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By method
Single B Cell Screening
NEW
Phage display
Hybridoma
By species
Mouse / Rat
Rabbit
Human
Dog
Cat
NEW
Camelids
Pig
NEW
By target
Anti-drug antibodies
Anti-hapten antibodies
By Format
Fab
scFv
VHH
Monoclonal antibody development
Humanization
Affinity maturation
Antibody-drug conjugates
Bispecific antibodies
Monoclonal antibody characterization
KD determination
Antibody sequencing
Antibody protein sequencing
Monoclonal antibody production
Recombinant antibody production
Stable cell line generation
Ascites / Culture supernatant
High throughput antibody production
NEW
Polyclonal antibody production
Polyclonal antibody production
Polyclonal Antibody Form
ELISA assay development
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Custom antibodies against cancer targets
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By expression system
E.coli
B. subtilis
Yeast
Baculovirus / insect cells
Mammalian cells
By expression type
Transient expression
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High throughput protein expression
High throughput antibody production
NEW
High throughput protein expression
Protein expression system evaluation and selection
Gene services
Gene services
Gene order form
Gene synthesis services
Peptide services
Peptide services
Custom peptide synthesis
Solid-phase peptide synthesis
Liquid phase peptide synthesis
Peptide form
HOT
Peptide Library
Peptide library generator
HOT
Overlapping peptide libraries
Truncation peptide libraries
Random peptide libraries
Alanine scanning peptide libraries
Scrambled peptide libraries
Positional scanning peptide libraries
Peptide conjugation and modification
Bioreagents
Bioreagents
Antibodies
Antibodies
Primary antibodies
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Therapeutic antibodies - Biosimilars
Isotype control antibodies
Anti-viral proteins
Anti-Immune checkpoint
Anti-Biomarker
Nanobodies
Anti-drug antibodies
Tag antibodies
Anti-interferons
Anti-Cytokine
Anti-GPCR
Anti-Chemokines & chemokine receptors
Anti-Spike & Anti-RBD
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Anti-Interleukins
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Stable cell lines for monoclonal antibody production
Maximize clinical success rates by boosting productivity and developability 3therapeutic antibodies on the market 50+ antibodies in preclinical evaluation 100+ successful projects >7 g/L production yields Maximize clinical success rates by boosting productivity and developability 3therapeutic antibodies on…
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FAQs – Recombinant antibodies
Recombinant antibodies are one of the most successful biological reagents for research, therapy, and diagnostics. Their use has become widespread due to the enhanced batch-to-batch consistency and purity obtained by recombinant antibody production methods. On this page, we answer all most frequently asked…
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How are recombinant antibodies produced?
Recombinant antibodies are monoclonal antibodies produced in recombinant expression systems. Their production process starts by taking the antibody-encoding genes from different sources and transfecting them into highly productive systems, while the term monoclonal antibody is more commonly used to describe antibodies natively produced by hybridomas. Check out other…
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What is a recombinant antibody?
Recombinant antibodies can be defined by comparison with conventional monoclonal antibodies. In this article, we cover the essential definition of recombinant antibodies and explain why these reagents are quickly replacing conventional monoclonal antibodies from hybridomas in many applications. Check out other frequently asked questions (FAQs) about recombinant…
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What are the benefits of using recombinant antibodies?
Recombinant antibodies are useful for many applications. Unlike conventional monoclonal antibodies produced in hybridomas, recombinant antibodies can be produced in different high-yield expression systems. But although diagnostic and therapeutic antibodies are generally produced in recombinant systems, most research antibodies are still produced in hybridomas. However, there are many…
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FAQs – Stable cell lines for monoclonal antibody production
How can we help? Got a question about our phage display platform or need a quote? Message us and we’ll get back to you in 48 hours or less. Contact Us…
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What are the benefits of generating stable cell lines for monoclonal antibody production?
Stable cell line generation for monoclonal antibody production is one of the most crucial steps to ensure the commercial viability of new biotherapeutics and diagnostic tools. Despite being an expensive, time and labor-intensive process, stable expression is currently the only suitable method for the production of large quantities…
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What is the difference between transient and stable monoclonal antibody production?
Monoclonal antibodies can be produced in mammalian systems using either transient or stable expression approaches. These two approaches have well-known advantages and limitations and each remains useful for different purposes and applications. In this article, we discuss the main differences between transient and stable monoclonal antibody production and…
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What are the main cell lines used for the stable production of monoclonal antibodies?
The stable production of antibodies, particularly therapeutic monoclonal antibodies, has long been dominated by mammalian recombinant systems. Despite their complex genetic background, cell lines like Chinese hamster ovary (CHO) and murine myeloma cells, are very amenable to growth in suspension in serum-free medium and highly tolerant to changes…
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How long does it take to generate stable cell lines for monoclonal antibody production?
The process of stable cell line generation is a laborious process reserved for the large-scale production of monoclonal antibody pharmaceuticals. In this article, we explain our recommendations and approaches to monoclonal antibody production. We detail the average lead times for this process. Check out other frequently asked…
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Anti-MERS-CoV S2 Protein Monoclonal Antibody, MERS-27
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