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

Acute Plasmodium yoelii 17XNL Infection During BCG Vaccination Limits T Cell Responses and Mycobacterial Growth Inhibition

卡介苗接种期间发生的急性约氏疟原虫17XNL感染会限制T细胞反应和分枝杆菌生长抑制

Tangie, Emily; Pinpathomrat, Nawamin; Tanner, Rachel; Hsu, Nai-Jen; Spencer, Alexandra J; Jacobs, Muazzam; Mcshane, Helen; Keeton, Roanne

Immunomodulatory Nanoparticles Induce Autophagy in Macrophages and Reduce Mycobacterium tuberculosis Burden in the Lungs of Mice.

免疫调节纳米颗粒诱导巨噬细胞自噬,降低小鼠肺部结核分枝杆菌负荷

Bekale Raymonde B, Maphasa Retsepile E, D'Souza Sarah, Hsu Nai Jen, Walters Avril, Okugbeni Naomi, Kinnear Craig, Jacobs Muazzam, Sampson Samantha L, Meyer Mervin, Morse Gene D, Dube Admire

A temporal cortex cell atlas highlights gene expression dynamics during human brain maturation.

颞叶皮层细胞图谱突显了人类大脑成熟过程中的基因表达动态

Steyn Christina, Mishi Ruvimbo, Fillmore Stephanie, Verhoog Matthijs B, More Jessica, Rohlwink Ursula K, Melvill Roger, Butler James, Enslin Johannes M N, Jacobs Muazzam, Sauka-Spengler Tatjana, Greco Maria, Quiñones Sadi, Dulla Chris G, Raimondo Joseph V, Figaji Anthony, Hockman Dorit

Machine Learning Demonstrates Dominance of Physical Characteristics over Particle Composition in Coal Dust Toxicity

机器学习表明,煤尘毒性中物理特性比颗粒成分更为重要

Kamanzi, Conchita; Becker, Megan; Von Holdt, Johanna; Hsu, Nai-Jen; Konečný, Petr; Broadhurst, Jennifer; Jacobs, Muazzam

The impact of coal mine dust characteristics on pathways to respiratory harm: investigating the pneumoconiotic potency of coals

煤矿粉尘特性对呼吸系统损害途径的影响:煤尘致尘肺能力的研究

Kamanzi, Conchita; Becker, Megan; Jacobs, Muazzam; Konečný, Petr; Von Holdt, Johanna; Broadhurst, Jennifer

TNFRp75-dependent immune regulation of alveolar macrophages and neutrophils during early Mycobacterium tuberculosis and Mycobacterium bovis BCG infection

结核分枝杆菌和牛分枝杆菌卡介苗感染早期阶段肺泡巨噬细胞和中性粒细胞的TNFRp75依赖性免疫调节

Walters, Avril; Keeton, Roanne; Labuschagné, Antoinette; Hsu, Nai-Jen; Jacobs, Muazzam

Innate type 1 immune response, but not IL-17 cells control tuberculosis infection

先天性1型免疫反应而非IL-17细胞控制结核病感染

Segueni, Noria; Jacobs, Muazzam; Ryffel, Bernhard

Complete ablation of tumor necrosis factor decreases the production of IgA, IgG, and IgM in experimental central nervous system tuberculosis

完全消除肿瘤坏死因子可降低实验性中枢神经系统结核病中 IgA、IgG 和 IgM 的产生

Francisco, Ngiambudulu M; Allie, Nasiema; Sebesho, Boipelo; Ryffel, Bernhard; Jacobs, Muazzam

Immunity Against Bacterial Infection of the Central Nervous System: An Astrocyte Perspective

中枢神经系统抗细菌感染的免疫机制:星形胶质细胞的视角

Geyer, Sohair; Jacobs, Muazzam; Hsu, Nai-Jen

Immunity to the Dual Threat of Silica Exposure and Mycobacterium tuberculosis

对二氧化硅暴露和结核分枝杆菌双重威胁的免疫力

Konečný, Petr; Ehrlich, Rodney; Gulumian, Mary; Jacobs, Muazzam