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I 型干扰素产生的内在抑制是 IL-15 分泌型 NK 细胞在 B 细胞急性淋巴细胞白血病中疗效的基础

英文原题:Intrinsic suppression of type I interferon production underlies the therapeutic efficacy of IL-15-producing natural killer cells in B-cell acute lymphoblastic leukemia.

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Intrinsic suppression of type I interferon production underlies the therapeutic efficacy of IL-15-producing natural killer cells in B-cell acute lymphoblastic leukemia.

PubMed 2023/05/01(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

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研究概要

我们发现,恢复 B-ALL 中固有受抑的 IFN-I 产生是产生 IL-15 的 NK 细胞治疗疗效的基础,并且此类 NK 细胞代表了一种有吸引力的治疗解决方案,可解决高危 B-ALL 中 MYC 难以成药的问题。

研究思路结论见上方概要

I型干扰素(IFN-I)由造血细胞分泌,驱动对实体瘤的免疫监视。然而,在包括B细胞急性淋巴细胞白血病(B-ALL)在内的造血系统恶性肿瘤中,IFN-I驱动的免疫应答受到抑制的机制尚不清楚。

利用高维流式细胞术,我们描绘了高级别原发人类和小鼠B-ALL中IFN-I产生及IFN-I驱动免疫反应的缺陷。我们开发自然杀伤(NK)细胞作为疗法,以对抗B-ALL中IFN-I产生的内在抑制。

我们发现,IFN-I信号基因的高表达预测B-ALL患者良好的临床结局,突显了IFN-I通路在该恶性肿瘤中的重要性。我们表明,人类和小鼠B-ALL微环境在旁分泌(浆细胞样树突状细胞)和/或自分泌(B细胞)IFN-I产生以及IFN-I驱动的免疫反应方面存在内在缺陷。在易患MYC驱动B-ALL的小鼠中,IFN-I产生减少足以抑制免疫系统并促进白血病发展。在抗白血病免疫亚群中,抑制IFN-I产生最显著地降低IL-15的转录,并减少B-ALL微环境中NK细胞数量和效应成熟。过继转移健康NK细胞显著延长明显ALL负荷的转基因小鼠的生存期。向易患B-ALL的小鼠施用IFN-Is可减少白血病进展,并增加循环中总NK和NK细胞效应细胞的频率。在原代小鼠B-ALL微环境中,用IFN-Is离体处理恶性和非恶性免疫细胞完全恢复近端IFN-I信号传导,并部分恢复IL-15产生。在B-ALL患者中,IL-15的抑制在MYC过表达的难治亚型中最为严重。MYC过表达促进B-ALL对NK细胞介导杀伤的敏感性。为了对抗MYC高表达人类B-ALL中被抑制的IFN-I诱导的IL-15产生,我们通过CRISPRa工程化了一种分泌IL-15的新型人类NK细胞系。CRISPRa IL-15分泌型人类NK细胞在体外杀伤高级别人类B-ALL,并在体内比不产生IL-15的NK细胞更有效地阻断白血病进展。

展开英文摘要原文

Type I interferons (IFN-Is), secreted by hematopoietic cells, drive immune surveillance of solid tumors. However, the mechanisms of suppression of IFN-I-driven immune responses in hematopoietic malignancies including B-cell acute lymphoblastic leukemia (B-ALL) are unknown.

Using high-dimensional cytometry, we delineate the defects in IFN-I production and IFN-I-driven immune responses in high-grade primary human and mouse B-ALLs. We develop natural killer (NK) cells as therapies to counter the intrinsic suppression of IFN-I production in B-ALL.

We find that high expression of IFN-I signaling genes predicts favorable clinical outcome in patients with B-ALL, underscoring the importance of the IFN-I pathway in this malignancy. We show that human and mouse B-ALL microenvironments harbor an intrinsic defect in paracrine (plasmacytoid dendritic cell) and/or autocrine (B-cell) IFN-I production and IFN-I-driven immune responses. Reduced IFN-I production is sufficient for suppressing the immune system and promoting leukemia development in mice prone to MYC-driven B-ALL. Among anti-leukemia immune subsets, suppression of IFN-I production most markedly lowers the transcription of IL-15 and reduces NK-cell number and effector maturation in B-ALL microenvironments. Adoptive transfer of healthy NK cells significantly prolongs survival of overt ALL-bearing transgenic mice. Administration of IFN-Is to B-ALL-prone mice reduces leukemia progression and increases the frequencies of total NK and NK-cell effectors in circulation. Ex vivo treatment of malignant and non-malignant immune cells in primary mouse B-ALL microenvironments with IFN-Is fully restores proximal IFN-I signaling and partially restores IL-15 production. In B-ALL patients, the suppression of IL-15 is the most severe in difficult-to-treat subtypes with MYC overexpression. MYC overexpression promotes sensitivity of B-ALL to NK cell-mediated killing. To counter the suppressed IFN-I-induced IL-15 production in MYC high human B-ALL, we CRISPRa-engineered a novel human NK-cell line that secretes IL-15. CRISPRa IL-15-secreting human NK cells kill high-grade human B-ALL in vitro and block leukemia progression in vivo more effectively than NK cells that do not produce IL-15.

We find that restoration of the intrinsically suppressed IFN-I production in B-ALL underlies the therapeutic efficacy of IL-15-producing NK cells and that such NK cells represent an attractive therapeutic solution for the problem of drugging MYC in high-grade B-ALL.

论文信息

作者
Kumar A、Taghi Khani A、Duault C、Aramburo S、Sanchez Ortiz A、Lee SJ、Chan A、McDonald T
第一作者单位
Department of Systems Biology, City of Hope Beckman Research Institute, Monrovia, California, USA.United States
通讯作者单位
Department of Systems Biology, City of Hope Beckman Research Institute, Monrovia, California, USA sswaminathan@coh.org.United States
文献类型
美国 NIH 资助研究 · 非美国政府资助研究
期刊
Journal for immunotherapy of cancer2023 May
原文标识
PubMed 37217248 · DOI 10.1136/jitc-2022-006649