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Generation of Knock-out Primary and Expanded Human NK Cells Using Cas9 Ribonucleoproteins
Published on: June 14, 2018
Current Approaches to Engineering of NK Cells for Cancer Immunotherapy
M A Streltsova1, E V Barsov2, S A Erokhina1
1Shemyakin and Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, ul. Miklukho-Maklaya 16/10, Moscow 117997, Russian Federation.
Abstract:
Natural Killer (NK) cells belong to a unique subtype of lymphocytes with a great potential for cancer immunotherapy due to their ability to rapidly recognize and efficiently kill tumor cells. Their anti-cancer potential can be further increased by genetic and non-genetic modifications. However, the attempts of genetic improvements of NK cells over the past 20 years have been hampered by the difficulties of gene delivery into this cell type, thus preventing researchers from producing clinically relevant numbers of viable and biologically active NK cells. Currently, several successful approaches to genetic modification of NK cells have been described, and clinically applicable cell therapy products have been characterized. Now that we understand much better the ways of NK cell optimization to enhance their tumor regression-inducing capabilities, novel approaches to engineering NK surface receptors are being developed. In this review, we focus on the advantages and perspectives of various approaches to modification of NK cells. Positive results of several preclinical studies are described, demonstrating that genetically modified NK cells can be comparable to therapeutic T cells in their efficiency of recognizing and destroying tumor targets. Moreover, using allogenic NK cells to treat a number of cancer types might have even wider and eager clinical adoption than cytotoxic T cells due to a much decreased risk of graft versus host reaction inherent in NK cell-based immunotherapeutic products.
Insights
Genetically modified Natural Killer (NK) cells show great promise for cancer immunotherapy, offering an alternative to T cells with reduced graft-versus-host risks. Advances in genetic engineering are overcoming previous delivery challenges, enabling effective tumor cell targeting.
Area of Science:
- Immunology
- Cancer Biology
- Cell Therapy
Background:
- Natural Killer (NK) cells are lymphocytes with inherent anti-cancer properties.
- Genetic and non-genetic modifications can enhance NK cell efficacy in cancer immunotherapy.
- Past challenges in gene delivery to NK cells have limited clinical applications.
Purpose of the Study:
- To review various approaches for modifying NK cells to improve their anti-cancer potential.
- To discuss the advantages and future perspectives of engineered NK cell therapies.
- To highlight the potential of allogeneic NK cells in cancer treatment.
Main Methods:
- Review of preclinical studies on genetically modified NK cells.
- Analysis of novel approaches for engineering NK cell surface receptors.
- Comparison of NK cell therapy with existing T cell-based immunotherapies.
Main Results:
- Genetically modified NK cells demonstrate comparable efficacy to therapeutic T cells in preclinical models.
- Successful methods for genetic modification of NK cells are now established.
- Allogeneic NK cells offer a reduced risk of graft-versus-host reactions.
Conclusions:
- Engineered NK cells represent a promising avenue for cancer immunotherapy.
- Overcoming gene delivery challenges has paved the way for clinical translation.
- NK cell therapy, particularly using allogeneic sources, may see widespread clinical adoption.
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