A PSMA-targeted Tri-specific Killer Engager enhances NK cell cytotoxicity against prostate cancer.

IF 8.1 1区 医学 Q1 IMMUNOLOGY Cancer immunology research Pub Date : 2024-11-15 DOI:10.1158/2326-6066.CIR-24-0273
Shee Kwan Phung, Nicholas A Zorko, Yvette Soignier, Rhett L Waller, Madison Shackelford, Joshua T Walker, Trygve D Nelson, Carly Selleck, Laura E Bendzick, Laura E Kotz, Quinlan M Kile, Asha J Bozicevich, Sarah E Miller, Melissa Khaw, Mihir Shetty, Peter Hinderlie, Michael Ehrhardt, Yingming Li, Xianghua Luo, Scott M Dehm, Emmanuel S Antonarakis, Philippa R Kennedy, Jeffrey S Miller, Martin Felices
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Abstract

Natural killer (NK) cell tumor infiltration is associated with good prognosis in patients with metastatic castration-resistant prostate cancer (mCRPC). NK cells recognize and kill targets by a process called natural cytotoxicity. We hypothesized that promoting an antigen-specific synapse with co-activation may enhance NK cell function in mCRPC. We describe a Tri-specific Killer Engager (TriKE) construct that engages with the activating receptor CD16 on NK cells, prostate-specific membrane antigen (PSMA) on mCRPC cells, and has an interleukin (IL)-15 moiety that is essential for NK cell survival, proliferation, and priming. We show that the PSMA TriKE specifically binds to PSMA-expressing cells and significantly enhances expansion, degranulation and cytokine production of NK cells derived from healthy donors or prostate cancer patients. Bystander killing of PSMA-negative was also achieved with PSMA TriKE treatment when co-cultured with PSMA-positive cells, suggesting potential PSMA TriKE benefit in controlling tumor antigen escape. When tested under physiologic conditions recapitulating the mCRPC tumor microenvironment (TME), NK cells treated with PSMA TriKE and prolonged exposure to hypoxia or MDSCs maintained their potent function while IL-15 treated NK cells showed greatly impaired cytotoxicity. Finally, in vivo testing of PSMA TriKE showed improved tumor control and survival of mice as compared to IL-15 and untreated control groups. In conclusion, PSMA TriKE demonstrates potential as a new therapy for advanced prostate cancer by providing additional signals to NK cells to maximize their anti-tumor potential in prostate cancer, especially in the setting of a hostile TME.

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一种 PSMA 靶向三特异性杀伤因子能增强 NK 细胞对前列腺癌的细胞毒性。
自然杀伤(NK)细胞的肿瘤浸润与转移性去势抵抗性前列腺癌(mCRPC)患者的良好预后有关。NK 细胞通过一种称为天然细胞毒性的过程识别并杀死目标。我们假设,通过共同激活促进抗原特异性突触可增强 NK 细胞在 mCRPC 中的功能。我们描述了一种三特异性杀手诱导体(TriKE)构建体,它能与 NK 细胞上的活化受体 CD16 和 mCRPC 细胞上的前列腺特异性膜抗原 (PSMA) 结合,并具有对 NK 细胞存活、增殖和启动至关重要的白细胞介素 (IL)-15 分子。我们的研究表明,PSMA TriKE 能与表达 PSMA 的细胞特异性结合,并能显著增强来自健康供体或前列腺癌患者的 NK 细胞的扩增、脱颗粒和细胞因子分泌。当 PSMA TriKE 与 PSMA 阳性细胞共培养时,也能杀死 PSMA 阴性细胞,这表明 PSMA TriKE 在控制肿瘤抗原逃逸方面具有潜在的益处。在重现mCRPC肿瘤微环境(TME)的生理条件下进行测试时,经PSMA TriKE处理并长期暴露于缺氧或MDSCs的NK细胞仍能保持其强大的功能,而经IL-15处理的NK细胞的细胞毒性则大大减弱。最后,PSMA TriKE 的体内测试表明,与 IL-15 和未经处理的对照组相比,小鼠的肿瘤控制和存活率均有所提高。总之,PSMA TriKE 为 NK 细胞提供了额外的信号,最大限度地发挥了它们在前列腺癌中的抗肿瘤潜力,尤其是在敌意 TME 的情况下,因此具有作为晚期前列腺癌新疗法的潜力。
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来源期刊
Cancer immunology research
Cancer immunology research ONCOLOGY-IMMUNOLOGY
CiteScore
15.60
自引率
1.00%
发文量
260
期刊介绍: Cancer Immunology Research publishes exceptional original articles showcasing significant breakthroughs across the spectrum of cancer immunology. From fundamental inquiries into host-tumor interactions to developmental therapeutics, early translational studies, and comprehensive analyses of late-stage clinical trials, the journal provides a comprehensive view of the discipline. In addition to original research, the journal features reviews and opinion pieces of broad significance, fostering cross-disciplinary collaboration within the cancer research community. Serving as a premier resource for immunology knowledge in cancer research, the journal drives deeper insights into the host-tumor relationship, potent cancer treatments, and enhanced clinical outcomes. Key areas of interest include endogenous antitumor immunity, tumor-promoting inflammation, cancer antigens, vaccines, antibodies, cellular therapy, cytokines, immune regulation, immune suppression, immunomodulatory effects of cancer treatment, emerging technologies, and insightful clinical investigations with immunological implications.
期刊最新文献
A PSMA-targeted Tri-specific Killer Engager enhances NK cell cytotoxicity against prostate cancer. Correction: CD28 Costimulatory Domain-Targeted Mutations Enhance Chimeric Antigen Receptor T-cell Function. Targeting of tumoral NAC1 mitigates myeloid-derived suppressor cell-mediated immunosuppression and potentiates anti-PD-1 therapy in ovarian cancer. Inflammatory stress determines the need for chemotherapy in patients with HER2-positive esophagogastric adenocarcinoma receiving targeted and immunotherapy. Combination CXCR4 and PD1 blockade enhances intratumoral dendritic cell activation and immune responses against hepatocellular carcinoma.
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