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

A Versatile Human Intestinal Organoid-Derived Epithelial Monolayer Model for the Study of Enteric Pathogens

用于研究肠道病原体的多功能人类肠道类器官衍生上皮单层模型

Kourtney P Nickerson, Alejandro Llanos-Chea, Laura Ingano, Gloria Serena, Alba Miranda-Ribera, Meryl Perlman, Rosiane Lima, Marcelo B Sztein, Alessio Fasano, Stefania Senger #, Christina S Faherty #

The YrbE phospholipid transporter of Salmonella enterica serovar Typhi regulates the expression of flagellin and influences motility, adhesion and induction of epithelial inflammatory responses

伤寒沙门氏菌的YrbE磷脂转运蛋白调节鞭毛蛋白的表达,并影响细菌的运动性、黏附性和上皮炎症反应的诱导。

Verma, Smriti; Prescott, Rachel A; Ingano, Laura; Nickerson, Kourtney P; Hill, Emily; Faherty, Christina S; Fasano, Alessio; Senger, Stefania; Cherayil, Bobby J

Intestinal Epithelium Modulates Macrophage Response to Gliadin in Celiac Disease

肠上皮细胞调节乳糜泻中巨噬细胞对麦胶蛋白的反应

Serena, Gloria; Huynh, Daniel; Lima, Rosiane S; Vise, Luciana M; Freire, Rachel; Ingano, Laura; Leonard, Maureen M; Senger, Stefania; Fasano, Alessio

Human gut derived-organoids provide model to study gluten response and effects of microbiota-derived molecules in celiac disease

人类肠道来源的类器官为研究麸质反应和微生物衍生分子对乳糜泻的影响提供了模型

Rachel Freire, Laura Ingano, Gloria Serena, Murat Cetinbas, Anthony Anselmo, Anna Sapone, Ruslan I Sadreyev, Alessio Fasano, Stefania Senger

Bacteriophage Therapy Testing Against Shigella flexneri in a Novel Human Intestinal Organoid-Derived Infection Model.

在新型人类肠道类器官衍生感染模型中测试噬菌体疗法对福氏志贺氏菌的疗效

Llanos-Chea Alejandro, Citorik Robert J, Nickerson Kourtney P, Ingano Laura, Serena Gloria, Senger Stefania, Lu Timothy K, Fasano Alessio, Faherty Christina S

Salmonella Typhi Colonization Provokes Extensive Transcriptional Changes Aimed at Evading Host Mucosal Immune Defense During Early Infection of Human Intestinal Tissue

伤寒沙门氏菌定植引发广泛的转录变化,旨在在人体肠道组织感染早期逃避宿主粘膜免疫防御

K P Nickerson, S Senger, Y Zhang, R Lima, S Patel, L Ingano, W A Flavahan, D K V Kumar, C M Fraser, C S Faherty, M B Sztein, M Fiorentino, A Fasano

Human Fetal-Derived Enterospheres Provide Insights on Intestinal Development and a Novel Model to Study Necrotizing Enterocolitis (NEC)

人类胎儿来源的肠球为肠道发育提供了见解,并提供了一种研究坏死性小肠结肠炎 (NEC) 的新模型

Stefania Senger, Laura Ingano, Rachel Freire, Antony Anselmo, Weishu Zhu, Ruslan Sadreyev, William Allan Walker, Alessio Fasano

Novel N-terminal cleavage of APP precludes Abeta generation in ACAT-defective AC29 cells.

APP 的新型 N 端切割可阻止 ACAT 缺陷型 AC29 细胞中 Aβ 的生成

Huttunen Henri J, Puglielli Luigi, Ellis Blake C, MacKenzie Ingano Laura A, Kovacs Dora M