Dual near‐infrared II laser modulates the cellular redox state of T cells and augments the efficacy of cancer immunotherapy

过继性细胞移植 免疫疗法 CD8型 癌症免疫疗法 癌症研究 免疫系统 细胞毒性T细胞 癌症 肿瘤微环境 医学 T细胞 乳腺癌 癌细胞 免疫学 化学 体外 内科学 生物化学
作者
Wataru Katagiri,Shinya Yokomizo,Takanobu Ishizuka,Keiko Yamashita,Timo Kopp,Malte Roeßing,Akiko Satô,Taizo Iwasaki,Hideki Sato,Takeshi Fukuda,Hailey Monaco,Sophia Manganiello,Shinsuke Nomura,Mei Rosa Ng,Susanne Feil,Emiyu Ogawa,Dai Fukumura,Dmitriy N. Atochin,Hak Soo Choi,Satoshi Kashiwagi
出处
期刊:The FASEB Journal [Wiley]
卷期号:36 (10) 被引量:8
标识
DOI:10.1096/fj.202200033r
摘要

Immunotherapy, including immune checkpoint inhibitors, has revolutionized cancer treatment, but only a minor fraction of patients shows durable responses. A new approach to overcome this limitation is yet to be identified. Recently, we have shown that photobiomodulation (PBM) with near-infrared (NIR) light in the NIR-II window reduces oxidative stress and supports the proliferation of CD8+ T cells, suggesting that PBM with NIR-II light could augment anti-cancer immunity. Here, we report a novel approach to support tumor-infiltrating CD8+ T cells upon PBM with NIR-II laser with high tissue penetration depth. Brief treatments of a murine model of breast cancer with dual 1064 and 1270 nm lasers reduced the expression of the programmed cell death protein 1 (PD-1) in CD8+ T cells in a syngeneic mouse model of breast cancer. The direct effect of the NIR-II laser treatment on T cells was confirmed by the enhanced tumor growth delay by the adoptive transfer of laser-treated CD8+ T cells ex vivo against a model tumor antigen. We further demonstrated that specific NIR-II laser parameters augmented the effect of the immune checkpoint inhibitor on tumor growth. PBM with NIR-II light augments the efficacy of cancer immunotherapy by supporting CD8+ T cells. Unlike the current immunotherapy with risks of undesirable drug-drug interactions and severe adverse events, the laser is safe and low-cost. It can be broadly combined with other therapy without modification to achieve clinical significance. In addition, our study established a path to develop a novel laser-based therapy to treat cancer effectively.
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