LiShizhen College of Traditional Chinese Medicine, Huanggang Normal University, Huanggang, Hubei, China.
Center for Cell and Gene Circuit Design, CAS Key Laboratory of Quantitative Engineering Biology, Shenzhen Institute of Synthetic Biology, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen, Guangdong, China.
Commun Biol. 2024 Jul 29;7(1):916. doi: 10.1038/s42003-024-06566-y.
Cytokines have attracted sustained attention due to their multi-functional cellular response in immunotherapy. However, their application was limited to their short half-time, narrow therapeutic window, and undesired side effects. To address this issue, we developed a portable smart blue-light controlled (PSLC) device based on optogenetic technology. By combining this PSLC device with blue-light controlled gene modules, we successfully achieved the targeted regulation of cytokine expression within the tumor microenvironment. To alter the tumor microenvironment of solid tumors, pro-inflammatory cytokines were selected as blue-light controlled molecules. The results show that blue-light effectively regulates the expression of pro-inflammatory cytokines both in vitro and in vivo. This strategy leads to enhanced and activated tumor-infiltrating immune cells, which facilitated to overcome the immunosuppressive microenvironment, resulting in significant tumor shrinkage in tumor-bearing mice. Hence, our study offers a unique strategy for cytokine therapy and a convenient device for animal studies in optogenetic immunotherapy.
细胞因子因其在免疫治疗中的多功能细胞反应而引起了持续关注。然而,它们的应用受到半衰期短、治疗窗口窄和不良反应等因素的限制。为了解决这个问题,我们开发了一种基于光遗传学技术的便携式智能蓝光控制(PSLC)设备。通过将这种 PSLC 设备与蓝光控制基因模块相结合,我们成功地实现了肿瘤微环境中细胞因子表达的靶向调节。为了改变实体瘤的肿瘤微环境,选择促炎细胞因子作为蓝光控制分子。结果表明,蓝光在体外和体内都能有效地调节促炎细胞因子的表达。这种策略导致肿瘤浸润免疫细胞的增强和激活,有助于克服免疫抑制微环境,从而导致荷瘤小鼠的肿瘤明显缩小。因此,我们的研究为细胞因子治疗提供了一种独特的策略,并为光遗传学免疫治疗中的动物研究提供了一种方便的设备。