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Published on: February 21, 2025
Novel PAP-targeted CAR-T therapy enhances antitumor efficacy through CoupledCAR approach
Zhiyuan Cao1, Chengfei Pu1, Xianyang Jiang1
1Innovative Cellular Therapeutics, Shanghai, China.
Background:
The challenges that remain in the treatment of solid tumors with chimeric antigen receptor (CAR)-T cells include limited solid tumor-specific targets and poor CAR-T cell expansion and function due to limited availability of solid tumor antigens outside the tumor microenvironment. Prostate cancer is the second most common cancer among men worldwide. Current CAR-T therapies for prostate cancer lack specific targets, posing safety risks. To overcome these problems, we identified prostatic acid phosphatase (PAP, also known as ACPP or ACP3) as a feasible CAR-T target for prostate cancer and developed CoupledCAR, a novel approach for expanding tumor-targeting CAR-T cells without tumor antigens.
Methods:
We analyzed the expression of PAP from The Cancer Genome Atlas database and validated its expression in normal and cancer tissues through immunohistochemistry staining. To generate anti-PAP specific antibodies, we screened the human single-chain antibody library using transmembrane PAP-His antigen and selected antibodies based on their binding ability and specificity. We constructed PAP-targeted CAR and evaluated their antitumor efficacy both in vitro and in vivo. We validated the function of PAP CoupledCAR in both in vitro and in vivo experiments, and further analyzed its mechanism using single-cell RNA sequencing (scRNA-Seq).
Results:
PAP was specifically expressed in prostate epithelial and prostate cancer cells, with no expression in other tissues. Seven single-chain variable fragments were screened from the human single-chain antibody library, with S5D1 showing the highest binding ability for the PAP. PAP CAR-T cells demonstrated strong antitumor efficacy both in vitro and in vivo. Furthermore, the CoupledCAR system significantly expanded PAP CAR-T cells, promoting memory-like status, reducing exhaustion, and enhancing their antitumor efficacy. The scRNA-Seq demonstrated that the expansion of PAP CAR-T cells in the CoupledCAR system is mediated by costimulatory signals and cytokine signals, rather than T-cell receptor signals.
Conclusions:
Our study is the first to demonstrate that PAP is a specific target for CAR-T therapy in prostate cancer, both in vitro and in vivo. We developed the CoupledCAR platform technology for solid tumor CAR-T cell therapy, enabling the expansion of tumor-targeting CAR-T cells without requiring tumor antigens and thereby enhancing their functionality against solid tumors.
Insights
This study identifies prostatic acid phosphatase (PAP) as a specific target for prostate cancer chimeric antigen receptor (CAR)-T cell therapy. The novel CoupledCAR platform enhances CAR-T cell expansion and function against solid tumors without needing tumor antigens.
Area of Science:
- Oncology
- Immunotherapy
- Cancer Biology
Background:
- Solid tumor treatment with CAR-T cells faces challenges due to limited tumor-specific targets and poor CAR-T cell expansion/function.
- Current CAR-T therapies for prostate cancer lack specificity, increasing safety risks.
- Prostate cancer is a significant global health concern, necessitating improved therapeutic strategies.
Purpose of the Study:
- To identify a specific target for prostate cancer CAR-T therapy.
- To develop a novel CAR-T cell expansion platform for solid tumors.
- To evaluate the efficacy and mechanism of the new therapeutic approach.
Main Methods:
- Analyzed PAP expression in prostate cancer using The Cancer Genome Atlas and immunohistochemistry.
- Generated and selected PAP-specific antibodies from a human single-chain antibody library.
- Constructed PAP-targeted CAR-T cells and evaluated antitumor efficacy in vitro and in vivo, including scRNA-Seq analysis.
Main Results:
- PAP is specifically expressed in prostate cancer cells, not in other tissues.
- PAP CAR-T cells demonstrated significant antitumor efficacy both in vitro and in vivo.
- The CoupledCAR system effectively expanded PAP CAR-T cells, promoting a memory-like state and enhancing antitumor activity via costimulatory and cytokine signals.
Conclusions:
- Prostatic acid phosphatase (PAP) is a validated, specific target for CAR-T therapy in prostate cancer.
- The CoupledCAR platform technology enables antigen-independent expansion of tumor-targeting CAR-T cells.
- This approach enhances CAR-T cell functionality against solid tumors, offering a promising new therapeutic strategy.
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