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Avoiding Freedom-to-Operate Pitfalls in Antibody Discovery
Conventional immunization-based discovery techniques frequently result in overlapping sequences with intellectual property (IP) concerns, due to the high number of antibody sequences already patented. These limitations can restrict opportunities for development, increase legal uncertainty, and reduce commercial viability.
Why Biotech Leaders Choose Cambridge UK for Antibody Discovery
This case study delves into the development of anti-LRP6 VHH inhibitors that overcome these challenges. Isogenica’s VHH technology offers hope for more effective therapies targeting Wnt-related cancers.
Comparing Risk in Synthetic vs Immune-based Discovery: Why Synthetic VHH Antibodies are the Future of Antibody Discovery
This case study delves into the development of anti-LRP6 VHH inhibitors that overcome these challenges. Isogenica’s VHH technology offers hope for more effective therapies targeting Wnt-related cancers.
Anti-LRP6 VHHs: Precision Targeting of the Wnt Pathway for Cancer Therapy
This case study delves into the development of anti-LRP6 VHH inhibitors that overcome these challenges. Isogenica’s VHH technology offers hope for more effective therapies targeting Wnt-related cancers.
Solid Tumour Targeting – VHH antibodies as building blocks for advanced cancer therapies
Cancer continues to pose a significant challenge in the realm of biomedical research, particularly with respect to solid tumors, which constitute over 90% of adult cancer cases.But what makes solid...
Unlocking Affordable Biologics: VHH Antibodies in Baker’s Yeast
The production of traditional IgG monoclonal antibodies has long been hindered by their complexity. These molecules require complex and costly manufacturing processes, with estimated production...
Explore the science behind our antibody discovery platforms
White Paper “Data-Driven Validation of Synthetic VHHs”
This white paper provides a data-driven validation of Isogenica’s synthetic VHH libraries, powered by Colibra® technology. Designed for biotech and pharmaceutical scientists, it demonstrates how these libraries enhance and accelerate drug discovery, particularly in oncology and immunotherapy. Download Extending half-lives of VHH antibodies
Because VHHs are small, they can be cleared quickly from the bloodstream. This can be a useful feature for some applications, but often a longer plasma half-life is desirable. DOWNLOADAdvantages of VHH in bi-specifics
To learn more about the application of VHHs in bi-specifics, we have condensed our expertise into a downloadable Application Note. DOWNLOADOptimizing CAR-T and T-cell antibody engagers: a role for VHH single domain antibodies
This whitepaper summarises the clinical and research landscape for CAR-T and T-cell engaging antibody therapies and show how single domain VHH antibodies can be applied to optimise the next generation of these important new therapeutic modalities. DOWNLOADIsogenica’s PD-L1 VHH as Functional Antagonists
PD-1 is an immune checkpoint protein expressed on the surface of multiple types of immune cells, including antigen-stimulated T-cells and tumour specific T-cells1. Interaction between PD-1 and its ligands (PD-L1 or PD-L2), is responsible for the regulation of T-cell activation, apoptosis, proliferation and cytokine production. DOWNLOADAnti-LRP5/6 VHH inhibits WNT pathway and prevents tumour growth
VHH are the variable domain of heavy chain only antibodies. They are small in size (~15 kD) and biophysically robust. With tunable half-lives, these antibodies are ideal for targeting inaccessible epitopes, achieving enhanced tissue penetration, multi-target binding and formatting for payload delivery… DOWNLOAD





