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Updated: May 9, 2025

Advances in Human Induced Pluripotent Stem Cell-Derived Chimeric Antigen Receptor-Expressing Natural Killer Cells
Published on: February 14, 2025
PARP inhibition elicits NK cell-associated immune evasion via potentiating HLA-G expression in tumor
Siyuan Wang1, Yu Xia2, Yiyu Qian2
1Cancer Biology Research Center (Key Laboratory of Chinese Ministry of Education), Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, 1095 Jiefang Ave, Wuhan 430030, China; Department of Gynecology and Obstetrics, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China; Department of Geriatrics, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, 1095 Jiefang Avenue, Wuhan 430030, China.
Abstract:
Resistance to poly(ADP-ribose) polymerase inhibitors (PARPi) poses a significant challenge to enhancing the efficacy of cancer treatments. Beyond the cellular mechanisms intrinsic to tumor cells, the modulation of the tumor immune microenvironment is crucial in dictating the responsiveness to pharmacological interventions. Thus, there is a pressing need to elucidate the intricate interplay between PARPi and antitumor immune responses and to develop an optimized combinatorial therapeutic approach. In this study, using matched tumor samples before and after neoadjuvant monotherapy with the PARPi niraparib in a prospective clinical trial (NCT04507841), we observed a significant increase in natural killer (NK) cell infiltration post-treatment. However, this was not accompanied by the expected enhancement in their cytotoxic functions. This observation underscores the necessity to optimize the antitumor potential of NK cells by enhancing their cytotoxic capabilities. Upon exposure to niraparib, tumor cells, particularly those with wild-type EGFR, exhibited a pronounced upregulation of human leukocyte antigen G (HLA-G), an immune checkpoint impeding NK cell functions. Niraparib promotes EGFR internalization, which in turn diminishes AKT/mTOR signaling, leading to the increased transcriptional activity of the transcription factor EB (TFEB) and subsequent enhancement of HLA-G expression. The combination of niraparib with HLA-G blockade not only augmented NK cell-mediated tumor lysis in vitro but also synergistically inhibited tumor growth in humanized patient-derived xenograft models. Collectively, our results shed light on a previously unrecognized immune evasion mechanism and offer a compelling argument for the integration of HLA-G blockade with PARPi in cancer therapy.
Insights
Poly(ADP-ribose) polymerase inhibitors (PARPi) increase natural killer (NK) cell infiltration but also upregulate HLA-G, an immune checkpoint. Combining PARPi with HLA-G blockade enhances NK cell antitumor activity and tumor growth inhibition.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Resistance to poly(ADP-ribose) polymerase inhibitors (PARPi) limits cancer treatment efficacy.
- Tumor immune microenvironment modulation is critical for PARPi response.
- Understanding PARPi's interplay with antitumor immunity is needed for optimized combination therapies.
Purpose of the Study:
- To investigate the impact of PARPi (niraparib) on antitumor immune responses.
- To elucidate the mechanism by which PARPi affects natural killer (NK) cell function.
- To evaluate the efficacy of combining niraparib with immune checkpoint blockade.
Main Methods:
- Analysis of tumor samples from a prospective clinical trial (NCT04507841) of neoadjuvant niraparib monotherapy.
- Assessment of NK cell infiltration and cytotoxic function.
- Investigation of human leukocyte antigen G (HLA-G) expression and its regulation by niraparib in tumor cells.
- In vitro and in vivo studies combining niraparib with HLA-G blockade.
Main Results:
- Niraparib treatment increased NK cell infiltration but not their cytotoxic function.
- Niraparib upregulated HLA-G expression in tumor cells, particularly those with wild-type EGFR, via EGFR internalization, reduced AKT/mTOR signaling, and increased TFEB activity.
- Combination of niraparib with HLA-G blockade enhanced NK cell-mediated tumor lysis in vitro.
- Combined therapy synergistically inhibited tumor growth in humanized patient-derived xenograft models.
Conclusions:
- Niraparib induces an immune evasion mechanism by upregulating HLA-G, which impedes NK cell function.
- Blocking HLA-G in combination with PARPi can overcome this resistance.
- This combinatorial approach holds promise for improving cancer treatment efficacy by enhancing NK cell-mediated antitumor immunity.
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