Transfection is a powerful technique that enables the study of the function of genes and gene products in cells. Based on the nature of experiments, we may need a stable DNA transfection in cells for persistent gain-of-function or loss-of-function of the target gene. For stable transfection, integration of a DNA vector into the chromosome is crucial which requires selective screening and clonal isolation. By carefully selecting a viral delivery system and related reagents we can ensure safe and highly-efficient delivery of expression constructs for high-level constitutive or inducible expression in any mammalian cell type.
Get tips on using Purified NA/LE Hamster Anti-Mouse CD40 to perform Flow cytometry Anti-bodies Mouse - CD40
Get tips on using Rat GFR alpha-1/GDNF R alpha-1 Antibody to perform Immunohistochemistry Mouse - GFRA1
Get tips on using Mouse TNF alpha ELISA Kit (ab208348) to perform ELISA Mouse - TNF-alpha
Get tips on using Mouse TNF-alpha Quantikine ELISA Kit to perform ELISA Mouse - TNF-alpha
Get tips on using Mouse TNF Alpha PicoKine™ ELISA Kit to perform ELISA Mouse - TNF-alpha
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Get tips on using Mouse Integrin alpha E/CD103 Antibody to perform Flow cytometry Anti-bodies Mouse - CD103
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ELISA is the most commonly used method of detecting and quantifying the concentration of an antigen in an unknown sample. During the experiment, If you get a weak signal, then make sure reagents are at room temperature before starting the assay. Try increasing incubation times to ensure maximal antibody binding and amplify the signal. Secondly, if you get values above 0 in the negative control indicates a high background signal. Try to consider reducing your antibody concentration and prevent non-specific binding of antibodies by using affinity-purified antibody and suitable blocking buffers. To avoid high well to well variation, do not stack plates during incubation, no bubbles in the plate and wash wells thoroughly to avoid variation.
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