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胶质母细胞瘤的多特异性靶向治疗:肿瘤微环境响应型多功能工程化自然杀伤细胞

Multispecific targeting of glioblastoma with tumor microenvironment-responsive multifunctional engineered NK cells.

机构信息

Department of Industrial and Physical Pharmacy, Purdue University, West Lafayette, IN 47907.

Center for Cancer Research, Purdue University, West Lafayette, IN 47907.

出版信息

Proc Natl Acad Sci U S A. 2021 Nov 9;118(45). doi: 10.1073/pnas.2107507118.

Abstract

Tumor antigen heterogeneity, a severely immunosuppressive tumor microenvironment (TME) and lymphopenia resulting in inadequate immune intratumoral trafficking, have rendered glioblastoma (GBM) highly resistant to therapy. To address these obstacles, here we describe a unique, sophisticated combinatorial platform for GBM: a cooperative multifunctional immunotherapy based on genetically engineered human natural killer (NK) cells bearing multiple antitumor functions including local tumor responsiveness that addresses key drivers of GBM resistance to therapy: antigen escape, immunometabolic reprogramming of immune responses, and poor immune cell homing. We engineered dual-specific chimeric antigen receptor (CAR) NK cells to bear a third functional moiety that is activated in the GBM TME and addresses immunometabolic suppression of NK cell function: a tumor-specific, locally released antibody fragment which can inhibit the activity of CD73 independently of CAR signaling and decrease the local concentration of adenosine. The multifunctional human NK cells targeted patient-derived GBM xenografts, demonstrated local tumor site-specific activity in the tissue, and potently suppressed adenosine production. We also unveil a complex reorganization of the immunological profile of GBM induced by inhibiting autophagy. Pharmacologic impairment of the autophagic process not only sensitized GBM to antigenic targeting by NK cells but promoted a chemotactic profile favorable to NK infiltration. Taken together, our study demonstrates a promising NK cell-based combinatorial strategy that can target multiple clinically recognized mechanisms of GBM progression simultaneously.

摘要

肿瘤抗原异质性、严重抑制免疫的肿瘤微环境(TME)和导致免疫细胞不能充分进入肿瘤内的淋巴细胞减少,使胶质母细胞瘤(GBM)对治疗具有高度耐药性。为了解决这些障碍,我们在这里描述了一种用于 GBM 的独特、复杂的组合平台:一种基于基因工程改造的具有多种抗肿瘤功能的人自然杀伤(NK)细胞的协同多功能免疫疗法,包括针对 GBM 治疗耐药的关键驱动因素的局部肿瘤反应性:抗原逃逸、免疫代谢重编程免疫反应和免疫细胞归巢不良。我们设计了双特异性嵌合抗原受体(CAR)NK 细胞,使其携带第三个功能部分,该部分在 GBM TME 中被激活,并解决 NK 细胞功能的免疫代谢抑制:一种肿瘤特异性的、局部释放的抗体片段,可独立于 CAR 信号抑制 CD73 的活性,并降低局部腺苷浓度。多功能人 NK 细胞靶向患者来源的 GBM 异种移植物,在组织中表现出局部肿瘤部位特异性活性,并强力抑制腺苷的产生。我们还揭示了通过抑制自噬诱导的 GBM 免疫特征的复杂重组。自噬过程的药理学损伤不仅使 GBM 对 NK 细胞的抗原靶向敏感,而且还促进了有利于 NK 浸润的趋化谱。总之,我们的研究表明了一种有前途的基于 NK 细胞的组合策略,该策略可以同时针对 GBM 进展的多个临床上公认的机制。

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