Protocol tips
Upstream tips |
Protocol tips |
Downstream tips |
Extract DNA from cell pellets using QiaAMP mini preps (Qiagen cat 51306) |
Use of a DNA amount of 0.15 ng, so that lower-level mixing of cell lines could be visible
Compare the STR profiles to known ATCC fingerprints (ATCC.org), to the Cell Line Integrated Molecular Authentication database
|
|
Upstream tips |
Extract DNA from cell pellets using QiaAMP mini preps (Qiagen cat 51306) |
Protocol tips |
Use of a DNA amount of 0.15 ng, so that lower-level mixing of cell lines could be visible
Compare the STR profiles to known ATCC fingerprints (ATCC.org), to the Cell Line Integrated Molecular Authentication database
|
Publication protocol
Cell Line authentication: Cell lines were grown to 70–80% confluence in a T-75 flask, trypsinized and the cell pellets were washed once with 1X phosphate buffered saline. DNA was extracted from cell pellets using QiaAMP mini preps (Qiagen cat 51306) and DNA was quantitated by Nanodrop spectrometry. Cell lines were validated by STR DNA fingerprinting using the AmpFℓSTR Identifiler kit according to manufacturer instructions (Applied Biosystems cat 4322288). A higher DNA amount of 0.15 ng DNA was used so that lower level mixing of cell lines could be visible. The samples were run on an Applied Biosystems 96-well 3730 Genetic Analyzer. Data were analyzed using GeneMapper (Applied Biosystems) and exported for STR comparisons. For the purposes of this paper, we did not change any of the automated calls. The STR profiles were compared to known ATCC fingerprints (ATCC.org), to the Cell Line Integrated Molecular Authentication database (CLIMA) version 0.1.200808 (http://bioinformatics.istge.it/clima/),18 to the complete 16 loci reference listed in Lorenzi, et al.,19 and to the MD Anderson fingerprint database. The STR profiles matched known DNA fingerprints (see Table 1 and Supplemental Table 1). All cell lines were also tested by Giemsa-banding and silver staining of metaphase chromosomes to verify that the cell lines were not cross-contaminated.
Full paper
Login or
join for free to view the full paper.
Reviews
AmpFLSTR™ Identifiler™ PCR Amplification Kit from Thermo Fisher Scientific has not yet been reviewed for this experiment
We'd love it if you would be the first to write a review!
Discussion
Start your discussion
Share your thoughts or question with experts in your field
Start a discussion
Papers
Check out relevant papers found by Labettor's AI that are relevant for performing Cell line authentication Renal carcinoma cell line Caki-1 using AmpFLSTR™ Identifiler™ PCR Amplification Kit from Thermo Fisher Scientific.
Manufacturer protocol
Download the product protocol from Thermo Fisher Scientific for AmpFLSTR™ Identifiler™ PCR Amplification Kit below.
Download manufacturer protocol
Videos
Check out videos that might be relevant for performing Cell line authentication Renal carcinoma cell line Caki-1 using AmpFLSTR™ Identifiler™ PCR Amplification Kit from Thermo Fisher Scientific. Please note that these videos are representative and steps or experiment specific processes must be kept in mind to expect desired results.
We haven't found any additional videos for this experiment / product combination yet.