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

Gasdermin E-mediated lysosome-pore formation curbs pancreatic ductal adenocarcinoma via IFN-γ/IFN-β/TGF-β cocktail mRNA-LNP.

Gasdermin E 介导的溶酶体孔形成通过 IFN-γ/IFN-β/TGF-β 混合 mRNA-LNP 抑制胰腺导管腺癌。

Zhou Yabo, Wang Dianheng, Wang Shujing, Zhang Chaoying, He Lina, Kang Youli, Yuan Wu, Nguyen Andrew, Chen Jie, Zhou Nannan, Zhou Li, Wang Zhenfeng, Zhang Chaoqi, Yong Tuying, Tang Ke, Zhang Huafeng, Ma Jingwei, Lv Jiadi, Huang Bo

The TRIM3/TLR3 axis overrides IFN-β feedback inhibition to suppress NSCLC progression.

TRIM3/TLR3 轴可克服 IFN-β 反馈抑制,从而抑制 NSCLC 的进展。

Xu Jianyu, Hu Qianfang, Zhu Ying, Liu Qian, Wang Feng, Yu Yanxia, Wang Wenjuan, Ding Xinyuan

STING activation induces polarized cytokine secretion of IFN-β and IL-17A promoting photoreceptor death and choroidal disruption in age-related macular degeneration.

STING 激活诱导极化的细胞因子 IFN-β 和 IL-17A 分泌,促进与年龄相关的黄斑变性中的感光细胞死亡和脉络膜破坏。

Huang Chao, Babu Vishnu Suresh, Bammidi Sridhar, Arnold Jakob N, Ebeling Martin, Widmer Gabriella, Strassburger Pamela, Lazendic Mirjana, Grüner Sabine, Koester Janis, Dutta Puja, Hose Stacey, Singh Sonali, Gautam Pooja, Lad Eleonora M, Westenskow Peter D, Kutsyr Oksana, Csaky Karl G, Ghosh Sayan, Sripathi Srinivasa R, Proia Alan D, Flores-Bellver Miguel, Sinha Debasish, Feenstra Derrick

Desmin mutations in cardiomyocytes increase susceptibility to coxsackievirus B3 infection by impairing antiviral IFN-β response and upregulating viral receptors expression

心肌细胞中结蛋白的突变会损害抗病毒IFN-β反应并上调病毒受体表达,从而增加对柯萨奇病毒B3感染的易感性。

Callon, Domitille; Hovhannisyan, Yeranuhi; Friob, Gabriel; Vartanian-Grimaldi, Jean-Sébastien; Guennec, Brice-Emmanuel; Lebreil, Anne-Laure; Li, Zhenlin; Suspène, Rodolphe; Andreoletti, Laurent; Fornès, Paul; Berri, Fatma; Vartanian, Jean-Pierre; Joanne, Pierre; Agbulut, Onnik

HSV-2 genome recognition by nuclear cGAS instigates IFN-β production and influences inflammasome activation during de novo infection in HFF cells

核内 cGAS 对 HSV-2 基因组的识别可诱导 IFN-β 的产生,并在 HFF 细胞新感染过程中影响炎症小体的激活。

Goel, Aditya; Kaul, Vatsala; Ul Haq, Mir Faizan; Akram, Mohammad; Chaudhary, Nikita; Everly, David N; Ansari, Mairaj Ahmed

Annexin A2 negatively regulates IFN-β production through targeting the RLR signaling pathway

Annexin A2通过靶向RLR信号通路负调控IFN-β的产生

Hongyang Liu #,Mengdi Xue #,Chunying Feng,Jimin Yu,Guangqiang Ye,Kunli Zhang,Li Huang,Changjiang Weng

TGEV activates RIG-I/IFN-β/STAT1 axis to promote NLRC5-mediated SLA-I upregulation

TGEV激活RIG-I/IFN-β/STAT1轴,促进NLRC5介导的SLA-I上调

Wang, Wenqian; Ma, Mengyao; Bai, Haojie; Sun, Yinhe; Liu, Borui; Gao, Ao; Pan, Qihao; Zheng, Dongfang; Li, Muzi; Jiang, Weili; Ma, Shijie; Wei, Zhanyong; Zhang, Honglei; Zheng, Lanlan

NLRC5 Regulates Enterovirus 71 Infection Through an IFN-β-Dependent Pathway.

NLRC5 通过 IFN-β 依赖性途径调节肠道病毒 71 感染。

Examining the impact of the Chlamydia muridarum -induced synthesis of IFN-β during genital tract infection (1)

研究鼠衣原体诱导的 IFN-β 合成对生殖道感染的影响 (1)

Kumar, Ramesh; Cordova-Mendez, Iliana C; Litika, Fnu; Kara, Evan D; Moiz, Rayna; Burgess, Derrick; Banerjee, Arkaprabha; Derbigny, Wilbert A

Pericentromeric Transcription of Novel Pathogen-Related Human GPS Genes in Cancers is Regulated by C19MC miRNAs, CEBPB, IFN-γ, and IFN-β

癌症中新型病原体相关人类GPS基因的着丝粒周围转录受C19MC miRNA、CEBPB、IFN-γ和IFN-β调控

Jinesh, Goodwin; Godwin, Isha; Napoli, Marco; Flores, Elsa; Brohl, Andrew