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

Microbiome mismatches from microbiota transplants lead to persistent off-target metabolic and immunomodulatory effects.

微生物群移植导致的微生物群不匹配会引起持续的非靶向代谢和免疫调节效应

DeLeon Orlando, Mocanu Mora, Tan Alan, Sidebottom Ashley M, Koval Jason, Ceccato Hugo D, Kralicek Sarah, Colgan John J, St George Marissa M, Lake Joash M, Cooper Michael, Xu Jingwen, Moore Julia, Su Qi, Xu Zhilu, Ng Siew C, Chan Francis K L, Tun Hein M, Cham Candace M, Liu Cambrian Y, Rubin David T, Martinez-Guryn Kristina, Chang Eugene B

Versatile wastewater monitoring of pathogens and antimicrobial resistance enabled by metatranscriptomics and long-read metagenomics

利用宏转录组学和长读长宏基因组学实现对废水中病原体和抗菌素耐药性的多功能监测

Knight, Rob; Din, M Omar; Salido, Rodolfo; Wright, Gillian; Brennan, Caitriona; Ambre, Madison; Hansen, Lauren; Boyer, Tara; Cao, Jennifer; Oles, Renee; Patel, Lucas; Weng, Yuhan; McDonald, Daniel; Bhute, Shrikant; Solini, Grace; Karthikeyan, Smruthi; Humphrey, Greg; DeHoff, Peter; Kralicek, Sarah; Levy, Joshua; Zeller, Mark; Hecht, Gail; Laurent, Louise; Yeo, Gene; Andersen, Kristian; Bartko, Andrew

Transmission of the Potential Pathogen Atypical Enteropathogenic Escherichia coli by Fecal Microbiota Transplant

粪便微生物移植传播潜在病原体非典型肠致病性大肠杆菌

Kralicek, Sarah E; Jenkins, Celeste; Allegretti, Jessica R; Lewis, James D; Osman, Majdi; Hecht, Gail A

EPEC NleH1 is significantly more effective in reversing colitis and reducing mortality than NleH2 via differential effects on host signaling pathways

EPEC NleH1 通过对宿主信号通路的不同影响,在逆转结肠炎和降低死亡率方面比 NleH2 更有效。

Kralicek, Sarah E; Nguyen, Mai; Rhee, Ki-Jong; Tapia, Rocio; Hecht, Gail

Modulation of epithelial cell polarity by bacterial pathogens

细菌病原体对上皮细胞极性的调节

Tapia, Rocio; Kralicek, Sarah E; Hecht, Gail A