Science

Application Areas

Our VHH nanobodies and RNA solutions support research programs across four priority medical domains.

Immunotherapy

Thanks to their small size (~15 kDa) and high affinity, VHH nanobodies reach epitopes often inaccessible to conventional antibodies — active-site pockets, surface grooves, crowded regions. This makes them valuable tools for developing immunomodulatory agents targeting immune checkpoint receptors or cytokines.

Surface receptor targeting, signaling pathway blockade, bispecific formats.
Immunotherapy — scientific laboratory research

Allergology

VHH nanobodies allow fine mapping of the epitopes recognized by IgE responsible for allergic reactions, and screening of candidates able to block allergen-IgE binding or neutralize receptors involved in the allergic cascade. Their stability also facilitates formulation for topical or inhaled applications.

IgE epitope mapping, allergen-receptor blockade, diagnostic tools.
Allergology — scientific laboratory research

Autoimmune Diseases

In chronic inflammatory conditions, VHH nanobodies offer targeted modulation of dysregulated immune pathways, with tissue penetration superior to conventional antibodies. They are being explored as alternatives or complements to existing biotherapies in rheumatoid arthritis, inflammatory bowel disease, and psoriasis.

Pro-inflammatory cytokine modulation, immune receptor targeting.
Autoimmune Diseases — scientific laboratory research

Oncology

In oncology, VHH nanobodies are developed as bispecific formats (redirecting immune cells to the tumor), conjugated to cytotoxic payloads or radioisotopes (nanobody-drug conjugates), or used as molecular imaging tools for early diagnosis and treatment monitoring.

Bispecific formats, cytotoxic conjugates, tumor molecular imaging.
Oncology — scientific laboratory research
Why VHH

The properties that make nanobodies unique.

Small size

~15 kDa, about ten times smaller than a conventional antibody (~150 kDa), enabling better tissue penetration.

Stability

Increased resistance to temperature and denaturing conditions, easing formulation and storage.

Ease of production

Single domain, no chain assembly required, expressible in simple prokaryotic or eukaryotic systems.

Access to hidden epitopes

Convex paratope shape, able to bind grooves or pockets inaccessible to conventional antibodies.

Questions?

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Contact

Need llama RNA or planning a VHH library project?

info@rnacorex.com
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