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

Single-cell profiling demonstrates the combined effect of wheeze phenotype and infant viral infection on airway epithelial development.

单细胞分析表明喘息表型和婴儿病毒感染对气道上皮发育的综合影响

Berdnikovs Sergejs, Newcomb Dawn C, Haruna Nana-Fatima, McKernan Kaitlin E, Kuehnle Shelby N, Gebretsadik Tebeb, McKennan Christopher, Ma Siyuan, Cephus Jacqueline-Yvonne, Rosas-Salazar Christian, Anderson Larry J, Gern James E, Hartert Tina

Whole Blood Transcriptomics Identifies Differences in Innate Immune Pathway Expression in Infants at Risk for Peanut Allergy

全血转录组学揭示花生过敏高危婴儿先天免疫通路表达的差异

Lang, Abigail; Gadd, Samantha; Gunderman, Lauren; Lippner, Elizabeth; Devonshire, Ashley; Schipma, Matthew J; Berdnikovs, Sergejs; Kumar, Rajesh

Sex Differences in Lung B Cell Responses in a Murine Model of Asthma.

哮喘小鼠模型中肺B细胞反应的性别差异

Drake Li Y, Stelzig Kimberly E, Hernandez-Botero Ana M, Berdnikovs Sergejs, Chiarella Sergio E

Little to no mRNA for the α- or β-chains of FcεRI in human eosinophils

人类嗜酸性粒细胞中FcεRI的α链或β链的mRNA含量极低或几乎没有

Chhiba, Krishan D; Kuang, Fei Li; Berdnikovs, Sergejs; Kato, Atsushi; Bochner, Bruce S

Eosinophil biology from the standpoint of metabolism: implications for metabolic disorders and asthma

从代谢角度探讨嗜酸性粒细胞生物学:对代谢紊乱和哮喘的启示

Haruna, Nana-Fatima; Berdnikovs, Sergejs; Nie, Zhenying

How early life respiratory viral infections impact airway epithelial development and may lead to asthma

早期呼吸道病毒感染如何影响气道上皮发育并可能导致哮喘

Berdnikovs, Sergejs; Newcomb, Dawn C; Hartert, Tina V

Single cell profiling to determine influence of wheeze and early-life viral infection on developmental programming of airway epithelium

利用单细胞分析确定喘息和早期病毒感染对气道上皮发育编程的影响

Berdnikovs, Sergejs; Newcomb, Dawn C; McKernan, Kaitlin E; Kuehnle, Shelby N; Haruna, Nana-Fatima; Gebretsadik, Tebeb; McKennan, Christopher; Ma, Siyuan; Cephus, Jacqueline-Yvonne; Rosas-Salazar, Christian; Anderson, Larry J; Gern, James E; Hartert, Tina

Author Correction: Fibroblast A20 governs fibrosis susceptibility and its repression by DREAM promotes fibrosis in multiple organs

作者更正:成纤维细胞A20控制纤维化易感性,而DREAM对其的抑制会促进多个器官的纤维化。

Wang, Wenxia; Bale, Swarna; Wei, Jun; Yalavarthi, Bharath; Bhattacharyya, Dibyendu; Yan, Jing Jing; Abdala-Valencia, Hiam; Xu, Dan; Sun, Hanshi; Marangoni, Roberta G; Herzog, Erica; Berdnikovs, Sergejs; Miller, Stephen D; Sawalha, Amr H; Tsou, Pei-Suen; Awaji, Kentaro; Yamashita, Takashi; Sato, Shinichi; Asano, Yoshihide; Tiruppathi, Chinnaswamy; Yeldandi, Anjana; Schock, Bettina C; Bhattacharyya, Swati; Varga, John

Sex differences in a murine model of asthma are time and tissue compartment dependent

在小鼠哮喘模型中,性别差异与时间和组织区室相关。

Chiarella, Sergio E; Cuervo-Pardo, Lyda; Coden, Mackenzie E; Jeong, Brian M; Doan, Ton C; Connelly, Andrew R; Rodriguez, Raul I; Queener, Ashley M; Berdnikovs, Sergejs

Cellular and systemic energy metabolic dysregulation in asthma development-a hypothesis-generating approach

哮喘发展过程中细胞和系统能量代谢紊乱——一种假设生成方法

Berdnikovs, Sergejs; Newcomb, Dawn C; Gebretsadik, Tebeb; Snyder, Brittney M; Wiggins, Derek A; Poleon, Kadijah S; Hartert, Tina V