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代谢程序驱动治疗性 NK 细胞在缺氧肿瘤环境中的功能

英文原题:Metabolic programs drive function of therapeutic NK cells in hypoxic tumor environments.

查看英文原题

Metabolic programs drive function of therapeutic NK cells in hypoxic tumor environments.

PubMed 2024/10/30(内容时间) Sci Adv Q1 · IF 13.9(JCR 2025)

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中文摘要

实体瘤中的有限氧气(缺氧)对自然杀伤(NK)细胞免疫治疗的成功构成挑战。NK细胞在缺氧(1%氧气)条件下培养时细胞毒性受损,但在生理氧浓度(>5%)或大气氧浓度(20%)下则不受影响。我们发现细胞毒性的变化受转录水平调控,并伴随代谢失调。给予interleukin-15(IL-15)可增强缺氧条件下NK细胞的细胞毒性,但用携带IL-21和4-1BBL的饲养细胞进行预激活效果更佳。预激活导致缺氧条件下代谢扰动减少;对氧化应激的抵抗力增强;且未出现缺氧诱导的转录因子(T-bet和Eomes)、活化受体、黏附分子(CD2)和细胞毒性蛋白(TRAIL和FasL)的丢失。在缺氧暴露下,CD122/IL-2Rβ仍存在缺陷,这影响了IL-15信号传导。然而,在抗CD16/FcγRIII背景下递送IL-15的三特异性杀伤衔接分子能够绕过这一缺陷,增强缺氧条件下新鲜和预激活NK细胞的细胞毒性。

展开英文摘要原文

Limited oxygen (hypoxia) in solid tumors poses a challenge to successful immunotherapy with natural killer (NK) cells. NK cells have impaired cytotoxicity when cultured in hypoxia (1% oxygen) but not physiologic (>5%) or atmospheric oxygen (20%).

We found that changes to cytotoxicity were regulated at the transcriptional level and accompanied by metabolic dysregulation. Dosing with interleukin-15 (IL-15) enhanced NK cell cytotoxicity in hypoxia, but preactivation with feeder cells bearing IL-21 and 4-1BBL was even better.

Preactivation resulted in less perturbed metabolism in hypoxia; greater resistance to oxidative stress; and no hypoxia-induced loss of transcription factors (T-bet and Eomes), activating receptors, adhesion molecules (CD2), and cytotoxic proteins (TRAIL and FasL). There remained a deficit in CD122/IL-2Rβ when exposed to hypoxia, which affected IL-15 signaling.

However, tri-specific killer engager molecules that deliver IL-15 in the context of anti-CD16/FcγRIII were able to bypass this deficit, enhancing cytotoxicity of both fresh and preactivated NK cells in hypoxia.

论文信息

作者
Kennedy PR、Arvindam US、Phung SK、Ettestad B、Feng X、Li Y、Kile QM、Hinderlie P
单位
Division of Hematology, Oncology, and Transplantation, Department of Medicine, University of Minnesota, Minneapolis, MN, USA.United States
文献类型
美国 NIH 资助研究 · 非美国政府资助研究 · 美国政府(非公共卫生署)资助研究
期刊
Science advances2024 Nov
原文标识
PubMed 39475618 · DOI 10.1126/sciadv.adn1849