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等离子体诱导氧化对 NK 细胞免疫检查点配体的影响:计算-实验方法

英文原题:Effect of plasma-induced oxidation on NK cell immune checkpoint ligands: A computational-experimental approach.

查看英文原题

Effect of plasma-induced oxidation on NK cell immune checkpoint ligands: A computational-experimental approach.

PubMed 2024/10/01(内容时间) Redox Biol Q1 · IF 16.2(JCR 2025)

研究概要

非热等离子体(NTP)兼具细胞毒性与免疫调节作用,作为一种强效抗肿瘤疗法展现出前景。

中文摘要

非热等离子体(NTP)具有细胞毒性和免疫调节作用,有望成为强效抗癌疗法。本研究考察 NTP 诱导的氧化对自然杀伤(NK)细胞功能若干关键决定性免疫检查点的化学和生物学影响。我们采用分子动力学(MD)和伞形采样模拟,研究 NTP 诱导的氧化变化对 MHC-I 复合物 HLA-Cw4 和 HLA-E 的影响。模拟结果显示,这些化学变化不会显著影响上述标志物与对应 NK 细胞受体的结合亲和力;在人头颈部鳞状细胞癌细胞中,NTP 处理后配体表达的实验检测结果支持这一结论。进一步考察其他影响 NK 细胞反应的关键配体时,我们发现,抑制性 TIGIT 轴的靶配体 CD155 和 CD112,以及免疫检查点 CD73,在处理后立即迅速下降。除这些短暂化学变化外,NTP 中的活性物质还会引发一系列下游细胞反应,表现为处理 24 小时后 NK 细胞激活强效配体应激蛋白 MICA/B 上调。总体而言,本研究证实 NTP 具有免疫调节潜力,并阐明了 NTP 与癌细胞之间的相互作用机制。

展开英文摘要原文

Non-thermal plasma (NTP) shows promise as a potent anti-cancer therapy with both cytotoxic and immunomodulatory effects. In this study, we investigate the chemical and biological effects of NTP-induced oxidation on several key, determinant immune checkpoints of natural killer (NK) cell function. We used molecular dynamics (MD) and umbrella sampling simulations to investigate the effect of NTP-induced oxidative changes on the MHC-I complexes HLA-Cw4 and HLA-E. Our simulations indicate that these chemical alterations do not significantly affect the binding affinity of these markers to their corresponding NK cell receptor, which is supported with experimental read-outs of ligand expression on human head and neck squamous cell carcinoma cells after NTP application. Broadening our scope to other key ligands for NK cell reactivity, we demonstrate rapid reduction in CD155 and CD112, target ligands of the inhibitory TIGIT axis, and in immune checkpoint CD73 immediately after treatment. Besides these transient chemical alterations, the reactive species in NTP cause a cascade of downstream cellular reactions. This is underlined by the upregulation of the stress proteins MICA/B, potent ligands for NK cell activation, 24 h post treatment. Taken together, this work corroborates the immunomodulatory potential of NTP, and sheds light on the interaction mechanisms between NTP and cancer cells.

论文信息

作者
Heirman P、Verswyvel H、Bauwens M、Yusupov M、De Waele J、Lin A、Smits E、Bogaerts A
第一作者单位
Research Group PLASMANT, Department of Chemistry, University of Antwerp, 2610, Antwerp, Wilrijk, Belgium. Electronic address: pepijn.heirman@uantwerpen.be.Belgium
通讯作者单位
Research Group PLASMANT, Department of Chemistry, University of Antwerp, 2610, Antwerp, Wilrijk, Belgium; Center for Oncological Research (CORE), Integrated Personalized and Precision Oncology Network (IPPON), University of Antwerp, 2610, Antwerp, Wilrijk, Belgium. Electronic address: hanne.verswyvel@uantwerpen.be.Belgium
文献类型
非美国政府资助研究
期刊
Redox biology2024 Nov
原文标识
PubMed 39395241 · DOI 10.1016/j.redox.2024.103381