AI Article Synopsis

  • Immunotherapy, specifically genetically engineered NK/T cell therapies, is a promising cancer treatment, but faces challenges like immune environment suppression, cell exhaustion, and difficulty in effective cell delivery.
  • CRISPR/Cas9 technology offers innovative solutions to enhance the effectiveness and accessibility of these engineered cells in fighting cancer.
  • The review highlights advancements in CRISPR applications in cancer immunotherapy, focusing on NK/T cell use, gene transfer methods, and the associated challenges and implications.

Article Abstract

Immunotherapy has become one of the most promising strategies in cancer therapies. Among the therapeutic alternatives, genetically engineered NK/T cell therapies have emerged as powerful and innovative therapeutic modalities for cancer patients with precise targeting and impressive efficacy. Nonetheless, this approach still faces multiple challenges, such as immunosuppressive tumor microenvironment, exhaustion of immune effector cells in tumors, off-target effects manufacturing complexity, and poor infiltration of effector cells, all of which need to be overcome for further utilization to cancers. Recently, CRISPR/Cas9 genome editing technology, with the goal of enhancing the efficacy and increasing the availability of engineered effector cell therapies, has shown considerable potential in the novel strategies and options to overcome these limitations. Here we review the current progress of the applications of CRISPR in cancer immunotherapy. Furthermore, we discuss issues related to the NK/T cell applications, gene delivery methods, efficiency, challenges, and implications of CRISPR/Cas9.

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Source
http://dx.doi.org/10.1016/j.cellimm.2021.104436DOI Listing

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