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Elabscience

SKU:E-AB-F1101B-50μg

Biotin Anti-Mouse IFN-γ Antibody[XMG1.2]

Biotin Anti-Mouse IFN-γ Antibody[XMG1.2]

Regular price $200.00 USD
Regular price Sale price $200.00 USD
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The BIOTIN ANTI-MOUSE IFN-Γ ANTIBODY[XMG1.2] is a highly specific and reliable tool for the detection and quantification of mouse interferon-gamma (IFN-γ) in various biological samples. This antibody, designated as XMG1.2, has been extensively validated and exhibits exceptional affinity and selectivity towards mouse IFN-γ.

With its biotin conjugation, this antibody offers enhanced versatility and compatibility with a wide range of experimental techniques, including immunohistochemistry, flow cytometry, and ELISA. Its biotin moiety allows for easy and efficient detection using streptavidin-based detection systems, enabling precise and accurate measurement of IFN-γ levels.

The BIOTIN ANTI-MOUSE IFN-Γ ANTIBODY[XMG1.2] demonstrates exceptional sensitivity, enabling the detection of low levels of IFN-γ with high signal-to-noise ratios. This attribute makes it an ideal choice for researchers and scientists working in immunology, infectious diseases, and related fields, where accurate measurement of IFN-γ is crucial for understanding immune responses and disease progression.

Furthermore, this antibody has been rigorously tested for its specificity, ensuring minimal cross-reactivity with other cytokines or proteins. This specificity guarantees reliable and reproducible results, allowing for confident interpretation of experimental data.

Manufactured under stringent quality control standards, the BIOTIN ANTI-MOUSE IFN-Γ ANTIBODY[XMG1.2] offers exceptional performance and consistency, ensuring reliable and reproducible results across experiments and batches. Its long shelf life and stability further contribute to its value as a dependable tool for IFN-γ detection.

In summary, the BIOTIN ANTI-MOUSE IFN-Γ ANTIBODY[XMG1.2] is a highly specific, sensitive, and reliable reagent for the detection and quantification of mouse IFN-γ. Its biotin conjugation, exceptional specificity, and rigorous quality control make it an indispensable tool for researchers seeking to unravel the complexities of immune responses and cytokine signaling pathways.
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