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CAR-T cell therapy in multiple myeloma: Current limitations and potential strategies
Xiaomin Zhang1, Hui Zhang2, Huixuan Lan3
1Department of Hematology, Jinshazhou Hospital of Guangzhou University of Chinese Medicine, Guangzhou, China.
Abstract:
Over the last decade, the survival outcome of patients with multiple myeloma (MM) has been substantially improved with the emergence of novel therapeutic agents, such as proteasome inhibitors, immunomodulatory drugs, anti-CD38 monoclonal antibodies, selective inhibitors of nuclear export (SINEs), and T cell redirecting bispecific antibodies. However, MM remains an incurable neoplastic plasma cell disorder, and almost all MM patients inevitably relapse due to drug resistance. Encouragingly, B cell maturation antigen (BCMA)-targeted chimeric antigen receptor T (CAR-T) cell therapy has achieved impressive success in the treatment of relapsed/refractory (R/R) MM and brought new hopes for R/R MM patients in recent years. Due to antigen escape, the poor persistence of CAR-T cells, and the complicated tumor microenvironment, a significant population of MM patients still experience relapse after anti-BCMA CAR-T cell therapy. Additionally, the high manufacturing costs and time-consuming manufacturing processes caused by the personalized manufacturing procedures also limit the broad clinical application of CAR-T cell therapy. Therefore, in this review, we discuss current limitations of CAR-T cell therapy in MM, such as the resistance to CAR-T cell therapy and the limited accessibility of CAR-T cell therapy, and summarize some optimization strategies to overcome these challenges, including optimizing CAR structure, such as utilizing dual-targeted/multi-targeted CAR-T cells and armored CAR-T cells, optimizing manufacturing processes, combing CAR-T cell therapy with existing or emerging therapeutic approaches, and performing subsequent anti-myeloma therapy after CAR-T cell therapy as salvage therapy or maintenance/consolidation therapy.
Insights
Chimeric antigen receptor T (CAR-T) cell therapy shows promise for multiple myeloma (MM) but faces challenges like drug resistance and high costs. Optimization strategies are being explored to improve CAR-T therapy effectiveness and accessibility for MM patients.
Area of Science:
- Oncology
- Immunotherapy
- Hematology
Background:
- Multiple myeloma (MM) survival has improved with novel agents, but relapse due to drug resistance remains a challenge.
- B cell maturation antigen (BCMA)-targeted chimeric antigen receptor T (CAR-T) cell therapy offers new hope for relapsed/refractory (R/R) MM.
- Despite successes, CAR-T therapy faces limitations including antigen escape, poor cell persistence, and a complex tumor microenvironment, leading to post-therapy relapse.
Purpose of the Study:
- To review the current limitations of CAR-T cell therapy in multiple myeloma.
- To summarize strategies for overcoming challenges in CAR-T therapy for MM.
- To discuss optimizing CAR structure, manufacturing, and combination therapies for MM.
Main Methods:
- Review of current literature on CAR-T cell therapy for multiple myeloma.
- Analysis of resistance mechanisms and manufacturing challenges.
- Exploration of optimization strategies including CAR design and combination approaches.
Main Results:
- CAR-T therapy, while effective for R/R MM, faces significant hurdles including resistance and accessibility issues.
- Strategies to enhance CAR-T efficacy involve optimizing CAR structure (e.g., dual-targeting, armored CARs) and manufacturing processes.
- Combining CAR-T therapy with other treatments or using it as consolidation/salvage therapy are key optimization approaches.
Conclusions:
- Addressing CAR-T resistance and accessibility is crucial for broader clinical application in multiple myeloma.
- Optimizing CAR structure, manufacturing, and therapeutic combinations can improve outcomes for MM patients.
- Further research into advanced CAR-T strategies holds promise for overcoming MM relapse and enhancing patient survival.
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