AI Article Synopsis

  • CAR-T-cell therapy has shown promise in treating certain blood cancers, but issues like resistance, relapse, and severe side effects still pose challenges.
  • Traditional analysis methods have limited our understanding of how CAR-T-cells and leukemia cells interact, but single-cell sequencing offers new insights into these complex dynamics.
  • This review aims to explore the biological features of CAR-T-cells and the mechanisms behind their clinical successes and failures, with the goal of enhancing treatment strategies and outcomes.

Article Abstract

Chimeric antigen receptor (CAR)-T-cell therapy has greatly improved outcomes for patients with relapsed or refractory hematological malignancies. However, challenges such as treatment resistance, relapse, and severe toxicity still hinder its widespread clinical application. Traditional transcriptome analysis has provided limited insights into the complex transcriptional landscape of both leukemia cells and engineered CAR-T-cells, as well as their interactions within the tumor microenvironment. However, with the advent of single-cell sequencing techniques, a paradigm shift has occurred, providing robust tools to unravel the complexities of these factors. These techniques enable an unbiased analysis of cellular heterogeneity and molecular patterns. These insights are invaluable for precise receptor design, guiding gene-based T-cell modification, and optimizing manufacturing conditions. Consequently, this review utilizes modern single-cell sequencing techniques to clarify the transcriptional intricacies of leukemia cells and CAR-Ts. The aim of this manuscript is to discuss the potential mechanisms that contribute to the clinical failures of CAR-T immunotherapy. We examine the biological characteristics of CAR-Ts, the mechanisms that govern clinical responses, and the intricacies of adverse events. By exploring these aspects, we hope to gain a deeper understanding of CAR-T therapy, which will ultimately lead to improved clinical outcomes and broader therapeutic applications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10889174PMC
http://dx.doi.org/10.3390/ijms25042416DOI Listing

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