RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Memory-like Natural Killer Cell and CD19 Antibody-Based Immunotherapy in Combination with Tyrosine Kinase Inhibition Has Antitumor Effects against Ph(-like) Acute Lymphoblastic Leukemia.
Memory-like Natural Killer Cell and CD19 Antibody-Based Immunotherapy in Combination with Tyrosine Kinase Inhibition Has Antitumor Effects against Ph(-like) Acute Lymphoblastic Leukemia.
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费城样急性淋巴细胞白血病(Ph-like ALL)是一种由酪氨酸激酶驱动、分子特征独特的癌症,复发率高且对联合化疗应答不佳。临床上使用酪氨酸激酶抑制剂(TKI)可改善 Ph-like ALL 患者生存。工程化抗体和细胞免疫疗法有望推进这一遗传亚型 ALL 的治疗。异基因记忆样NK 细胞(ML-NK)已用于治疗白血病,其移植物抗宿主反应风险较低,可与靶向白血病表位的抗体联合。
不过,针对 Ph-like ALL 突变或通路的 TKI 可能干扰记忆功能及抗体依赖性 NK 细胞介导的细胞毒作用(ADCC)。
本研究探讨 ML-NK 细胞和 Fc 功能增强型 CD19-ADCC 联合 TKI 治疗激酶驱动白血病模型的潜力,包括患者来源的 Ph-like ALL 异种移植模型。基因组学和功能研究显示,与可溶性 IL-12、IL-15 和 IL-18 共刺激相比,与 K562 饲养细胞共培养引起的受体交联,能形成更稳健的 NK 细胞记忆样状态。受体交联后再经 IL 预激活的优化 ML-NK 细胞表现出增强的抗白血病效应功能,可补偿耗竭的 B 细胞前体白血病浸润原代 NK 细胞。TKI 对 NK 细胞生物学的多项特征产生不同影响,包括活力、扩增、代谢、受体谱和细胞毒性。使用特定 Abelson(ABL)或 Janus 激酶(JAK)抑制剂时,ADCC 得以维持;相反,多靶点 TKI dasatinib 会抑制依赖脾酪氨酸激酶的 ADCC。
总之,优化的 ML-NK 细胞和 CD19 抗体免疫疗法联合审慎选择的 TKI,对激酶驱动白血病显示显著体外疗效。
Philadelphia-like acute lymphoblastic leukemia (Ph-like ALL) is a molecularly distinct tyrosine kinase-driven cancer that has a high relapse rate and poor response toward combinatorial chemotherapy. Tyrosine kinase inhibitors (TKI) in the clinic improve the survival of patients with Ph-like ALL.
Engineered antibody and cell-based immunotherapies can advance treatment for this genetic subtype of ALL. Allogeneic memory-like natural killer (ML-NK) cells have been used to treat leukemia and have shown a low risk of graft-versus-host reaction, which may be combined with leukemia epitope-targeting antibodies.
However, mutation or pathway-directed TKI of Ph-like ALL can interfere with memory function and antibody-dependent NK cell-mediated cytotoxicity (ADCC). In this study, we explored the potential of ML-NK cells and Fc-enhanced CD19-ADCC in combination with TKI directed against kinase-driven leukemia models, including patient-derived xenografted Ph-like ALL.
We demonstrate that receptor cross-linking in coculture with K562 feeder cells generated a more robust memory-like state of NK cells than coactivation with soluble IL-12, IL-15, and IL-18, as determined by genomic and functional studies. After receptor cross-linking and subsequent ILs preactivation, the optimized ML-NK cells showed enhanced antileukemic effector functions, which could compensate for exhausted B-cell precursor leukemia-infiltrating primary NK cells.
TKI differentially affected multiple features of NK cell biology including viability, expansion, metabolism, receptor repertoire, and cytotoxicity. ADCC was maintained upon exposure to specific Abelson (ABL) or Janus kinase (JAK) inhibitors, in contrast to the multitarget TKI dasatinib impeding spleen tyrosine kinase-dependent ADCC.
In conclusion, optimized ML-NK cell and CD19 antibody-based immunotherapy combined with carefully selected TKI demonstrates significant in vitro treatment efficacy in kinase-driven leukemia.
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