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美国卫生研究院文献>Chemical Science
>DNA lesion-gated dumbbell nanodevices enable on-demand activation of the cGAS-STING pathway for enhancing cancer immunotherapy
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DNA lesion-gated dumbbell nanodevices enable on-demand activation of the cGAS-STING pathway for enhancing cancer immunotherapy
Utilizing the cGAS-STING pathway to combat immune evasion is one of the most promising strategies for enhancing cancer immunotherapy. However, current techniques for activating the cGAS-STING pathway often face a dilemma, mainly due to the balance between efficacy and safety. Here, we develop a uracil base lesion-gated dumbbell DNA nanodevice (UBLE) that allows on-demand activation and termination of the cGAS-STING pathway in tumor cells, thereby enhancing cancer immunotherapy. The UBLE integrates two deoxyuridines (dU) in the stem for DNA lesion recognition, two locked complementary primer sequences (primers A and B) for DNA self-assembly, and a Förster resonance energy transfer pair (Cy3 and Cy5) attached to the loop for activation assessment. Upon the orthogonal recognition of tumor-specific repair indicators (UDG and APE1), the UBLE undergoes a conformational change to create massive nicked double-stranded DNA (dsDNA) units. These units self-assemble to generate long fluorescent dsDNA structures, permitting selective evaluation and on-demand activation of the cGAS-STING pathway. Furthermore, we demonstrate that the UBLE can effectively activate the cGAS-STING pathway in tumor cells, enhancing NK cell-targeted cancer immunotherapy. This work develops a DNA lesion-gated strategy for on-demand activation and termination of the cGAS-STING pathway, affording an innovative avenue for enhancing cancer immunotherapy.
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机译:利用 cGAS-STING 通路对抗免疫逃逸是增强癌症免疫治疗最有前途的策略之一。然而,目前激活 cGAS-STING 通路的技术经常面临困境,主要是由于疗效和安全性之间的平衡。在这里,我们开发了一种尿嘧啶碱基病变门控哑铃 DNA 纳米装置 (UBLE),它允许按需激活和终止肿瘤细胞中的 cGAS-STING 通路,从而增强癌症免疫治疗。UBLE 在茎中集成了两个脱氧尿嘧啶 (dU) 用于 DNA 损伤识别,两个锁定的互补引物序列(引物 A 和 B)用于 DNA 自组装,以及一个连接到环的 Förster 共振能量转移对(Cy3 和 Cy5)用于激活评估。在肿瘤特异性修复指标 (UDG 和 APE1) 的正交识别后,UBLE 发生构象变化,产生大量带切口的双链 DNA (dsDNA) 单元。这些单元自组装以产生长荧光 dsDNA 结构,允许选择性评估和按需激活 cGAS-STING 通路。此外,我们证明 UBLE 可以有效激活肿瘤细胞中的 cGAS-STING 通路,增强 NK 细胞靶向癌症免疫治疗。这项工作开发了一种 DNA 损伤门控策略,用于按需激活和终止 cGAS-STING 通路,为增强癌症免疫治疗提供了一条创新途径。
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