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Updated: Jul 23, 2025

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
A Novel Strategy for Screening Tumor-Specific Variable Domain of Heavy-Chain Antibodies
Abdur Rafique1, Genki Hichiwa2, Muhammad Feisal Jatnika1
1Graduate School of Science and Engineering, University of Kagoshima, Kagoshima 890-0065, Japan.
Abstract:
The properties of the variable domain of heavy-chain (VHH) antibodies are particularly relevant in cancer therapy. To isolate tumor cell-specific VHH antibodies, VHH phage libraries were constructed from multiple tumor cells. After enriching the libraries against particular tumor cell lines, a next-generation sequencer was used to screen the pooled phages of each library for potential antibody candidates. Based on high amplification folds, 50 sequences from each library were used to construct phylogenetic trees. Several clusters with identical CDR3 were observed. Groups X, Y, and Z were assigned as common sequences among the different trees. These identical groups over the trees were considered to be cross-reactive antibodies. To obtain monoclonal antibodies, we assembled 200 sequences (top 50 sequences from each library) and rebuilt a combined molecular phylogenetic tree. Groups were categorized as A-G. For each group, we constructed a phagemid and determined its binding specificity with tumor cells. The phage-binding results were consistent with the phylogenetic tree-generated groups, which indicated particular tumor-specific clusters; identical groups showed cross-reactivity. The strategy used in the current study is effective for screening and isolating monoclonal antibodies. Specific antibodies can be identified, even when the target markers of cancer cells are unknown.
Insights
This study developed a method to isolate tumor-specific variable domain of heavy-chain (VHH) antibodies using phage libraries and next-generation sequencing. This approach effectively identifies monoclonal antibodies for cancer therapy, even without knowing cancer cell targets.
Area of Science:
- Immunology
- Biotechnology
- Oncology
Background:
- Variable domain of heavy-chain (VHH) antibodies show promise in cancer therapy.
- Isolating tumor-specific VHH antibodies is crucial for targeted cancer treatment.
Purpose of the Study:
- To develop and validate a strategy for isolating tumor-specific VHH antibodies.
- To identify monoclonal antibodies effective against cancer cells, even when targets are unknown.
Main Methods:
- Construction of VHH phage libraries from multiple tumor cells.
- Enrichment of libraries against specific tumor cell lines.
- Next-generation sequencing for screening antibody candidates.
- Phylogenetic analysis to identify common and cross-reactive sequences.
- Phagemid construction and binding specificity determination.
Main Results:
- Phylogenetic trees revealed common VHH antibody sequences (Groups X, Y, Z) indicating cross-reactivity.
- Categorization into groups A-G based on a combined phylogenetic tree.
- Phage-binding assays confirmed tumor-specific clusters and cross-reactivity.
- The strategy successfully identified specific antibody clusters.
Conclusions:
- The described strategy is effective for screening and isolating monoclonal antibodies.
- This method enables identification of specific antibodies against cancer cells, irrespective of known target markers.
- VHH antibodies isolated through this method hold potential for cancer therapy.
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