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

OCA-B promotes pathogenic maturation of stem-like CD4 (+) T cells and autoimmune demyelination

OCA-B促进干细胞样CD4(+)T细胞的致病性成熟和自身免疫性脱髓鞘。

Hughes, Erik P; Syage, Amber R; Mehrabad, Elnaz Mirzaei; Lane, Thomas E; Spike, Benjamin T; Tantin, Dean

Durable CD4(+) T cell immunity: cherchez la stem

持久的 CD4(+) T 细胞免疫:cherchez la tent

Hughes, Erik P; Syage, Amber R; Tantin, Dean

OCA-B/Pou2af1 is sufficient to promote CD4(+) T cell memory and prospectively identifies memory precursors.

OCA-B/Pou2af1 足以促进 CD4(+) T 细胞记忆,并能前瞻性地识别记忆前体

Sun Wenxiang, Hughes Erik P, Kim Heejoo, Perovanovic Jelena, Charley Krystal R, Perkins Bryant, Du Junhong, Ibarra Andrea, Syage Amber R, Hale J Scott, Williams Matthew A, Tantin Dean

Mitigation of helium irradiation-induced brain injury by microglia depletion

通过清除小胶质细胞减轻氦辐射引起的脑损伤

Allen, Barrett D; Syage, Amber R; Maroso, Mattia; Baddour, Al Anoud D; Luong, Valerie; Minasyan, Harutyun; Giedzinski, Erich; West, Brian L; Soltesz, Ivan; Limoli, Charles L; Baulch, Janet E; Acharya, Munjal M

Microglia influence host defense, disease, and repair following murine coronavirus infection of the central nervous system

小胶质细胞影响宿主防御、疾病和中枢神经系统感染后修复,尤其是在小鼠冠状病毒感染之后。

Mangale, Vrushali; Syage, Amber R; Ekiz, H Atakan; Skinner, Dominic D; Cheng, Yuting; Stone, Colleen L; Brown, R Marshall; O'Connell, Ryan M; Green, Kim N; Lane, Thomas E

Single-Cell RNA Sequencing Reveals the Diversity of the Immunological Landscape following Central Nervous System Infection by a Murine Coronavirus

单细胞RNA测序揭示鼠冠状病毒感染中枢神经系统后免疫图谱的多样性

Syage, Amber R; Ekiz, H Atakan; Skinner, Dominic D; Stone, Colleen; O'Connell, Ryan M; Lane, Thomas E

Attenuation of neuroinflammation reverses Adriamycin-induced cognitive impairments

减轻神经炎症可逆转阿霉素引起的认知障碍

Allen, Barrett D; Apodaca, Lauren A; Syage, Amber R; Markarian, Mineh; Baddour, Al Anoud D; Minasyan, Harutyun; Alikhani, Leila; Lu, Celine; West, Brian L; Giedzinski, Erich; Baulch, Janet E; Acharya, Munjal M

Induced CNS expression of CXCL1 augments neurologic disease in a murine model of multiple sclerosis via enhanced neutrophil recruitment

在多发性硬化症小鼠模型中,CXCL1在中枢神经系统中的诱导表达可通过增强中性粒细胞募集加重神经系统疾病。

Grist, Jonathan J; Marro, Brett S; Skinner, Dominic D; Syage, Amber R; Worne, Colleen; Doty, Daniel J; Fujinami, Robert S; Lane, Thomas E

Epigenetic determinants of space radiation-induced cognitive dysfunction.

太空辐射诱发认知功能障碍的表观遗传决定因素

Acharya Munjal M, Baddour Al Anoud D, Kawashita Takumi, Allen Barrett D, Syage Amber R, Nguyen Thuan H, Yoon Nicole, Giedzinski Erich, Yu Liping, Parihar Vipan K, Baulch Janet E