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

Correction: Adenine base editing of CFTR using receptor targeted nanoparticles restores function to G542X cystic fibrosis airway epithelial cells

更正:利用靶向受体的纳米颗粒对CFTR进行腺嘌呤碱基编辑可恢复G542X囊性纤维化气道上皮细胞的功能。

Rose, Isabelle; Greenwood, Miriam; Biggart, Matthew; Baumlin, Natalie; Tarran, Robert; Hart, Stephen L; Baines, Deborah L

Correction: Adenine base editing of CFTR using receptor targeted nanoparticles restores function to G542X cystic fibrosis airway epithelial cells

更正:利用靶向受体的纳米颗粒对CFTR进行腺嘌呤碱基编辑可恢复G542X囊性纤维化气道上皮细胞的功能。

Rose, Isabelle; Greenwood, Miriam; Biggart, Matthew; Baumlin, Natalie; Tarran, Robert; Hart, Stephen L; Baines, Deborah L

Adenine base editing of CFTR using receptor targeted nanoparticles restores function to G542X cystic fibrosis airway epithelial cells

利用靶向受体的纳米颗粒对CFTR进行腺嘌呤碱基编辑,可恢复G542X囊性纤维化气道上皮细胞的功能。

Rose, Isabelle; Greenwood, Miriam; Biggart, Matthew; Baumlin, Natalie; Tarran, Robert; Hart, Stephen L; Baines, Deborah L

Characterisation of a primary ciliary dyskinesia model generated from BMI1-transduced basal epithelial cells.

对由 BMI1 转导的基底上皮细胞生成的原发性纤毛运动障碍模型进行表征。

Dalbay Melis T, Shahaj Eriomina, Guerrini Ileana, Lee Dani Do Hyang, Straatman-Iwanowska Anna, Mitchison Hannah M, Baines Deborah L, Hirst Robert A, Hogg Claire, O'Callaghan Christopher, Hart Stephen L

The presence of cystic fibrosis-related diabetes modifies the sputum microbiome in cystic fibrosis disease

囊性纤维化相关糖尿病的存在会改变囊性纤维化患者的痰液微生物群。

Vasiljevs, Stanislavs; Witney, Adam A; Baines, Deborah L

Passaging Primary Human Bronchial Epithelia Reduces CFTR-Mediated Fluid Transport and Alters mRNA Expression

原代人支气管上皮细胞传代培养会降低CFTR介导的液体转运并改变mRNA表达。

Wu, Tongde; Wrennall, Joe A; Dang, Hong; Baines, Deborah L; Tarran, Robert

Getting sweeter: new evidence for glucose transporters in specific cell types of the airway?

更甜蜜的发现:气道特定细胞类型中存在葡萄糖转运蛋白的新证据?

Baines, Deborah L; Vasiljevs, Stanislavs; Kalsi, Kameljit K

Culture with apically applied healthy or disease sputum alters the airway surface liquid proteome and ion transport across human bronchial epithelial cells

将健康或患病痰液从顶端施加到培养物中,会改变人支气管上皮细胞的气道表面液体蛋白质组和离子转运。

Woodall, Maximillian; Reidel, Boris; Kesimer, Mehmet; Tarran, Robert; Baines, Deborah L

Effective silencing of ENaC by siRNA delivered with epithelial-targeted nanocomplexes in human cystic fibrosis cells and in mouse lung

利用靶向上皮细胞的纳米复合物递送siRNA,可有效沉默人囊性纤维化细胞和鼠肺中的ENaC。

Tagalakis, Aristides D; Munye, Mustafa M; Ivanova, Rositsa; Chen, Hanpeng; Smith, Claire M; Aldossary, Ahmad M; Rosa, Luca Z; Moulding, Dale; Barnes, Josephine L; Kafetzis, Konstantinos N; Jones, Stuart A; Baines, Deborah L; Moss, Guy W J; O'Callaghan, Christopher; McAnulty, Robin J; Hart, Stephen L

BMI-1 extends proliferative potential of human bronchial epithelial cells while retaining their mucociliary differentiation capacity

BMI-1可延长人支气管上皮细胞的增殖潜能,同时保留其黏液纤毛分化能力。

Munye, Mustafa M; Shoemark, Amelia; Hirst, Robert A; Delhove, Juliette M; Sharp, Tyson V; McKay, Tristan R; O'Callaghan, Christopher; Baines, Deborah L; Howe, Steven J; Hart, Stephen L