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Published on: May 12, 2023
Human single domain antibody-based CAR-T cells targeting BAFF-R demonstrate promising preclinical activity in B-cell
Cuiling Zhang1, Qian Luo2, Sungui Wu3
1Department of Hematology, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Nanjing University, 321 Zhongshan Road, Gulou District, Nanjing, Jiangsu, China.
Background:
Single-chain antibody-based CAR-T cells targeting BAFF-R have demonstrated antitumor effects against human B-cell malignancies and can overcome CD19 antigen loss. However, CARs built on antigen-specific single-chain antibody variable fragments may have limitations, e.g., large CAR binding domain size. To improve the function of BAFF-R CAR-T cells, we designed CARs with only a fully human heavy-chain variable domain.
Methods:
A fully human antibody phage display library was used to select anti- BAFF- R clones using protein/cell alternate panning. The screened clones were grafted into a second-generation CAR to generate CAR-T cells. CD107a degranulation, luciferase-based cytolysis, repeat antigen stimulation, activation markers, and exhaustion markers were used to detect the function of CAR-T cells in vitro. Xenografts were established in NPG mice following intravenous injection of Jeko-1 cells. Tumor burden and survival of mice were recorded weekly.
Results:
Three single-domain heavy chain antibodies, namely Clone #5, Clone #77, and Clone #80, were selected for further evaluation. CAR-T cells constructed with these three candidate clones demonstrated specific target cell activation and effective cytotoxicity in vitro. Clone #5 and Clone #77 CAR-T cells exhibited superior cytotoxic capacity and expansion ability. No significant difference was observed in the expression levels of exhaustion markers on the surface of the three CAR-T cell types. In vivo studies revealed that Clone #5 CAR-T cells displayed enhanced antitumor efficacy compared to other groups, resulting in prolonged survival.
Conclusion:
We developed a novel BAFF-R CAR-T cell product structured on a fully human single-domain antibody. This product demonstrated promising preclinical activity and may provide a potential alternative treatment for patients with B-cell malignancies.
Insights
Researchers developed novel CAR-T cells targeting BAFF-R using a fully human single-domain antibody, showing enhanced antitumor effects against B-cell malignancies in preclinical studies.
Area of Science:
- Immunotherapy
- Oncology
- Antibody Engineering
Background:
- Chimeric antigen receptor T-cell (CAR-T) therapy shows promise for B-cell malignancies.
- BAFF-R targeted CAR-T cells can overcome CD19 antigen loss.
- Limitations of existing CARs include large binding domain size.
Purpose of the Study:
- To engineer improved BAFF-R CAR-T cells using a fully human single-domain antibody.
- To evaluate the in vitro and in vivo efficacy of novel CAR-T cells.
Main Methods:
- Selected anti-BAFF-R single-domain antibodies using phage display.
- Constructed second-generation CAR-T cells with selected antibodies.
- Assessed CAR-T cell function (cytotoxicity, activation, exhaustion) in vitro.
- Evaluated antitumor efficacy in a mouse xenograft model.
Main Results:
- Three anti-BAFF-R single-domain antibodies (Clone #5, #77, #80) were identified.
- CAR-T cells demonstrated specific activation and cytotoxicity in vitro.
- Clone #5 and #77 CAR-T cells showed superior cytotoxic and expansion capabilities.
- Clone #5 CAR-T cells exhibited enhanced in vivo antitumor efficacy and prolonged survival.
Conclusions:
- A novel BAFF-R CAR-T cell product utilizing a fully human single-domain antibody was successfully developed.
- This new CAR-T cell therapy demonstrated significant preclinical antitumor activity.
- This approach offers a potential alternative treatment for B-cell malignancies.
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