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

ISB 2001 trispecific T cell engager shows strong tumor cytotoxicity and overcomes immune escape mechanisms of multiple myeloma cells

ISB 2001 三特异性 T 细胞接合剂表现出强大的肿瘤细胞毒性并克服多发性骨髓瘤细胞的免疫逃逸机制

Laura Carretero-Iglesia, Olivia J Hall, Jérémy Berret, Daniela Pais, Carole Estoppey, Myriam Chimen, Thierry Monney, Jeremy Loyau, Cyrille Dreyfus, Julie Macoin, Cynthia Perez, Vinu Menon, Isabelle Gruber, Amélie Laurendon, Lydia N Caro, Girish S Gudi, Tomomi Matsuura, Piet H van der Graaf, Stanisla

Age-, sex-, and pathology-related variability in brain structure and cognition

大脑结构和认知能力的年龄、性别和病理相关变异

Bachmann, Dario; Buchmann, Andreas; Studer, Sandro; Saake, Antje; Rauen, Katrin; Zuber, Isabelle; Gruber, Esmeralda; Nitsch, Roger M; Hock, Christoph; Gietl, Anton; Treyer, Valerie

ACKR1 favors transcellular over paracellular T-cell diapedesis across the blood-brain barrier in neuroinflammation in vitro

体外神经炎症中,ACKR1 促进 T 细胞跨细胞途径而非旁细胞途径穿过血脑屏障。

Luca Marchetti ,David Francisco ,Sasha Soldati ,Neda Haghayegh Jahromi ,Sara Barcos ,Isabelle Gruber ,Javier R Pareja ,Aude Thiriot ,Ulrich von Andrian ,Urban Deutsch ,Ruth Lyck ,Rémy Bruggmann ,Britta Engelhardt

Single-cell transcriptomics identifies multiple pathways underlying antitumor function of TCR- and CD8αβ-engineered human CD4+ T cells

单细胞转录组学识别了 TCR 和 CD8αβ 工程化人类 CD4+ T 细胞抗肿瘤功能的多种途径

Jan A Rath, Gagan Bajwa, Benoit Carreres, Elisabeth Hoyer, Isabelle Gruber, Melisa A Martínez-Paniagua, Yi-Ru Yu, Nazila Nouraee, Fatemeh Sadeghi, Mengfen Wu, Tao Wang, Michael Hebeisen, Nathalie Rufer, Navin Varadarajan, Ping-Chih Ho, Malcolm K Brenner, David Gfeller, Caroline Arber

A silicon nanomembrane platform for the visualization of immune cell trafficking across the human blood-brain barrier under flow

用于可视化流动条件下免疫细胞跨人类血脑屏障运输的硅纳米膜平台

Adrien Mossu, Maria Rosito, Tejas Khire, Hung Li Chung, Hideaki Nishihara, Isabelle Gruber, Emma Luke, Lucie Dehouck, Federica Sallusto, Fabien Gosselet, James L McGrath, Britta Engelhardt

Postarrest stalling rather than crawling favors CD8(+) over CD4(+) T-cell migration across the blood-brain barrier under flow in vitro

在体外流动条件下,阻滞后缓慢而非缓慢移动更有利于CD8(+) T细胞跨越血脑屏障的迁移,而非CD4(+) T细胞的迁移。

Henriette Rudolph ,Armelle Klopstein ,Isabelle Gruber ,Claudia Blatti ,Ruth Lyck ,Britta Engelhardt