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CRISPR/Cas9 介导的 CIS 缺失增强了人源原代自然杀伤细胞对同种异体胶质母细胞瘤的杀伤功能。

CIS deletion by CRISPR/Cas9 enhances human primary natural killer cell functions against allogeneic glioblastoma.

机构信息

Grandsoul Research Institute for Immunology, Inc, 8-1 Matsui, Uda, Nara, 634-8522, Japan.

Clinic Grandsoul Nara, Uda, Nara, Japan.

出版信息

J Exp Clin Cancer Res. 2023 Aug 10;42(1):205. doi: 10.1186/s13046-023-02770-6.

Abstract

BACKGROUND

Glioblastoma (GBM) is the most common malignant brain tumor and has "immunologically cold" features. Changing GBM to an "immunologically hot" tumor requires a strong trigger that induces initial immune responses in GBM. Allogeneic natural killer cells (NKCs) have gained considerable attention as promising immunotherapeutic tools against cancer, where gene-edited NKCs would result in effective anti-cancer treatment. The present study focused on the immune checkpoint molecule cytokine-inducible SH2-containing protein (CISH, or CIS) as a critical negative regulator in NKCs.

METHODS

The GBM tumor environment featured with immunological aspect was analyzed with Cancer immunogram and GlioVis. We generated human primary CIS-deleted NKCs (NK dCIS) using clustered regularly interspaced short palindromic repeats/CRISPR-associated protein 9 (CRISPR/Cas9) with single guide RNA targeting genome sites on CIS coding exons. The genome-edited NKCs underwent microarray with differential expression analysis and gene set enrichment analysis (GSEA). The anti-GBM activity of the genome-edited NKCs was evaluated by apoptosis induction effects against allogeneic GBM cells and spheroids. We further detected in vivo antitumor effects using xenograft brain tumor mice.

RESULTS

We successfully induced human CIS-deleted NKCs (NK dCIS) by combining our specific human NKC expansion method available for clinical application and genome editing technology. CIS gene-specific guide RNA/Cas9 protein complex suppressed CIS expression in the expanded NKCs with high expansion efficacy. Comprehensive gene expression analysis demonstrated increased expression of 265 genes and decreased expression of 86 genes in the NK dCIS. Gene set enrichment analysis revealed that the enriched genes were involved in NKC effector functions. Functional analysis revealed that the NK dCIS had increased interferon (IFN)ɤ and tumor necrosis factor (TNF) production. CIS deletion enhanced NKC-mediated apoptosis induction against allogeneic GBM cells and spheroids. Intracranial administration of the allogeneic NKCs prolonged the overall survival of xenograft brain tumor mice. Furthermore, the NK dCIS extended the overall survival of the mice.

CONCLUSION

The findings demonstrated the successful induction of human primary NK dCIS with CRISPR/Cas9 with efficient expansion. CIS deletion enhanced the NKC-mediated anti-tumor effects in allogeneic GBM and could be a promising immunotherapeutic alternative for patients with GBM.

摘要

背景

胶质母细胞瘤(GBM)是最常见的恶性脑肿瘤,具有“免疫冷”的特征。将 GBM 转变为“免疫热”肿瘤需要一个强大的触发因素,该因素可诱导 GBM 中初始免疫反应。同种异体自然杀伤细胞(NKC)作为对抗癌症的有前途的免疫治疗工具引起了广泛关注,其中基因编辑的 NKC 将导致有效的抗癌治疗。本研究专注于免疫检查点分子细胞因子诱导的 SH2 含有蛋白(CIS,或 CIS)作为 NKC 中的关键负调节剂。

方法

使用癌症免疫图谱和Gliovis 分析具有免疫方面特征的 GBM 肿瘤环境。我们使用靶向 CIS 编码外显子基因组位点的簇状规则间隔短回文重复/CRISPR 相关蛋白 9(CRISPR/Cas9)生成人类初级 CIS 缺失的 NKC(NK dCIS)。基因组编辑的 NKC 进行微阵列差异表达分析和基因集富集分析(GSEA)。通过诱导同种异体 GBM 细胞和球体的凋亡作用评估基因组编辑的 NKC 的抗 GBM 活性。我们进一步使用异种脑肿瘤小鼠检测体内抗肿瘤作用。

结果

我们通过结合我们专有的临床应用 NKC 扩增方法和基因组编辑技术,成功诱导了人类 CIS 缺失的 NKC(NK dCIS)。CIS 基因特异性向导 RNA/Cas9 蛋白复合物以高扩增效率抑制扩增 NKC 中的 CIS 表达。综合基因表达分析表明,NK dCIS 中 265 个基因的表达增加,86 个基因的表达减少。基因集富集分析显示,富集的基因参与 NKC 效应功能。功能分析表明,NK dCIS 增加了干扰素(IFN)ɤ和肿瘤坏死因子(TNF)的产生。CIS 缺失增强了 NKC 介导的对同种异体 GBM 细胞和球体的凋亡诱导作用。同种异体 NKCs 的颅内给药延长了异种脑肿瘤小鼠的总生存期。此外,NK dCIS 延长了小鼠的总生存期。

结论

研究结果表明,使用 CRISPR/Cas9 成功诱导了人类初级 NK dCIS,具有高效的扩增。CIS 缺失增强了 NKC 介导的同种异体 GBM 中的抗肿瘤作用,可能是 GBM 患者有前途的免疫治疗替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2782/10413513/4e797d2dff6f/13046_2023_2770_Fig1_HTML.jpg

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