4.7 Review

Immune evader cancer stem cells direct the perspective approaches to cancer immunotherapy

Journal

STEM CELL RESEARCH & THERAPY
Volume 13, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s13287-022-02829-9

Keywords

Tumor microenvironment; Cancer stem cells; Immune evasion; CAR T cell; CAR NK cells; Nano-immunotherapy

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Exploration of tumor immunity has led to the development of immune checkpoint inhibitors and cell-based immunotherapies, improving clinical outcomes for certain tumor types. However, the complex tumor microenvironment, cellular heterogeneity, and cancer stem cells contribute to poor clinical efficacy in other tumors. Understanding the immune features of cancer stem cells could lead to therapeutic targets for effective anti-tumor responses.
Exploration of tumor immunity leads to the development of immune checkpoint inhibitors and cell-based immunotherapies which improve the clinical outcomes in several tumor types. However, the poor clinical efficacy of these treatments observed for other tumors could be attributed to the inherent complex tumor microenvironment (TME), cellular heterogeneity, and stemness driven by cancer stem cells (CSCs). CSC-specific characteristics provide the bulk tumor surveillance and resistance to entire eradication upon conventional therapies. CSCs-immune cells crosstalk creates an immunosuppressive TME that reshapes the stemness in tumor cells, resulting in tumor formation and progression. Thus, identifying the immunological features of CSCs could introduce the therapeutic targets with powerful antitumor responses. In this review, we summarized the role of immune cells providing CSCs to evade tumor immunity, and then discussed the intrinsic mechanisms represented by CSCs to promote tumors' resistance to immunotherapies. Then, we outlined potent immunotherapeutic interventions followed by a perspective outlook on the use of nanomedicine-based drug delivery systems for controlled modulation of the immune system.

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