
相同信号、不同命运,CD28 CAR-T和4-1BB CAR-T的差异根源
cd28和4-1bb是现在car-t使用最多的两种共刺激因子。 越来越多的研究显示,二者产生的CAR-T细胞表型,效应水平及存留时间有明显差异。 全球众多顶级的细胞治疗研究中心,做了大量研 …
A comparison of chimeric antigen receptors containing CD28 ... - Nature
2021年7月6日 · Currently, the costimulatory receptors CD28 and 4-1BB are the only source of costimulatory domains used in commercial CAR T cell products. Herein, we provide an …
CD28 vs 4-1BB | 孰优孰劣? - 知乎专栏
CD28和4-1BB在T细胞活化中的扮演着重要作用,这些共刺激分子的信号结构域可以整合到CAR中,以增强CAR-T细胞的功能、增殖和治疗功效。 CARs上的共刺激结构域. CARs于1991年首 …
CD28 hinge used in chimeric antigen receptor (CAR) T-cells …
2024年8月31日 · CAR hinge and transmembrane regions link antigen recognition domains to intracellular signal transduction domains. Here, we apply biophysical methods to characterize …
Chimeric antigen receptor signaling: Functional ... - Science
2020年5月20日 · Most studies of CAR signaling show that CD28-containing CARs signal more rapidly and intensely than 4-1BB–containing CARs at early time points, using a variety of …
CD28 CAR T Cells for the Treatment of T Cell Malignancies
2023年11月2日 · We analyzed specific CAR activity against CD28 expressing T-ALL cell lines after retroviral transduction into primary human T cells. Additional CD28 knockout (KO) by …
CD28 is superior to 4-1BB costimulation in generating CAR-NK …
2025年3月3日 · This study compared two dominant CAR designs used in T cells—CD28-CD3ζ (28z) and 4-1BB-CD3ζ (BBz)—and found that CD28 costimulation offers superior functionality …
Synergistic T cell signaling by 41BB and CD28 is optimally …
Second generation (2G) chimeric antigen receptors (CARs) contain a CD28 or 41BB co-stimulatory endodomain and elicit remarkable efficacy in hematological malignancies. Third …
CD28-CAR-T cell activation through FYN kinase signaling ... - Cell …
2023年2月21日 · Wu et al. discover that LCK, an essential kinase for TCR signaling, is dispensable for CAR signaling. CD28 domain and the kinase FYN mediate this LCK …
施明、郑骏年团队在Frontiers in Immunology发表文章:系统论述基于CD28共刺激分子的CAR …
6 天之前 · 在cd28信号基序优化方面,突变ymnm、prrp和pyap基序可降低t细胞耗竭和功能障碍,增强car-t细胞的持久性和抗肿瘤功效;分离cd28与cd3ζ信号,设计双靶car-t,可增强对双 …