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

Acute Exposure to Aerosolized Nanoplastics Modulates Redox-Linked Immune Responses in Human Airway Epithelium.

急性暴露于气溶胶纳米塑料会调节人类呼吸道上皮细胞中氧化还原相关的免疫反应

Breidenbach Joshua D, French Benjamin W, Shrestha Upasana, Adya Zaneh K, Wooten R Mark, Fribley Andrew M, Malhotra Deepak, Haller Steven T, Kennedy David J

Microcystin-LR aerosol exposure increases inflammatory drivers of asthma, Evidence of an NF-κB amplification mechanism

微囊藻毒素-LR气溶胶暴露会增加哮喘的炎症驱动因素,NF-κB放大机制的证据

Breidenbach, Joshua D; Timalsina, Bivek; French, Benjamin W; Stanoszek, Lauren; Lavik, John-Paul; Breidenbach, Irum S; Shrestha, Upasana; Kleinhenz, Andrew; Lad, Apurva; Dube, Prabhatchandra; Zhang, Shungang; Faleel, Dhilhani; Wooten, R Mark; Willey, James C; Hammersley, Jeffrey R; Modyanov, Nikolai N; Malhotra, Deepak; Dworkin, Lance D; Haller, Steven T; Kennedy, David J

Aerosolized Harmful Algal Bloom Toxin Microcystin-LR Induces Type 1/Type 17 Inflammation of Murine Airways.

气溶胶化的有害藻华毒素微囊藻毒素-LR可诱发小鼠气道1型/17型炎症

Breidenbach Joshua D, French Benjamin W, Stanoszek Lauren M, Lavik John-Paul, Maddipati Krishna Rao, Premathilaka Sanduni H, Baliu-Rodriguez David, Timalsina Bivek, Aradhyula Vaishnavi, Patel Shivani C, Lad Apurva, Syed Irum, Kleinhenz Andrew L, Blomquist Thomas M, Gohara Amira, Dube Prabhatchandra, Zhang Shungang, Faleel Dhilhani, Khalaf Fatimah K, Isailovic Dragan, Wooten R Mark, Willey James C, Hammersley Jeffrey R, Modyanov Nikolai N, Malhotra Deepak, Dworkin Lance D, Kennedy David J, Haller Steven T

Interactions Between Pathogenic Burkholderia and the Complement System: A Review of Potential Immune Evasion Mechanisms

致病性伯克霍尔德菌与补体系统的相互作用:潜在免疫逃逸机制综述

Syed, Irum; Wooten, R Mark

Immune Response to Borrelia: Lessons from Lyme Disease Spirochetes

对伯氏疏螺旋体的免疫反应:来自莱姆病螺旋体的启示

Bockenstedt, Linda K; Wooten, R Mark; Baumgarth, Nicole

Borrelia burgdorferi CheY2 Is Dispensable for Chemotaxis or Motility but Crucial for the Infectious Life Cycle of the Spirochete

伯氏疏螺旋体 CheY2 对趋化性或运动性并非必需,但对螺旋体的感染性生命周期至关重要。

Xu, Hui; Sultan, Syed; Yerke, Aaron; Moon, Ki Hwan; Wooten, R Mark; Motaleb, M A

Spirochetal motility and chemotaxis in the natural enzootic cycle and development of Lyme disease

螺旋体在自然地方性流行周期中的运动性和趋化性以及莱姆病的发展

Motaleb, Md A; Liu, Jun; Wooten, R Mark

ELISA-based measurement of antibody responses and PCR-based detection profiles can distinguish between active infection and early clearance of Borrelia burgdorferi

基于ELISA的抗体反应测量和基于PCR的检测谱可以区分伯氏疏螺旋体的活动性感染和早期清除。

Lazarus, John J; McCarter, Akisha L; Neifer-Sadhwani, Kari; Wooten, R Mark

Viable Borrelia burgdorferi enhances interleukin-10 production and suppresses activation of murine macrophages

活的伯氏疏螺旋体可增强白细胞介素-10的产生并抑制小鼠巨噬细胞的活化。

Lazarus, John J; Kay, Maria A; McCarter, Akisha L; Wooten, R Mark

The Moraxella catarrhalis autotransporter McaP is a conserved surface protein that mediates adherence to human epithelial cells through its N-terminal passenger domain

卡他莫拉菌自转运蛋白McaP是一种保守的表面蛋白,它通过其N端乘客结构域介导细菌与人上皮细胞的黏附。

Lipski, Serena L; Akimana, Christine; Timpe, Jennifer M; Wooten, R Mark; Lafontaine, Eric R