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

E. coli genetically modified for purine nucleobase release promotes butyrate generation and colonic wound healing during DSS insult.

基因改造的大肠杆菌可释放嘌呤核碱基,促进丁酸盐生成,并在DSS损伤期间促进结肠伤口愈合

Lee J Scott, Kao Daniel J, Worledge Corey S, Villamaria Zachary F, Wang Ruth X, Welch Nichole M, Kostelecky Rachael E, Colgan Sean P

Regulation of Epithelial HIF by Probiotic Escherichia coli

益生菌大肠杆菌对上皮细胞 HIF 的调控

Dowdell, Alexander S; Roer, Rebecca; Bhagavatula, Geetha; Cartwright, Ian M; Cohen, Rachel H; Countess, Jacob A; Koch, Samuel D; Lee, J Scott; Steiner, Calen A; Thompson, Noah T; Villamaria, Zachary F; Welch, Nichole M; Worledge, Corey S; Zhou, Liheng; Colgan, Sean P

Revisiting the "starved gut" hypothesis in inflammatory bowel disease

重新审视炎症性肠病中的“肠道饥饿”假说

Colgan, Sean P; Wang, Ruth X; Hall, Caroline H T; Bhagavatula, Geetha; Lee, J Scott

IL-38 Gene Deletion Worsens Murine Colitis

IL-38基因缺失加重小鼠结肠炎

de Graaf, Dennis M; Wang, Ruth X; Amo-Aparicio, Jesús; Lee, J Scott; Dowdell, Alexander S; Tengesdal, Isak W; Marchetti, Carlo; Colgan, Sean P; Joosten, Leo A B; Dinarello, Charles A

Microbial Metabolite Regulation of Epithelial Cell-Cell Interactions and Barrier Function

微生物代谢产物对上皮细胞间相互作用和屏障功能的调控

Ornelas, Alfredo; Dowdell, Alexander S; Lee, J Scott; Colgan, Sean P

Adenosine Awakens Metabolism to Enhance Growth-Independent Killing of Tolerant and Persister Bacteria across Multiple Classes of Antibiotics.

腺苷唤醒新陈代谢,增强对多种抗生素耐受性和持久性细菌的非生长依赖性杀灭作用

Kitzenberg David A, Lee J Scott, Mills Krista B, Kim Ju-Sim, Liu Lin, Vázquez-Torres Andrés, Colgan Sean P, Kao Daniel J

Intestinal Inflammation as a Dysbiosis of Energy Procurement: New Insights into an Old Topic

肠道炎症作为能量获取失调的一种表现:对一个古老话题的新见解

Lee, J Scott; Wang, Ruth X; Alexeev, Erica E; Colgan, Sean P

Microbiota-Sourced Purines Support Wound Healing and Mucous Barrier Function

微生物群来源的嘌呤支持伤口愈合和黏膜屏障功能

Lee, J Scott; Wang, Ruth X; Goldberg, Matthew S; Clifford, Garrett P; Kao, Daniel J; Colgan, Sean P

Neutrophils as sources of dinucleotide polyphosphates and metabolism by epithelial ENPP1 to influence barrier function via adenosine signaling

中性粒细胞作为二核苷酸多磷酸的来源,通过上皮细胞ENPP1的代谢,经由腺苷信号传导影响屏障功能。

Curtis, Valerie F; Cartwright, Ian M; Lee, J Scott; Wang, Ruth X; Kao, Daniel J; Lanis, Jordi M; Burney, Krista M; Welch, Nichole; Hall, Caroline H T; Goldberg, Matthew S; Campbell, Eric L; Colgan, Sean P