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Published on: March 8, 2018
Antibody phage libraries for the next generation of tumor targeting radioimmunotherapeutics
S J DeNardo1, G L DeNardo, D G DeNardo
1Department of Internal Medicine, University of California Davis Medical Center, Sacramento 95816, USA.
Abstract:
Pretargeting techniques have shown promise for enhancement of the therapeutic index of radioimmunotherapy for cancer. However, methods to vary and compare antibody configurations and select optimal combinations have proved rather formidable. New options for the construction of pretargeting molecules are provided by sophisticated use of the diversity and malleability of antibody genes. Diverse arrays of single-chain antibody fragments (scFvs) can now be obtained reactive with virtually any target antigen by selection from human naive phage antibody libraries. ScFvs can also be cloned directly from hybridoma for construction of phage libraries that facilitate subsequent manipulation: e.g., affinity maturation and modification of specificity. ScFvs affinity selected from these sources to their specific antigen targets have demonstrated a wide spectrum of binding characteristics. ScFvs selected from a large human naive phage antibody library by binding Cu-1,4,8,11-tetra-azacyclotetradecane-N,N',N'',N'''-tetraacetic acid (TETA) or Y-1,4,7,10-tetra-azacyclododecane-N,N',N'',N'''-tetraacetic acid (DOTA) have shown diversity by DNA fingerprints. DNA sequence information confirmed that the anti-TETA scFv represented diverse scFv gene families. ScFvs for Y-DOTA and those for lymphoma-associated HLA DR10 (Lym-1) were selected in a similar manner from mouse antibody gene libraries derived from hybridoma. ScFv clones for each of these antigens were chosen for further study based on the results of ELISA assays involving the respective cell membrane or metal chelate antigens. A PCR primer system built to pCANTAB 5E expression vector sequence was designed to facilitate cloning of antibody heavy (V(H)) and light (V(L)) genes from selected scFvs as cassettes into diabody modules. Thus, chosen scFvs could be expressed in the same diabody format for comparative study. Selected mouse anti-DOTA scFv and Lym-1 scFv genes were linked as V(HA) anti-DOTA-link-V(LB) Lym-1; V(HB) anti-DOTA-link-V(LA) Lym-1 and ligated into the pCANTAB 5E vector. Corresponding diabodies were expressed in Escherichia coli and purified by affinity chromatography. Here we provide a perspective on the power of antibody phage libraries and the possibilities of creating simple molecular formats that can be used en route to the development of new tumor targeting and pretargeting molecules.
Insights
Antibody phage libraries enable diverse single-chain antibody fragments (scFvs) for cancer radioimmunotherapy pretargeting. This research demonstrates creating novel diabody formats for improved tumor targeting and therapeutic efficacy.
Area of Science:
- Biotechnology and Molecular Biology
- Immunology and Cancer Research
Background:
- Pretargeting techniques enhance radioimmunotherapy's therapeutic index for cancer.
- Developing and comparing antibody configurations for optimal pretargeting has been challenging.
- Antibody gene diversity and malleability offer new avenues for constructing pretargeting molecules.
Purpose of the Study:
- To explore the potential of antibody phage libraries for generating diverse single-chain antibody fragments (scFvs).
- To demonstrate the creation of novel diabody formats for improved tumor targeting and pretargeting applications.
- To facilitate the comparative study and development of new radioimmunotherapy agents.
Main Methods:
- Selection of scFvs from human naive and mouse hybridoma-derived phage antibody libraries against various antigens (TETA, DOTA, Lym-1).
- DNA fingerprinting and sequencing to confirm scFv diversity and gene families.
- Cloning of antibody heavy (V(H)) and light (V(L)) genes into diabody modules using a PCR primer system and pCANTAB 5E vector.
- Expression of diabodies in Escherichia coli and purification via affinity chromatography.
Main Results:
- Diverse scFvs were successfully selected against metal chelates (TETA, DOTA) and a tumor antigen (Lym-1).
- DNA sequence analysis confirmed the diversity of selected anti-TETA scFvs.
- Engineered diabodies incorporating anti-DOTA and anti-Lym-1 scFvs were constructed and expressed.
Conclusions:
- Antibody phage libraries provide a powerful platform for generating diverse scFvs.
- The malleability of antibody genes allows for the creation of novel, simple molecular formats like diabodies.
- These engineered diabodies hold promise for developing advanced tumor targeting and pretargeting strategies in cancer therapy.
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