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

Correction: Neonatal microbiota colonization primes maturation of goblet cell-mediated protection in the pre-weaning colon

更正:新生儿肠道菌群定植促进断奶前结肠中杯状细胞介导的保护机制成熟

Johansson, Åsa; Subramani, Mahadevan Venkita; Yilmaz, Bahtiyar; Nyström, Elisabeth E L; Layunta, Elena; Arike, Liisa; Sommer, Felix; Rosenstiel, Philip; Vereecke, Lars; Mannerås-Holm, Louise; Wullaert, Andy; Pelaseyed, Thaher; Johansson, Malin E V; Birchenough, George M H

Neonatal microbiota colonization primes maturation of goblet cell-mediated protection in the pre-weaning colon.

新生儿微生物群定植促进断奶前结肠中杯状细胞介导的保护机制的成熟

Johansson à sa, Venkita Subramani Mahadevan, Yilmaz Bahtiyar, Nyström Elisabeth E L, Layunta Elena, Arike Liisa, Sommer Felix, Rosenstiel Philip, Vereecke Lars, Mannerås-Holm Louise, Wullaert Andy, Pelaseyed Thaher, Johansson Malin E V, Birchenough George M H

Guardians at the Gate: Immune System in Gastrointestinal Diseases

守门人:胃肠道疾病中的免疫系统

Layunta, Elena; Mesonero, Jose Emilio; Latorre, Eva

MUC17 is an essential small intestinal glycocalyx component that is disrupted in Crohn's disease

MUC17是小肠糖萼的重要组成部分,在克罗恩病中会发生功能紊乱。

Layunta, Elena; Jäverfelt, Sofia; van de Koolwijk, Fleur C; Sivertsson, Molly; Dolan, Brendan; Arike, Liisa; Thulin, Sara; Vallance, Bruce A; Pelaseyed, Thaher

Gut Microbiota-Derived Short-Chain Fatty Acids: Novel Regulators of Intestinal Serotonin Transporter

肠道菌群来源的短链脂肪酸:肠道血清素转运蛋白的新型调节因子

Buey, Berta; Forcén, Ana; Grasa, Laura; Layunta, Elena; Mesonero, Jose Emilio; Latorre, Eva

The Underrated Gut Microbiota Helminths, Bacteriophages, Fungi, and Archaea

被低估的肠道微生物群:蠕虫、噬菌体、真菌和古菌

Garcia-Bonete, Maria Jose; Rajan, Anandi; Suriano, Francesco; Layunta, Elena

Crosstalk Between Intestinal Serotonergic System and Pattern Recognition Receptors on the Microbiota-Gut-Brain Axis

肠道血清素系统与肠道菌群-肠-脑轴上的模式识别受体之间的相互作用

Layunta, Elena; Buey, Berta; Mesonero, Jose Emilio; Latorre, Eva

TLR2, TLR3, and TLR4 activation specifically alters the oxidative status of intestinal epithelial cells

TLR2、TLR3 和 TLR4 的激活特异性地改变肠上皮细胞的氧化状态。

Latorre, Eva; Mendoza, Carmen; Layunta, Elena; Alcalde, Ana I; Mesonero, José E