癌症免疫疗法
免疫系统
核酶
癌症研究
下调和上调
免疫疗法
免疫检查点
转录组
黑色素瘤
癌细胞
先天免疫系统
化学
基因沉默
PD-L1
渗透(HVAC)
核酸酶
肿瘤微环境
RNA干扰
细胞生物学
巨噬细胞极化
癌症
细胞
信号转导
FOXP3型
T细胞
作者
Ming Zhao,Shan Qiao,Jie Bai,George Zhang,Zhiqin Xi,Zhenzhen Li,Xuelin Zhan,Ying Zhang,Xiaotong Yu,Yao Chen,Yijin Liu
标识
DOI:10.1002/advs.202517912
摘要
ABSTRACT Checkpoint blockade therapies targeting PD‐L1 have revolutionized cancer immunotherapy, yet their efficacy is constrained by systemic immune toxicity and inadequate immune infiltration in certain tumor types. Here, we introduce a synergistic gene‐silencing nanosystem based on a target‐selective Pistol ribozyme (PS473) encapsulated within a manganese‐based, pH‐responsive metal–organic framework (NKMOF‐101‐[Mn]). The engineered PS473 exhibited high cleavage efficiency toward GU‐rich PD‐L1 mRNA motifs and was further activated by Mn 2 + cofactors. NKMOF‐101‐[Mn] not only protects the ribozyme from nuclease degradation but also enables localized Mn 2 + release to increase catalytic activity and innate immune signaling under the acidic tumor microenvironment. In vitro, PS473@NKMOF‐101‐[Mn] markedly suppressed PD‐L1 expression and promoted macrophage activation. In the B16F10 melanoma model, this system achieved over 90% tumor inhibition, enhanced immune cell infiltration and activation, and exhibited minimal systemic toxicity. Transcriptomic profiling further revealed the upregulation of immune‐related pathways, supporting a synergistic mechanism of gene silencing and immune activation. Overall, this study established a ribozyme‐directed immunotherapeutic platform with strong potential for precision cancer therapy via checkpoint modulation and immune reprogramming.
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