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Elabscience

SKU:E-AB-66477

FEZ1 Polyclonal Antibody

FEZ1 Polyclonal Antibody

Regular price $420.00 USD
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FEZ1 Polyclonal Antibody

The FEZ1 polyclonal antibody is a highly specific and reliable tool for the detection and analysis of FEZ1 protein expression in various biological samples. This antibody has been meticulously developed and rigorously validated to ensure optimal performance and accuracy in immunohistochemistry (IHC), immunofluorescence (IF), and western blotting applications.

FEZ1, also known as Fasciculation and Elongation Protein Zeta 1, is a crucial regulator of neuronal development and function. It plays a pivotal role in axon guidance, neurite outgrowth, and synaptic plasticity. Dysregulation of FEZ1 has been implicated in various neurological disorders, making it an important target for research and therapeutic interventions.

The FEZ1 polyclonal antibody has been generated using high-quality immunogens and state-of-the-art immunization techniques. It exhibits exceptional specificity towards FEZ1, with minimal cross-reactivity to other related proteins. This ensures accurate and reliable detection of FEZ1 expression in complex biological samples.

The antibody demonstrates excellent sensitivity, allowing for the detection of low levels of FEZ1 protein expression. It exhibits a strong signal-to-noise ratio, enabling precise quantification and analysis of FEZ1 levels in different experimental conditions. This antibody also exhibits minimal background staining, ensuring clear and interpretable results.

The FEZ1 polyclonal antibody is compatible with a wide range of experimental techniques, including IHC, IF, and western blotting. It has been extensively validated in various cell lines and tissue samples, ensuring consistent and reproducible results across different experimental setups.

In summary, the FEZ1 polyclonal antibody is a highly reliable and specific tool for the detection and analysis of FEZ1 protein expression. Its exceptional sensitivity, specificity, and compatibility with multiple experimental techniques make it an invaluable asset for researchers studying neuronal development, synaptic plasticity, and neurological disorders.

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