研究概要
这些结果证明了输注同种异体NK细胞并联合CD155阻断以激发针对OS的GVT效应的安全性和有效性,并表明其获益部分是通过DNAM-1实现的。
研究思路结论见上方概要
背景
异基因骨髓移植(alloBMT)通过移植物抗肿瘤(GVT)效应对血液系统恶性肿瘤具有治愈作用,但对骨肉瘤(OS)等实体瘤一直无效。OS 表达 CD155,它与抑制性受体 TIGIT 和 CD96 强烈相互作用,但也与自然杀伤(NK)细胞上的激活性受体 DNAM-1 结合。CD155 从未在 alloBMT 后被靶向。在 alloBMT 后将过继转移的同种异体 NK(alloNK)细胞与 CD155 阻断联合,可能增强针对 OS 的 GVT 效应。
方法
小鼠NK细胞在体外用可溶性IL-15/IL-15R激活并扩增。在体外评估了AlloNK和同基因NK(synNK)细胞针对表达CD155的小鼠OS细胞系K7M2的表型、细胞毒性、细胞因子产生和脱颗粒。携带肺OS转移瘤的小鼠接受了alloBMT和alloNK细胞输注联合抗CD155,分别在肿瘤诱导前或诱导后,其中部分组接受抗DNAM-1预处理的alloNK细胞。监测肿瘤生长、GVHD和生存,并通过RNA微阵列评估肺组织的差异基因表达。
结果
与synNK细胞相比,alloNK细胞对表达CD155的OS表现出更优越的细胞毒性,且该活性可被CD155阻断所增强。CD155阻断通过DNAM-1增加了alloNK细胞的脱颗粒和干扰素γ产生。在体内,CD155阻断联合alloNK输注提高了治疗alloBMT后复发OS的生存率。对于在alloBMT前治疗已建立的OS,未观察到获益。与单独CD155阻断相比,使用CD155和抗DNAM-1联合预处理的alloNK治疗削弱了所观察到的生存和肿瘤控制获益。RNA微阵列显示,接受alloNK和CD155阻断治疗的小鼠细胞毒性基因和NKG2D配体H60a表达增加,而接受抗DNAM-1预处理alloNK细胞治疗的小鼠则导致NK细胞抑制性受体基因上调。阻断alloNK上的DNAM-1可消除细胞毒性,而阻断NKG2D则无影响,提示DNAM-1:CD155相互作用驱动alloNK对OS的活化。
展开英文摘要原文
BACKGROUND: Allogeneic bone marrow transplant (alloBMT) is curative for hematologic malignancies through the graft-versus-tumor (GVT) effect but has been ineffective for solid tumors like osteosarcoma (OS). OS expresses CD155 which interacts strongly with inhibitory receptors TIGIT and CD96 but also binds to activating receptor DNAM-1 on natural killer (NK) cells. CD155 has never been targeted after alloBMT. Combining adoptively transferred allogeneic NK (alloNK) cells with CD155 blockade after alloBMT may enhance a GVT effect against OS.
METHODS: Murine NK cells were activated and expanded ex vivo with soluble IL-15/IL-15R . AlloNK and syngeneic NK (synNK) cell phenotype, cytotoxicity, cytokine production, and degranulation against CD155-expressing murine OS cell line K7M2 were assessed in vitro. Mice bearing pulmonary OS metastases underwent alloBMT and alloNK cell infusion with anti-CD155 either before or after tumor induction, with select groups receiving anti-DNAM-1 pretreated alloNK cells. Tumor growth, GVHD and survival were monitored, and differential gene expression of lung tissue was assessed by RNA microarray.
RESULTS: AlloNK cells exhibited superior cytotoxicity against CD155-expressing OS compared to synNK cells, and this activity was enhanced by CD155 blockade. CD155 blockade increased alloNK cell degranulation and interferon gamma production through DNAM-1. In vivo, CD155 blockade with alloNK infusion increased survival when treating OS that relapsed after alloBMT. No benefit was seen for treating established OS before alloBMT. Treatment with combination CD155 and anti-DNAM-1 pretreated alloNK ameliorated survival and tumor control benefits seen with CD155 blockade alone. RNA microarray showed mice treated with alloNK and CD155 blockade had increased expression of cytotoxicity genes and the NKG2D ligand H60a, whereas mice treated with anti-DNAM-1 pretreated alloNK cells resulted in upregulation of NK cell inhibitory receptor genes. Whereas blocking DNAM-1 on alloNK abrogated cytotoxicity, blocking NKG2D had no effect, implying DNAM-1:CD155 engagement drives alloNK activation against OS.
CONCLUSIONS: These results demonstrate the safety and efficacy of infusing alloNK cells with CD155 blockade to mount a GVT effect against OS and show benefits are in part through DNAM-1. Defining the hierarchy of receptors that govern alloNK responses is critical to translating alloNK cell infusions and immune checkpoint inhibition for solid tumors treated with alloBMT.
WHAT IS ALREADY KNOWN ON THIS TOPIC: Allogeneic bone marrow transplant (alloBMT) has yet to show efficacy in treating solid tumors, such as osteosarcoma (OS). CD155 is expressed on OS and interacts with natural killer (NK) cell receptors, such as activating receptor DNAM-1 and inhibitory receptors TIGIT and CD96 and has a dominant inhibitory effect on NK cell activity. Targeting CD155 interactions on allogeneic NK cells could enhance anti-OS responses, but this has not been tested after alloBMT.
WHAT THIS STUDY ADDS: CD155 blockade enhances allogeneic natural killer cell-mediated cytotoxicity against OS and improved event-free survival after alloBMT in an in vivo mouse model of metastatic pulmonary OS. Addition of DNAM-1 blockade abrogated CD155 blockade-enhanced allogeneic NK cell antitumor responses.
HOW THIS STUDY MIGHT AFFECT RESEARCH PRACTICE OR POLICY: These results demonstrate efficacy of allogeneic NK cells combined with CD155 blockade to mount an antitumor response against CD155-expressing OS. Translation of combination adoptive NK cell and CD155 axis modulation offers a platform for alloBMT treatment approaches for pediatric patients with relapsed and refractory solid tumors.
论文信息
- 作者
- Cho MM、Song L、Quamine AE、Szewc F、Shi L、Ebben JD、Turicek DP、Kline JM
- 文献类型
- 预印本
- 期刊
- bioRxiv : the preprint server for biology2024 Jun 11