Vascular Biology and Angiogenesis Laboratory, Scientific and Technology Pole, IRCCS MultiMedica, Milano, Italy.
Immunology and General Pathology Laboratory, Department of Biotechnology and Life Sciences, University of Insubria, Varese, Italy.
J Immunol Res. 2018 Mar 29;2018:2438598. doi: 10.1155/2018/2438598. eCollection 2018.
Natural killer (NK) cells are crucial in tumor recognition and eradication, but their activity is impaired in cancer patients, becoming poorly cytotoxic. A particular type of NK cells, from the decidua, has low cytotoxicity and shows proangiogenic functions. We investigated whether NK cells from peripheral blood (PB) and pleural effusions of patients develop decidual-like NK phenotype and whether exposure to IL-2 can restore their killing ability in the presence of pleural fluids. NK cells from pleural effusion of patients with inflammatory conditions (iPE, = 18), primary tumor (ptPE, = 18), and metastatic tumor (tmPE, = 27) acquired the CD56CD16 phenotype. NK cells from both ptPE and tmPE showed increased expression for the CD49a and CD69 decidual-like (dNK) markers and decreased levels of the CD57 maturation marker. NK from all the PE analyzed showed impaired degranulation capability and reduced perforin release. PE-NK cells efficiently responded to IL-2 stimulation . Addition of TGF or cell-free pleural fluid to IL-2 in the culture medium abrogated NK cell CD107a and IFN expression even in healthy donors ( = 14) NK. We found that tmPE-NK cells produce VEGF and support the formation of capillary-like structures in endothelial cells. Our results suggest that the PE tumor microenvironment can shape NK cell polarization towards a low cytotoxic, decidual-like, highly proangiogenic phenotype and that IL-2 treatment is not sufficient to limit this process.
自然杀伤 (NK) 细胞在肿瘤识别和清除中至关重要,但在癌症患者中其活性受损,细胞毒性降低。来自蜕膜的一种特殊类型的 NK 细胞具有低细胞毒性,并表现出促血管生成功能。我们研究了来自外周血 (PB) 和患者胸腔积液的 NK 细胞是否会发展出蜕膜样 NK 表型,以及在存在胸腔液的情况下暴露于 IL-2 是否可以恢复其杀伤能力。来自炎症性胸腔积液患者 (iPE,n = 18)、原发性肿瘤 (ptPE,n = 18) 和转移性肿瘤 (tmPE,n = 27) 的 NK 细胞获得了 CD56CD16 表型。ptPE 和 tmPE 的 NK 细胞均表现出 CD49a 和 CD69 蜕膜样 (dNK) 标志物的表达增加和 CD57 成熟标志物的水平降低。所有分析的 PE-NK 细胞均显示出脱颗粒能力受损和穿孔素释放减少。PE-NK 细胞对 IL-2 刺激的反应效率高。即使在健康供体 (n = 14) NK 中,向培养基中添加 TGF 或无细胞胸腔液也会阻断 NK 细胞 CD107a 和 IFN 的表达。我们发现 tmPE-NK 细胞产生 VEGF 并支持内皮细胞中毛细血管样结构的形成。我们的结果表明,PE 肿瘤微环境可以将 NK 细胞向低细胞毒性、蜕膜样、高度促血管生成表型极化,并且 IL-2 治疗不足以限制这一过程。