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鉴定 BV6 诱导的 NK 细胞杀伤小儿横纹肌肉瘤球体敏感性。

Characterization of BV6-Induced Sensitization to the NK Cell Killing of Pediatric Rhabdomyosarcoma Spheroids.

机构信息

Institute for Experimental Cancer Research in Pediatrics, Goethe-University, 60528 Frankfurt, Germany.

Department for Children and Adolescents Medicine, University Hospital Frankfurt, Goethe-University, 60590 Frankfurt, Germany.

出版信息

Cells. 2023 Mar 15;12(6):906. doi: 10.3390/cells12060906.

Abstract

Although the overall survival in pediatric rhabdomyosarcoma (RMS) has increased over the last decades, the most aggressive subtype of alveolar RMS is in dire need of novel treatment strategies. RMS cells evade cell death induction and immune control by increasing the expression of inhibitors of apoptosis proteins (IAPs), which can be exploited and targeted with stimulation with Smac mimetics. Here, we used the Smac mimetic BV6 to re-sensitize RMS spheroids to cell death, which increased killing induced by natural killer (NK) cells. Single BV6 treatment of RMS spheroids did not reduce spheroidal growth. However, we observed significant spheroidal decomposition upon BV6 pre-treatment combined with NK cell co-cultivation. Molecularly, IAPs s are rapidly degraded by BV6, which activates NF-κB signal transduction pathways in RMS spheroids. RNA sequencing analysis validated NF-κB activation and identified a plethora of BV6-regulated genes. Additionally, BV6 released caspases from IAP-mediated inhibition. Here, caspase-8 might play a major role, as knockdown experiments resulted in decreased NK cell-mediated attack. Taken together, we improved the understanding of the BV6 mechanism of RMS spheroid sensitization to cytotoxic immune cells, which could be suitable for the development of novel combinatory cellular immunotherapy with Smac mimetics.

摘要

尽管过去几十年来儿科横纹肌肉瘤 (RMS) 的总体生存率有所提高,但最具侵袭性的肺泡 RMS 亚型仍迫切需要新的治疗策略。RMS 细胞通过增加凋亡蛋白抑制剂 (IAP) 的表达来逃避细胞死亡诱导和免疫控制,这可以通过刺激 Smac 模拟物来利用和靶向。在这里,我们使用 Smac 模拟物 BV6 使 RMS 球体重新对细胞死亡敏感,从而增加自然杀伤 (NK) 细胞诱导的杀伤。BV6 单一处理 RMS 球体不会减少球体的生长。然而,我们观察到在 BV6 预处理与 NK 细胞共培养结合后,球体显著分解。从分子上讲,BV6 可快速降解 IAPs,从而激活 RMS 球体中的 NF-κB 信号转导途径。RNA 测序分析验证了 NF-κB 的激活,并鉴定了大量由 BV6 调控的基因。此外,BV6 从 IAP 介导的抑制中释放出半胱天冬酶。在这里,半胱天冬酶-8 可能起主要作用,因为敲低实验导致 NK 细胞介导的攻击减少。总之,我们加深了对 BV6 使 RMS 球体对细胞毒性免疫细胞敏感的机制的理解,这可能适合开发新型 Smac 模拟物组合细胞免疫疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8c2/10047333/f4b8b38acbb9/cells-12-00906-g001.jpg

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