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Products Transfection
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In the „Transfection Reagent Selection Guide“ you can find existing references by setting different filters e.g. for your combination of nucleic acid and cell type. Appropriate keywords in the “Search references“ at the top of the page can also yield a result. A reference indicates that the found transfection reagent has been successfully used for the corresponding application. Ideally, tested transfection parameters and transfection efficiencies are specified.

No reference? > General Selection Guide

If the list does not include a reference concerning your cell type, this does not mean that there is no suitable reagent available, but only that there is no report of experiences with this cell type. In this case it is necessary to preselect (General Selection Guide) and test a reagent (Free Sample Offer). If you want to write an application note for us we will make you an Offer for consideration.



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 PDF 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

Mouse (18.5 dpc fetal or neonatal) ovaries Mouse genital tract unknown miRNA Metafectene publication H. Zhang et al., Reproduction, Jun 2014; 148: 43 - 54 Link

Rat (newborn) ovary cells Rat genital tract unknown siRNA RNA-Interference Metafectene publication L. Q. Xu et al., Sheng Li Xue Bao, Oct 2009; 61(5): 424-30

Rat primary granulosa cells isolated from Ovaries Rat genital tract primary cell plasmid Metafectene publication J.-H. Kim et al., Nature Commun., 2014, 5:2936, DOI: 10.1038/ncomms3936 Link

Bovine granulosa cells isolated from follicles (2-8 mm in diameter) of bovine ovaries Cow genital tract primary cell siRNA RNA-Interference Metafectene publication M. R. Plewes et al., bioRxiv, 2018, doi.org/10.1101/406256 Link

Hamster fetal ovary (organ culture) Hamster genital tract organ siRNA RNA-Interference Metafectene publication S. K. Roy et al., Methods and Protocols, 825, DOI 10.1007/978-1-61779-436-0_12

Primary porcine granulosa cells Swine genital tract primary cell plasmid Metafectene PRO publication S-y Jung, Dissertation, 2020, Mississippi State University Link

Mouse (18.5 dpc fetal or neonatal) ovaries Mouse genital tract unknown siRNA RNA-Interference Metafectene publication H. Zhang et al., Reproduction, Jun 2014; 148: 43 - 54 Link

Mouse fetal ovaries Mouse genital tract primary cell siRNA RNA-Interference Metafectene PRO publication R. Rosario et al., FASEB J., 2019, 33(12): 14221-14233, doi: 10.1096/fj.201901247R. Link

Mouse granulosa cells isolated from ICR mouse ovaries Mouse genital tract primary cell plasmid Metafectene publication J.-H. Kim et al., J. Reprod. Dev., 2014, 60 (1) :14-20 Link

208pgsl

Chinese hamster ovary cell line defective in UDP-xylose Synthase (derivat of CHO) Hamster genital tract cell line adherent plasmid Metafectene publication H. Bakker et al., J. Biol. Chem., Jan 2009; 284: 2576 - 2583 Link

208pgsl

Chinese hamster ovary cell line defective in UDP-xylose Synthase (derivat of CHO) Hamster genital tract cell line adherent plasmid Metafectene publication A. Ashikov et al., Glycobiology, Mar 2013; 23: 303 - 309 Link

22Rv1

Human prostate epithelial cancer cell line ATCC CRL-2505 Human genital tract cell line adherent plasmid Metafectene publication M. Ansems et al., The Prostate, 2012, 72: 1708-1717, DOI 10.1002/pros.22522

6E4 HeLaT

Human cervix adenocarcinoma cell line (derivative of HeLa) Human genital tract cell line adherent sgRNA cotransfection (plasmid/sgRNA) Metafectene publication D. Kim et al., Nat ure Struct ural & Molec ular Biology, 2020, 27: 581–588, doi.org/10.1038/s41594-020-0427-3

6E4 HeLaT

Human cervix adenocarcinoma cell line (derivative of HeLa) Human genital tract cell line adherent plasmid cotransfection (plasmid/sgRNA) Metafectene publication D. Kim et al., Nat ure Struct ural & Molec ular Biology, 2020, 27: 581–588, doi.org/10.1038/s41594-020-0427-3

6E4 HeLaT

Human cervix adenocarcinoma cell line (derivative of HeLa) Human genital tract cell line adherent sgRNA CRISPR Metafectene publication D. Kim et al., Nat ure Struct ural & Molec ular Biology, 2020, 27: 581–588, doi.org/10.1038/s41594-020-0427-3

6E4 HeLaT

Human cervix adenocarcinoma cell line (derivative of HeLa) Human genital tract cell line adherent plasmid CRISPR Metafectene publication D. Kim et al., Nat ure Struct ural & Molec ular Biology, 2020, 27: 581–588, doi.org/10.1038/s41594-020-0427-3

A-2780

Human ovarian carcinoma cell line Human genital tract cell line adherent siRNA RNA-Interference K2 Transfection System publication M. Kullmann, 2016, Rheinische Friedrich-Wilhelms-Universität Bonn Link

A-2780

Human ovarian carcinoma cell line Human genital tract cell line adherent siRNA RNA-Interference K2 Transfection System application note

A-2780

Human ovarian carcinoma cell line Human genital tract cell line adherent siRNA RNA-Interference Metafectene PRO publication C. P. Masamha et al., Cancer Res., Aug 2009; 69: 6565 - 6572 Link

A-2780

Human ovarian carcinoma cell line Human genital tract cell line adherent siRNA RNA-Interference K4 Transfection System application note

A-2780

Human ovarian carcinoma cell line Human genital tract cell line adherent plasmid stable transfection Metafectene PRO publication C.F.T. Taute, PhD Thesis, 2013, University of the Western Cape Link

A-2780

Human ovarian carcinoma cell line Human genital tract cell line adherent siRNA RNA-Interference K2 Transfection System application note

A-2780

Human ovarian carcinoma cell line Human genital tract cell line adherent siRNA RNA-Interference K4 Transfection System publication S. Möltgen et al., Cells, 2020, 9, 1322, doi:10.3390/cells9061322 Link

A-2780

Human ovarian carcinoma cell line Human genital tract cell line adherent plasmid Metafectene PRO publication C. P. Masamha et al., Cancer Res., Aug 2009; 69: 6565 - 6572 Link

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