Acsent ResearchTM Cell Authentication Service helps you ensure the cell line you used in your experiment accurately matches the intended donor and tissue of origin.
Cell Authentication is to identity the cell culture and material used in the experiment to ensure the validity of results and the reproducibility of experiments. This generally use short tandom repeat(STR) analysis to generate a profile for the tested cells which is aligned with the original profile in database.
We anthenticated cell lines in our collection and have extensive experience in cell authentication.
Cells and cell lines are widely used in biological experiments as models to investigate biological activities and support medical research and development. When cells carry defined donor information, gene background, and disease state, they enable scientists to gain deeper insights into specific diseases.
However, issues such as mislabeling, cross-contamination, or cell line replacement could happen and make the result meaningless. In some cases, entire research projects have been compromised, or published papers retracted due to the use of misidentified cell lines. An increasing number of studies have been found to use misidentified cell lines (Figure 1); therefore, it is advised to perform cell authentication at the start, middle, and end of the project.
Figure 1. Numbers of contaminated literature (Horbach and Halffman, 2017)
Cell authentication is performed using Short Tandem Repeat (STR) analysis, a reliable method that combines multiplex PCR and capillary electrophoresis. STRs are regions in the genome composed of repeated sequences of 2-6 base pairs. The number of these consecutive repeating units can vary between people, making STRs ideal genetic markers for identification. During the assay, specific STR loci are targeted and amplified by PCR with fluorescence dye, generating billions of copies. These fluorescent copies are then separated by size and detected through capillary electrophoresis. By analyzing the resulting STR profiles, a unique DNA fingerprint is generated for each cell line, allowing accurate comparison and confirmation of cell identity.
Figure 2. The general process of cell authenciation using capillary electrophoresis.
Horbach, S. P., & Halffman, W. (2017). The ghosts of HeLa: How cell line misidentification contaminates the scientific literature. PloS one, 12(10), e0186281.
What you should do (Sample requirement)
To send the sample to us for cell authentication, please follow the requirements below:
Sample: at least 1×106 cells in growth media, freezing media, or phosphate-buffered saline (PBS); Packaging: ice pack or dry ice.
If you have limited sample quantities or unique sample types, please contact us in advance for further instructions.
What will we do
Perform multiplex PCR and capillary electrophoresis to generate a STR profile Compare the generated STR profile to the STR reference profile from the cell bank Certificate of authentication (optional) Consultation for follow-up actions (if needed)
Our identification process follows the criteria outlined in ANSI/ATCC ASN-0002-2022 and ANSI/ATCC ASN-0003-2015, published by ANSI and ATCC, ensuring the highest level of reliability and compliance.
How to Order
Please contact us with a brief description of your specific need, such as the type of cells you want to authenticate and relevant background. Our expert will consult with you soon to discuss your needs and assist you with the next steps.
FAQ
What types of cells can be authenticated with your service?
We currently offer STR-based authentication for human cell lines. For other species, such as mouse, please contact us to discuss available options or custom solutions.
When should I check my cell lines?
We recommend performing cell authentication at the start, middle, and end of a project, or before publication.
What happens if my cell line does not match any known reference profile?
If your cell line does not match a known cell line, we will still provide the STR profile and assist you with interpretation and recommended next steps, including possible further validation.
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