Bodac Anita, Mayet Abdullah, Rana Sarika, Pascual Justine, Bowler Amber D, Roh Vincent, Fournier Nadine, Craciun Ligia, Demetter Pieter, Radtke Freddy, Meylan Etienne
Swiss Institute for Experimental Cancer Research, School of Life Sciences, Ecole Polytechnique Fédérale de Lausanne, 1015, Lausanne, Switzerland.
Laboratory of Immunobiology, Department of Molecular Biology, Université libre de Bruxelles, 6041, Gosselies, Belgium.
EMBO Mol Med. 2024 Jan;16(1):158-184. doi: 10.1038/s44321-023-00013-x. Epub 2023 Dec 20.
Elevated peripheral blood and tumor-infiltrating neutrophils are often associated with a poor patient prognosis. However, therapeutic strategies to target these cells are difficult to implement due to the life-threatening risk of neutropenia. In a genetically engineered mouse model of lung adenocarcinoma, tumor-associated neutrophils (TAN) demonstrate tumor-supportive capacities and have a prolonged lifespan compared to circulating neutrophils. Here, we show that tumor cell-derived GM-CSF triggers the expression of the anti-apoptotic Bcl-xL protein and enhances neutrophil survival through JAK/STAT signaling. Targeting Bcl-xL activity with a specific BH3 mimetic, A-1331852, blocked the induced neutrophil survival without impacting their normal lifespan. Specifically, oral administration with A-1331852 decreased TAN survival and abundance, and reduced tumor growth without causing neutropenia. We also show that G-CSF, a drug used to combat neutropenia in patients receiving chemotherapy, increased the proportion of young TANs and augmented the anti-tumor effect resulting from Bcl-xL blockade. Finally, our human tumor data indicate the same role for Bcl-xL on pro-tumoral neutrophil survival. These results altogether provide preclinical evidence for safe neutrophil targeting based on their aberrant intra-tumor longevity.
外周血中性粒细胞和肿瘤浸润性中性粒细胞水平升高通常与患者预后不良相关。然而,由于存在威胁生命的中性粒细胞减少风险,针对这些细胞的治疗策略难以实施。在一种基因工程肺癌小鼠模型中,肿瘤相关中性粒细胞(TAN)表现出肿瘤支持能力,并且与循环中性粒细胞相比具有更长的寿命。在此,我们表明肿瘤细胞衍生的粒细胞-巨噬细胞集落刺激因子(GM-CSF)触发抗凋亡蛋白Bcl-xL的表达,并通过JAK/STAT信号通路增强中性粒细胞的存活。用一种特异性BH3模拟物A-1331852靶向Bcl-xL活性,可阻断诱导的中性粒细胞存活,而不影响其正常寿命。具体而言,口服A-1331852可降低TAN的存活和丰度,并减少肿瘤生长,而不会导致中性粒细胞减少。我们还表明,粒细胞集落刺激因子(G-CSF),一种用于治疗接受化疗患者中性粒细胞减少的药物,增加了年轻TAN的比例,并增强了Bcl-xL阻断所产生的抗肿瘤作用。最后,我们的人类肿瘤数据表明Bcl-xL在促肿瘤中性粒细胞存活中发挥相同作用。这些结果共同为基于肿瘤内异常长寿的中性粒细胞安全靶向提供了临床前证据。