How Custom Polyclonal Antibodies are very Useful
Antigen-processing cells turn
dormant cells into plasmocytes after an immune response, which releases
immunoglobulins that are specific for that antigen. Each plasmocyte creates
immunoglobulins that are focused on a single antigen epitope. Because custom
polyclonal antibodies are made up of a combination of
immunoglobulins released by many plasmocyte clones, polyclonal antibodies are
able to recognize various epitopes on a single antigen. The immunogen causes
the host immune system to react, leading to the creation of antibodies that are
specific to the foreign molecule.
We provide a broad range of
high-quality, personalized polyclonal antibody production services that are
tailored to meet your demands. Our team has used hosts such as rabbits, mice,
and rats to manufacture a lot of high-quality bespoke polyclonal antibodies.
The PolyExpressTM peptide immunization package takes about a few days to
complete, beginning with the design of the peptide antigen utilizing our unique
tool. The synthesis of protein antigen begins with the protein immunization
package, which promises to supply antigen affinity-purified antibodies sooner
than any other vendor. For a lot of years, we have provided biopharma,
diagnostics, and academic scientists with high-quality polyclonal antibodies.
We have the knowledge and breadth
of expertise to successfully manage the production of your custom polyclonal
antibodies. Every polyclonal antibody production project is tailored to meet
your unique requirements and can include any or all of the workflow steps,
including consultation, peptide or protein antigen production, antibody
generation, purification, and conjugation of reporter molecules. Antibodies are
generated from a variety of species, including New Zealand white rabbits,
goats, sheep, guinea pigs, rats, mice, and donkeys. Using modified peptides, we
are experts at producing antibodies that are specific for post-translational
modifications, such as phospho-epitopes, acetylation, methylation,
hydroxylation, and more. We are also capable of optimizing the design and
synthesis of peptides and recombinant proteins.
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