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Anti-PSMA CAR-engineered NK-92 Cells: An Off-the-shelf Cell Therapy for Prostate Cancer

Overview
Journal Cells
Publisher MDPI
Date 2020 Jun 6
PMID 32498368
Citations 47
Authors
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Abstract

Prostate cancer (PCa) has become the most common cancer among males in Europe and the USA. Adoptive immunotherapy appears a promising strategy to control the advanced stages of the disease by specifically targeting the tumor, in particular through chimeric antigen receptor T (CAR-T) cell therapy. Despite the advancements of CAR-T technology in the treatment of hematological malignancies, solid tumors still represent a challenge. To overcome current limits, other cellular effectors than T lymphocytes are under study as possible candidates for CAR-engineered cancer immunotherapy. A novel approach involves the NK-92 cell line, which mediates strong cytotoxic responses against a variety of tumor cells but has no effect on non-malignant healthy counterparts. Here, we report a novel therapeutic approach against PCa based on engineering of NK-92 cells with a CAR recognizing the human prostate-specific membrane antigen (PSMA), which is overexpressed in prostatic neoplastic cells. More importantly, the potential utility of NK-92/CAR cells to treat PCa has not yet been explored. Upon CAR transduction, NK-92/CAR cells acquired high and specific lytic activity against PSMA-expressing prostate cancer cells in vitro, and also underwent degranulation and produced high levels of IFN-γ in response to antigen recognition. Lethal irradiation of the effectors, a safety measure requested for the clinical application of retargeted NK-92 cells, fully abrogated replication but did not impact on phenotype and short-term functionality. PSMA-specific recognition and antitumor activity were retained in vivo, as adoptive transfer of irradiated NK-92/CAR cells in prostate cancer-bearing mice restrained tumor growth and improved survival. Anti-PSMA CAR-modified NK-92 cells represent a universal, off-the-shelf, renewable, and cost-effective product endowed with relevant potentialities as a therapeutic approach for PCa immunotherapy.

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References
1.
Sharma P, Wagner K, Wolchok J, Allison J . Novel cancer immunotherapy agents with survival benefit: recent successes and next steps. Nat Rev Cancer. 2011; 11(11):805-12. PMC: 3426440. DOI: 10.1038/nrc3153. View

2.
Arai S, Meagher R, Swearingen M, Myint H, Rich E, Martinson J . Infusion of the allogeneic cell line NK-92 in patients with advanced renal cell cancer or melanoma: a phase I trial. Cytotherapy. 2008; 10(6):625-32. DOI: 10.1080/14653240802301872. View

3.
Miller K, Sauer A, Ortiz A, Fedewa S, Pinheiro P, Tortolero-Luna G . Cancer Statistics for Hispanics/Latinos, 2018. CA Cancer J Clin. 2018; 68(6):425-445. DOI: 10.3322/caac.21494. View

4.
Ghosh A, Wang X, Klein E, Heston W . Novel role of prostate-specific membrane antigen in suppressing prostate cancer invasiveness. Cancer Res. 2005; 65(3):727-31. View

5.
Ristau B, OKeefe D, Bacich D . The prostate-specific membrane antigen: lessons and current clinical implications from 20 years of research. Urol Oncol. 2013; 32(3):272-9. PMC: 3972351. DOI: 10.1016/j.urolonc.2013.09.003. View