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

Butyrophilin 2A2 promotes T cell immunoregulation via CD45 phosphatase activation and protects against murine autoimmune glomerulonephritis and pregnancy loss.

Butyrophilin 2A2 通过 CD45 磷酸酶激活促进 T 细胞免疫调节,并能预防小鼠自身免疫性肾小球肾炎和妊娠丢失。

CD45⁺ hybrid circulating cells may reflect tumor-immune interactions and serve as transcriptomic indicators of metastatic potential in prostate cancer

CD45⁺ 杂合循环细胞可能反映肿瘤-免疫相互作用,并可作为前列腺癌转移潜能的转录组学指标。

Kim, Baek Gil; Jang, Yeonsue; Kim, Min Gyu; Song, Dongwook; Jung, Jungchan; Jung, Jihee; Yoo, Ayoung; Lee, Jongsoo; Cho, Nam Hoon; Woo, Hyeong Jung; Kim, Woon-Hae; Shin, Hyun Young; Kim, Minseok S; Han, Hyun Ho; Joung, Jae Young

First-in-class anti-human CD45RC antibody targets CD45RC(high) T and B cells to mitigate pathogenic immune responses

首创的抗人CD45RC抗体靶向CD45RC(high) T细胞和B细胞,以减轻致病性免疫反应。

Bergua, Cécile; Ahmil-Boiteau, Ghenima; Ouisse, Laure-Hélène; Vimond, Nadège; Sérazin, Céline; Dugast, Lisa; Humeau, Romain; Salama, Apolline; Tesson, Laurent; Swinnen, Katleen; Van Brempt, Ronald; Collette, Alexis; Anegon, Ignacio; Guillonneau, Carole

Clonal dynamics, tolerance, and adverse events after CD45-ADC-conditioned autologous HSPC transplantation in macaques

猕猴CD45-ADC预处理的自体造血干细胞移植后的克隆动力学、耐受性和不良事件

Hayal, Taha Bartu; Abraham, Diana M; Demirci, Selami; Fan, Xing; Zhou, Yifan; Hyzy, Sharon L; Lin, Michelle I; Linde, Nathaniel; Engels, Theresa; Golomb, Justin; Bonifacino, Aylin; Schifanella, Luca; Hoffmann, Victoria; Brinster, Lauren R; Blair, Robert V; Midkiff, Cecily C; Franchini, Genoveffa; Kaur, Amitinder; Tisdale, John F; Donahue, Robert E; Hong, So Gun; Wu, Chuanfeng; Dunbar, Cynthia E

The bone marrow niche and hematopoietic system are distinctly remodeled by CD45-targeted astatine-211 radioimmunotherapy

CD45靶向砹-211放射免疫疗法可显著重塑骨髓微环境和造血系统。

Hagen, Matthew W; Setiawan, Nicollette J; Dexter, Shannon; Woodruff, Kelsey A; Gaerlan, Francesca K; Billings, Taylor M; Orozco, Johnnie J; Termini, Christina M

Divergent CD45(+) immune landscapes shape the lung tumor microenvironment

不同的CD45(+)免疫微环境塑造了肺肿瘤微环境

Dizdarević, Selma; Wiegandt, René; Weigert, Andreas; Stiewe, Thorsten; Eul, Bastian; Guenther, Stefan; Grimminger, Friedrich; Seeger, Werner; Pullamsetti, Soni Savai; Looso, Mario; Turkowski, Kati; Savai, Rajkumar

Transcription factor SPI1 drives immunosuppressive CD45+ erythroid progenitor cells to ameliorate rheumatoid arthritis

转录因子SPI1驱动免疫抑制性CD45+红系祖细胞,从而改善类风湿性关节炎

Wei-Hang Zhu #,Man-Li Wang #,Xia Meng,Shu-Yuan Zhong,Yan Liu,Yun-Feng Pan

Apheresis CD8(+)CCR7(+)CD45RA(-) T-Cells as a Novel Biomarker Associated with CAR T-Cell Kinetics and Clinical Outcome

单采CD8(+)CCR7(+)CD45RA(-) T细胞作为与CAR T细胞动力学和临床结果相关的新型生物标志物

García de la Torre, Iván; García-Hoz, Carlota; Martin-Moro, Fernando; Fernández-Velasco, José Ignacio; Velázquez-Kennedy, Kyra; Rodríguez-Martín, Eulalia; Luna De Abia, Alejandro; Roldán, Ernesto; Moreno Jiménez, Gemma; López-Jiménez, Javier; Villar, Luisa María; Pariente-Rodríguez, Roberto

Integrated analysis identifies a CXCR6/CD45/PD-1-based risk model for melanoma prognosis and intratumoral CD8+/CD69 + T-cell infiltration correlation

综合分析确定了基于CXCR6/CD45/PD-1的黑色素瘤预后风险模型以及肿瘤内CD8+/CD69+T细胞浸润相关性。

Wang, Hai-Yun; Cai, Hao-Yang; Deng, Ling; Lu, Yi; Huang, Jiali; Hou, Ting; Liu, Ye; Huang, Xin-Yang; Wang, Ze-Meng; Li, Yue; Wang, Fang

Differentiation of mesenchymal stem/stromal cells into CD45(+) macrophage-like cells: expanding insights into MSC plasticity.

间充质干细胞/基质细胞分化为 CD45(+) 巨噬细胞样细胞:加深对 MSC 可塑性的认识。

Rusch Robert M, Mabuchi Yo, Morikawa Satoru, Ogawa Yoko, Shimmura Shigeto