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

Base Editing of TIGIT Reprograms CD155 Signaling in Natural Killer Cells to Enhance Cancer Immunotherapy Efficacy

通过对TIGIT进行碱基编辑,重编程自然杀伤细胞中的CD155信号通路,从而增强癌症免疫疗法的疗效。

Fang, Cheng; Li, Guanglei; Han, Min; Wang, Yiming; Yu, Wenxia; Hu, Dan; Luo, Jiaojiao; Wang, Lixin; Fan, Wenwen; Wang, Liling; Xu, Tianhong; Huang, Xingxu; Yao, Chao; Zhu, Shiguo

Regulation of the immune CD155-CD226-TIGIT axis by cyclin D-CDK4/6

细胞周期蛋白D-CDK4/6对免疫CD155-CD226-TIGIT轴的调控

Fassl, Anne; Palacios Espinoza, Miriam; Butter, Deborah; Kolodziejczyk, Aleksandra; Seehawer, Marco; Hill, Charlotte; Ning, Xiaohan; Branigan, Timothy B; Peñailillo, Johany; Saengboonmee, Charupong; Jadhav, Heta; Charbonnier, Louis-Marie; Waks, Adrienne G; Strawser, Corinne; McDonnell, Donald P; Shapiro, Geoffrey I; Tolaney, Sara M; Polyak, Kornelia; Sammons, Sarah; Wucherpfennig, Kai W; Sicinski, Piotr

Inhibition of CD154:CD11b interactions using a novel nanotherapeutic improves allograft survival

利用新型纳米疗法抑制CD154:CD11b相互作用可提高同种异体移植存活率

Yao, Hongmin; Bahn-Humphrey, Alexandra; Liu, Danya; Zhu, Lei; Yang, Lily; Ford, Mandy L

Correction: Colonization by Porphyromonas gingivalis in cervical squamous cell carcinomas promotes metastasis through FimA/CD151/ITGB1 signaling

更正:牙龈卟啉单胞菌在宫颈鳞状细胞癌中的定植通过 FimA/CD151/ITGB1 信号通路促进转移

Huang, Xiuting; Zhuang, Yuan; Wang, Rui; Qu, Jing; Tan, Yuanyang; Li, Liang; Pan, Wenjun; Nie, Huilong; Li, Kefeng; Lin, Yujing; Yi, Liutong; Feng, Xiaoyu; Lan, Huimin; Wang, Guangxue; Zeng, Xiantao; Jiang, Zhenqi; Wang, De-Yun; Qiao, Yongkang; Yan, Yan

Dual targeting of CD155 augments the antitumor efficacy of ROR1-CAR-T cells in ovarian cancer.

双重靶向 CD155 可增强 ROR1-CAR-T 细胞在卵巢癌中的抗肿瘤疗效。

Ye Yingjun, Liu Tingwei, Cheng Chao, Wang Huajing, Shen Jiacheng, He Xiaowen, Xu Shaohua

Association of TIGIT and CD155 with KRAS, NRAS, BRAF, PIK3CA, and AKT Gene Mutations, MSI Status, and Cytokine Profiles in Colorectal Cancer

TIGIT 和 CD155 与 KRAS、NRAS、BRAF、PIK3CA 和 AKT 基因突变、MSI 状态以及细胞因子谱在结直肠癌中的关联

Ochman, Błażej; Limanówka, Piotr; Mielcarska, Sylwia; Kula, Agnieszka; Dawidowicz, Miriam; Hudy, Dorota; Szrot, Monika; Piecuch, Jerzy; Czuba, Zenon; Waniczek, Dariusz; Świętochowska, Elżbieta

CD155 density on target cells drives divergent natural killer cell responses owing to DNAM-1 loss

由于DNAM-1的丢失,靶细胞上CD155的密度驱动着不同的自然杀伤细胞反应。

Saunders, Philippa M; Oates, Clare V L; Hare, Roseanna; Burgess, Mark; Vargas Pavia, Tania Allin; Worboys, Jonathan D; Davis, Daniel M; Brooks, Andrew G

Helminth Antigens Modulate Virus-Induced Activation of CD154 (CD40L) Expression on T Cells in Onchocerca volvulus-Infected Individuals

蠕虫抗原调节盘尾丝虫感染者体内病毒诱导的T细胞上CD154(CD40L)表达的激活

Fogang, Brice Armel Nembot; Arndts, Kathrin; Adjobimey, Tomabu; Owusu, Michael; Opoku, Vera Serwaa; Adu Mensah, Derrick; Boateng, John; Osei-Mensah, Jubin; Meyer, Julia; Klarmann-Schulz, Ute; Horn, Sacha; Kroidl, Inge; Debrah, Alexander Y; Hoerauf, Achim; Ritter, Manuel; Debrah, Linda B

[Retracted] Activation of GPER by E2 promotes proliferation, invasion and migration of breast cancer cells by regulating the miR-124/CD151 pathway

【已撤稿】E2激活GPER通过调控miR-124/CD151通路促进乳腺癌细胞的增殖、侵袭和迁移

Yang, Huaicheng; Wang, Congyu; Liao, Heqiang; Wang, Qi

Cytomegalovirus-specific CD154-expressing T Cells are Present Before Transplantation in Cytomegalovirus-seronegative Recipients and Predict Early Cytomegalovirus DNAemia

在巨细胞病毒血清阴性受者移植前,巨细胞病毒特异性表达CD154的T细胞已存在,并可预测早期巨细胞病毒DNA血症。

Remaley, Lisa; Soltys, Kyle; Fazzolare, Tamara; Ningappa, Mylarappa; Green, Michael; Michaels, Marian; Paul, Morgan; Spishock, Brianna; Wilkerson, Dawn; Raghu, Vikram; Higgs, Brandon W; Mazariegos, George; Khanna, Ajay; Ganoza, Armando; Bond, Geoffrey; Ashokkumar, Chethan; Sindhi, Rakesh