日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

cGAS-IFN-I responses by extracting nuclear DNA from dying cells via nucleocytosis.

cGAS-IFN-I 通过核胞吞作用从垂死细胞中提取核 DNA 来产生反应。

Negishi Hideo, Wada Yusuke, Shirasaki Yoshitaka, Hayashi Tomoya, Kubota Yuji, Iwasaki Tomio, Kurosawa Mina, Ban Tatsuma, Muto Daisuke, Suenaga Yusuke, Kojima Taichi, Matsuda Yuzuki, Irish Sean Lord, Dodo Kosuke, Suzuki Toru, Yamagishi Mai, Temizoz Burcu, Yoshimori Atsushi, Kanai Chisato, Nagasaki Yoji, Ohmuraya Masaki, Tamura Tomohiko, Iwama Atsushi, Inada Toshifumi, Kuroda Etsushi, Kobiyama Kouji, Toyama-Sorimachi Noriko, Takekawa Mutsuhiro, Coban Cevayir, Ishii Ken J

Trained immunity using probiotics and inactivated pathogens enhances resistance to Salmonella enterica serovar Typhimurium infection by activating the cGAS-STING signal pathway in mice and chickens.

利用益生菌和灭活病原体进行训练免疫,可通过激活小鼠和鸡体内的 cGAS-STING 信号通路来增强对鼠伤寒沙门氏菌感染的抵抗力。

Jia Junpeng, Ji Wenxin, Xiong Ningna, Lin Jian, Yang Qian

Targeting FAM83D triggers tumor cell senescence via cGAS-STING signaling activation and reprograms TAMs to combat glioma.

靶向 FAM83D 可通过激活 cGAS-STING 信号通路触发肿瘤细胞衰老,并重编程 TAM 以对抗胶质瘤。

Liu Hongwei, Lin Xuelei, Dai Luohuan, Zhang Wei, Zhang Yihao, Liu Na, Li Yueshuo, Peters Jens Jeshu, Gu Jia, Peng Kang, Jiang Nian, Wanggou Siyi, Li Xuejun

TRIM30a coordinates neutrophil-macrophage crosstalk to resolve inflammation and drive osseointegration via suppressing NETosis/cGAS-STING axis.

TRIM30a 协调中性粒细胞-巨噬细胞的相互作用,通过抑制 NETosis/cGAS-STING 轴来消除炎症并促进骨整合。

Li Jia, Xu Yangbo, Zhao Congrui, Chen Xiaoyu, Xu Chuchu, Zhou Chuan, Wang Hui, Xu Antian, He Fuming

Dual-targeted manganese-doped carbon dots activate the cGAS-STING pathway and immunogenic cell death for potent glioblastoma immunotherapy.

双靶向锰掺杂碳点激活 cGAS-STING 通路和免疫原性细胞死亡,可有效治疗胶质母细胞瘤免疫疗法。

Li Zhen, Yu Changshui, Che Hongyu, Xu Duo, Lu Dong, Wang Yan, Li Xingjun, Ma Shuo, Zhang Xu, Zhang Zhengkui, Yu Rutong

A dual-responsive CO-releasing nanogel ameliorates retinal ischemia-reperfusion injury by restoring mitochondrial homeostasis and attenuating cGAS-STING pathway activation.

一种双重响应的 CO 释放纳米凝胶通过恢复线粒体稳态和减弱 cGAS-STING 通路激活来改善视网膜缺血再灌注损伤。

Xiao Duncheng, Qin Jiaqi, Zhang Fangpu, Tao Tianchang, Tang Weiwei, Cai Xiaojun, Tao Liming, Wang Xianwen, Jiang Zhengxuan

DHCR24 Deficiency Drives Age-Related Meibomian Gland Dysfunction by Regulating Lipid Metabolic Imbalance and Cytosolic mtDNA-Induced cGAS-STING Activation.

DHCR24 缺乏通过调节脂质代谢失衡和胞质 mtDNA 诱导的 cGAS-STING 激活驱动与年龄相关的睑板腺功能障碍。

Cai Yuchen, Zhou Tianyi, Sun Jiaming, Cai Xueyao, Shi Wenjun, Chen Junzhao, Zouboulis Christos C, Sun Hao, Fu Yao, Chen Liangbo

Neutrophil extracellular traps prime the ZBP1-cGAS sensor complex, triggering necroptosis and inflammatory injury in acute pancreatitis.

中性粒细胞胞外陷阱启动 ZBP1-cGAS 传感器复合物,引发急性胰腺炎中的坏死性凋亡和炎症损伤。

Zhang Haoyu, Wang Zheng, Lu Jiongdi, Li Jie, Jia Yuchen, Xie Xiaozhou, Ding Yixuan, Cao Feng, Li Fei

Zalcitabine induces ferroptosis in multiple myeloma through the TFAM-cGAS-STING-SLC7A11 axis.

扎西他滨通过 TFAM-cGAS-STING-SLC7A11 轴诱导多发性骨髓瘤细胞发生铁死亡。

Hui Juan, Jia Jiao, Feng Juan, Tang Hailong, Xu Li, Sun Wenrui, Dong Hongjuan, Gao Shan, Zhang Chunyan, Tian Biao, Gao Guangxun

18-β-glycyrrhetinic acid facilitates nuclear-mitochondrial communications to alleviate oxidative stress through HMGB1-cGAS-Mul1 axis in tendinopathy.

18-β-甘草次酸通过 HMGB1-cGAS-Mul1 轴促进核-线粒体通讯,从而减轻肌腱病中的氧化应激。

Gao Yuan-Yuan, Sun Wen-Shuang, Sun Zi-Ying, Wang Jun-Rui, Lv Zhong-Yang, Li Yu-Jia, Tian Hao-Yuan, Bao Zheng-Yang, Qiu Xin-Ran, Wang Zheng, Zheng Shi-Zhong, Shao Jiang-Juan, Zhang Zi-Li, Meng Jia