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Engineered natural killer cells impede the immunometabolic CD73-adenosine axis in solid tumors
Andrea M Chambers1, Kyle B Lupo1, Jiao Wang1
1Department of Industrial and Physical Pharmacy, Purdue University West Lafayette, West Lafayette, United States.
Engineered natural killer (NK) cells targeting CD73 block adenosine production, impairing tumor immune evasion. This novel immunotherapy effectively kills cancer cells and promotes anti-tumor immune responses in vivo.
Area of Science:
- Immunology
- Cancer Biology
- Metabolic Pathways
Background:
- CD73 (NT5E) produces adenosine, a key mediator of tumor immune evasion by suppressing immune cells like NK cells.
- Adenosine contributes to tumor progression and immune cell dysfunction within the tumor microenvironment.
Purpose of the Study:
- To engineer human NK cells to target the CD73-adenosine axis for cancer immunotherapy.
- To evaluate the efficacy of CD73-targeted NK cells in blocking adenosinergic metabolism and mediating tumor cell killing.
Main Methods:
- Engineering human NK cells to inhibit CD73 enzymatic activity.
- Utilizing a non-small-cell lung cancer model to assess NK cell function.
- Evaluating in vivo efficacy, tumor infiltration, and intratumoral activation of engineered NK cells.
Main Results:
- Engineered NK cells impaired cancer cell ATP uptake and adenosinergic metabolism.
- CD73-targeted NK cells recognized and killed tumor cells overexpressing CD73.
- In vivo studies demonstrated tumor arrest, enhanced NK cell infiltration, and activation in CD73+ tumors.
Conclusions:
- Engineered NK cells targeting CD73 offer a single-agent immunotherapy approach.
- This strategy combines antibody specificity, purinergic signaling blockade, and NK cell-mediated cytotoxicity.
- CD73-targeted NK cells show potent in vivo anti-tumor activity and promote a favorable immune microenvironment.
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