-00430-2 | ||||
NTM |
Human normal trabecular meshwork cells | Human | sensory organs | primary cell | adherent | plasmid | K2 Transfection System | publication | T. Carreon, University of Miami, Scholarly Repository, Open Access Dissertations | Link | |||
PEC |
Human primary conjunctival cells | Human | sensory organs | primary cell | adherent | miRNA | Metafectene SI | publication | Q. Pilson et al., Scientific Reports, 2020, 10: 7484, doi.org/10.1038/s41598-020-64422-5 | Link | |||
RPE-J |
Rat retinal pigment epithelial cell line | ATCC CRL-2240 | Rat | sensory organs | cell line | adherent | siRNA | RNA-Interference | Metafectene PRO | publication | Y. Dun et al., Free Radical Biology and Medicine, 2013, 65: 1340–1351, doi.org/10.1016/j.freeradbiomed.2013.10.006 | ||
RPE-J |
Rat retinal pigment epithelial cell line | ATCC CRL-2240 | Rat | sensory organs | cell line | adherent | siRNA | RNA-Interference | Metafectene PRO | publication | Y. Mao et al., Mol. Biol. Cell, Mar 2012; 23: 1104 - 1114 | Link | |
rTF |
Rabbit tenon’s capsule fibroblasts | Rabbit | sensory organs | unknown | adherent | plasmid | in vivo application | Metafectene PRO | publication | F. Wang et al., Invest. Ophthalmol. Vis. Sci., Mar 2010; 51: 1475 - 1482 | |||
rTM |
Rat trabecular meshwork cells | Rat | sensory organs | primary cell | adherent | plasmid | Metafectene PRO | publication | Y. Su et al., Mol. Biol. Rep., 2013, 40: 6091–6096, DOI 10.1007/s11033-013-2720-2 | ||||
WERI-Rb1 |
Human retinoblastoma cell line | ATCC HBT-169 | Human | sensory organs | cell line | suspension | siRNA | RNA-Interference | Metafectene | publication | Y. Liu et al., Pathology - Res. and Practice, 2019, 215, 152641, doi.org/10.1016/j.prp.2019.152641 | Link | |
WERI-Rb1 |
Human retinoblastoma cell line | ATCC HBT-169 | Human | sensory organs | cell line | suspension | siRNA | RNA-Interference | Metafectene | publication | Y. Liang et al., Experimantal and Therapeutic Medicine, 2017, 14: 2367-2372, DOI: 10.3892/etm.2017.4779 | Link | |
Y-79 |
Human retinablastoma cell line | ATCC HTB-18 | Human | sensory organs | cell line | suspension | siRNA | RNA-Interference | Metafectene | publication | Y. Gao et al., Mol. Cell Biochem., 2016, 414:77-84; DOI 10.1007/s11010-016-2660-y |