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

Overcoming T cell tolerance to tumor self-antigens through catch-bond engineering

通过捕获键工程克服T细胞对肿瘤自身抗原的耐受性

Chen, Xiaojing; Mao, Zhiyuan; Kolawole, E Motunrayo; Persechino, Margherita; Jude, Kevin M; Ogishi, Masato; Mo, Kelvin C; McLaughlin, Jami; Cheng, Donghui; Xiang, Xinyu; Yang, Xinbo; Gee, Caitlin; Liu, Shiqin; Yang, Aerin; Obenaus, Matthias; Wang, Nan; Noguchi, Miyako; Stoyanova, Tanya; Lee, John K; Good, Zinaida; Latorraca, Naomi R; Evavold, Brian D; Witte, Owen N; Garcia, K Christopher

Bispecific killer engager for targeted depletion of PD-1 positive lymphocytes: A new avenue for autoimmune disease treatment.

双特异性杀伤细胞衔接器靶向清除 PD-1 阳性淋巴细胞:自身免疫性疾病治疗的新途径

Naatz Lauren C, Dong Shuyun, Evavold Brian, Ye Xiangyang, Chen Mingnan

Shp-1 regulates the activity of low-affinity T cells specific to endogenous self-antigen during melanoma tumor growth and drives resistance to immune checkpoint inhibition

Shp-1在黑色素瘤肿瘤生长过程中调节针对内源性自身抗原的低亲和力T细胞的活性,并驱动对免疫检查点抑制剂的耐药性。

Matous, Joseph G; Snook, Jeremy P; Contreras, Nico A; Ramstead, Andrew G; Charley, Krystal R; Kolawole, Elizabeth M; Kisiolek, Jacob N; Flint, Kaitlyn A; Soedel, Ashleigh J; Robinson, Breyana; Mendoza, Anaiya B; Kumaki, Yohichi; Evavold, Brian D; Williams, Matthew A

PD-1 Bispecific Killer Engager (PD-1 BiKE) effectively depletes effector T lymphocytes in experimental autoimmune encephalomyelitis

PD-1双特异性杀伤细胞衔接器(PD-1 BiKE)可有效清除实验性自身免疫性脑脊髓炎中的效应T淋巴细胞

Lauren C Naatz ,Shuyun Dong ,Yujia Zhai ,Brian Evavold ,Mingnan Chen

3-in-one PD-1CAR Tregs: A bioengineered cellular therapy for target engagement, activation, and immunosuppression with reparative potential

三合一PD-1CAR调节性T细胞:一种具有修复潜能的生物工程细胞疗法,可用于靶向结合、激活和免疫抑制。

Shuyun Dong ,Tianxiao Zhang ,Yujia Zhai ,Lauren C Naatz ,Noel G Carlson ,John W Rose ,Brian Evavold ,Mingnan Chen

Systems analysis reveals alternate metabolic states adopted by Mycobacterium tuberculosis across species

系统分析揭示了结核分枝杆菌在不同物种中采取的替代代谢状态

Padilla-Gomez, Jonathan; McGinn, Rachel; Liang, Yisha; Libby, Kendra; Ringel, Alison E; Evavold, Charles; Bryson, Bryan D

Correction of age-associated defects in dendritic cells enables CD4+ T cells to eradicate tumors

纠正树突状细胞中与年龄相关的缺陷,可使CD4+ T细胞清除肿瘤。

Dania Zhivaki ,Stephanie N Kennedy ,Josh Park ,Francesco Boriello ,Pascal Devant ,Anh Cao ,Kristin M Bahleda ,Shane Murphy ,Cristin McCabe ,Charles L Evavold ,Kate L Chapman ,Ivan Zanoni ,Orr Ashenberg ,Ramnik J Xavier ,Jonathan C Kagan

Actin-bundling protein L-plastin promotes megakaryocyte rigidity and dampens proplatelet formation

肌动蛋白束蛋白L-plastin促进巨核细胞刚性并抑制前血小板形成

Guo, Li; Jacob, Shancy; Manne, Bhanu Kanth; Kolawole, E Motunrayo; Guo, Siqi; Wang, Xiang; Murray, Darian; Tugolukova, Emilia A; Portier, Irina; Kosaka, Yasuhiro; Barba, Cindy; Rondina, Matthew T; Evavold, Brian; Morley, Celeste; Bhatlekar, Seema; Bray, Paul F

B Cells Influence Encephalitogenic T Cell Frequency to Myelin Oligodendrocyte Glycoprotein (MOG)38-49 during Full-length MOG Protein-Induced Demyelinating Disease

在全长 MOG 蛋白诱导的脱髓鞘疾病期间,B 细胞影响脑炎 T 细胞频率对髓鞘少突胶质细胞糖蛋白 (MOG)38-49 的影响

Michael A Faust, Lisa Gibbs, Juan M Oviedo, Douglas H Cornwall, Keke C Fairfax, Zemin Zhou, Tracey J Lamb, Brian D Evavold

Cbl-b mitigates the responsiveness of naive CD8+ T cells that experience extensive tonic T cell receptor signaling

Cbl-b 可减轻经历大量强直性 T 细胞受体信号传导的幼稚 CD8+ T 细胞的反应性

Joel Eggert, Wendy M Zinzow-Kramer, Yuesong Hu, Elizabeth M Kolawole, Yuan-Li Tsai, Arthur Weiss, Brian D Evavold, Khalid Salaita, Christopher D Scharer, Byron B Au-Yeung