Camelid Single-Domain Antibodies: Historical Perspective and Future Outlook
Однодоменные антитела верблюдовых: исторический обзор и перспективы
2017-11-20
SCID: 54.1/68ep973r
Discuss with AI
CaplacizumabVHH antibodiescamelid single-domain antibodiesnanobodiesvon Willebrand factor
Figures from the paper
Abstract (AI)
Tremendous effort has been expended over the past two and a half decades to understand many aspects of camelid heavy chain antibodies, from their biology, evolution and immunogenetics to their potential applications in various fields of research and medicine. In this article, I present a historical perspective on the development of camelid single-domain antibodies (sdAbs or VHHs, also widely known as nanobodies) since their discovery and discuss the advantages and disadvantages of these unique molecules in various areas of research, industry and medicine. Commercialization of camelid single-domain antibodies exploded in 2001 with a flurry of patents issued to the Vrije Universiteit Brussel (VUB) and later taken on by the Vlaams Interuniversitair Instituut voor Biotechnologie (VIB) and, after 2002, the VIB-founded spin-off company, Ablynx. While entrepreneurial spirit has certainly catalyzed the exploration of nanobodies as marketable products, IP restrictions may be partially responsible for the relatively long time span between the discovery of these bio-molecules and their entry into the pharmaceutical market. It is now anticipated that the first VHH-based antibody drug, Caplacizumab, a bivalent anti-vWF antibody for treating rare blood clotting disorders, may be approved and commercialized in 2018 or shortly thereafter. This elusive first approval, along with the expiry of key patents, may substantially alter the scientific and biomedical landscape surrounding camelid sdAbs and pave the way for their emergence as mainstream biotherapeutics.
Key Findings
1
Camelid single-domain antibodies (sdAbs/VHHs), also known as nanobodies, have been studied for over two and a half decades across biology, evolution, immunogenetics, research, industry, and medicine.
2
Caplacizumab, a bivalent anti-von Willebrand factor VHH for rare blood-clotting disorders, was anticipated to become the first approved VHH-based antibody drug in 2018 or shortly thereafter.
3
Commercialization accelerated sharply in 2001 following patents issued to Vrije Universiteit Brussel and subsequent development by VIB and its spin-off Ablynx.
4
First approval of a VHH drug and expiration of key patents were expected to support broader adoption of camelid sdAbs as mainstream biotherapeutics.
5
Intellectual-property restrictions may have contributed to the long delay between nanobody discovery and their entry into the pharmaceutical market.
6
Nanobodies offer distinctive advantages and disadvantages that influence their suitability for diverse research, industrial, and medical applications.
Research Object
Camelid single-domain antibodies (sdAbs/VHHs, nanobodies)
Research Subject
The historical development, biological and immunogenetic characteristics, advantages, disadvantages, commercialization, and therapeutic prospects of camelid single-domain antibodies
Publication Details
Publication Date
2017-11-20
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest