The Anti-CTLA-4/CD152 Antibody is a humanized monoclonal antibody produced in Chinese Hamster Ovary (CHO) cells, specifically targeting CTLA-4 (CD152). This antibody comprises a human IgG4SP heavy chain and a human kappa light chain, with an approximate molecular weight of 145 kDa. For experimental controls, the recommended isotype control is Human IgG1 kappa. This antibody is essential for research focusing on immune checkpoint regulation and cancer immunotherapy.
The Anti-CTLA-4/CD152 Antibody is a humanized monoclonal antibody produced in Chinese Hamster Ovary (CHO) cells, specifically targeting CTLA-4 (CD152). This antibody comprises a human IgG4SP heavy chain and a human kappa light chain, with an approximate molecular weight of 145 kDa. For experimental controls, the recommended isotype control is Human IgG1 kappa. This antibody is essential for research focusing on immune checkpoint regulation and cancer immunotherapy.
This calculator helps you calculate mass of compound based on solution concentration, volume and molecular weight in a specific solution using the formula:
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Calculate the dilution required to prepare a stock solution.This equation is commonly abbreviated as: C1V1 = C2V2
Frequently Asked Questions
What are Biosimilar Antibodies?
Biosimilar antibodies are research-grade recombinant antibodies designed to closely resemble approved therapeutic antibodies in terms of amino acid sequence, structural characteristics, and biological activity. These antibodies are generated using recombinant expression technologies and retain the same variable regions as their corresponding reference therapeutics, thereby preserving target specificity and binding affinity. Owing to these properties, biosimilar antibodies serve as reliable and cost-effective research reagents for applications in drug discovery, pharmacological studies, and basic biomedical research.
Research-grade biosimilar antibodies have been successfully expressed and functionally validated against a wide range of widely studied targets. These antibodies can be directly utilized as positive control reagents in drug discovery programs, as well as reference tools for rapid verification of the biological functions of target proteins in biochemical and cellular assays.