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

CGM23 corresponds to a pan-coronavirus lipopeptide inhibitor potently inhibiting virion fusion

CGM23 是一种泛冠状病毒脂肽抑制剂,能有效抑制病毒颗粒融合。

Matsui, Yusuke; Schwarzer, Roland; Montano, Mauricio; Helmy, Ekram W; Suryawanshi, Rahul K; Taha, Taha Y; Wang, Yan; Angel, Yvonne; Adler, Marc; Sassano, M Flori; Jo, Hyunil; Tarran, Robert; Ott, Melanie; Greene, Warner C

Preclinical concept studies showing advantage of an inhaled anti-CTGF/CCN2 protein for pulmonary fibrosis treatment.

临床前概念研究表明吸入抗 CTGF/CCN2 蛋白在治疗肺纤维化方面具有优势

Neiens Vanessa, Hansbauer Eva-Maria, Jaquin Thomas J, Peper-Gabriel Janet K, Mahavadi Poornima, Snyder Mark E, Grill Maximilian J, Wurzenberger Cornelia, Konitsiotis Antonio, Estrada-Bernal Adriana, Heinig Kristina, Fysikopoulos Athanasios, Schwenck Nicolas, Grüner Stefan, Bartoschek Denis, Mosebach Theresia, Kerstan Sandra, Wrennall Joe, Richter Marleen, Noda Kentaro, Hoetzenecker Konrad, Burgess Janette K, Tarran Robert, Wurzenberger Claudia, Wichmann Karl-Robert, Biehler Jonas, Müller Kei W, Guenther Andreas, Eickelberg Oliver, Fitzgerald Mary F, Olwill Shane A, Matschiner Gabriele, Pavlidou Marina

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

Neutrophil store-operated Ca(2+) entry: A correctable biomarker of cystic fibrosis lung disease progression

中性粒细胞储存操纵性Ca(2+)内流:囊性纤维化肺病进展的可纠正生物标志物

Wrennall, Joe A; Biggart, Matthew Gs; Bengtson, Charles D; Sassano, M Flori; Tarran, Robert

Succinate Chemosensing Induces Cystic Fibrosis Transmembrane Conductance Regulator-dependent Airway Clearance that Is Impaired in Cystic Fibrosis

琥珀酸化学感受诱导囊性纤维化跨膜电导调节因子依赖性气道清除,而囊性纤维化患者的该功能受损

Apablaza, Tábata; Barros-Poblete, Marisol; Delpiano, Livia; Villanueva, Sandra; Guequen, Anita; Tapia-Balladares, Bárbara; Haq, Iram; Tribiños, Felipe; Hernández-Rivas, Sebastián; Verdon, Bernard; Biggart, Matthew G S; Sánchez, Yenniffer; Ward, Christopher; Baxter, B Dnate'; Restrepo, Diego; Cornejo, Isabel; Tarran, Robert; Catalán, Marcelo A; Gray, Michael A; Flores, Carlos A

Is the SPLUNC1-Orai1 axis a critical determinant of lung health?

SPLUNC1-Orai1轴是肺部健康的关键决定因素吗?

Tarran, Robert

The effect of nicotine delivery system on blood protease levels: a randomized crossover study

尼古丁输送系统对血液蛋白酶水平的影响:一项随机交叉研究

Wilson, Ava C; Leavens, Eleanor L S; Covarrubias-Zambrano, Obdulia; Lambart, Leah; Bossmann, Stefan H; Nollen, Nicole L; Tarran, Robert

Pulmonary-delivered Anticalin Jagged-1 antagonists reduce experimental airway mucus hyperproduction and obstruction.

肺部给药的 Anticalin Jagged-1 拮抗剂可减少实验性气道粘液过度产生和阻塞

Heinzelmann Katharina, Fysikopoulos Athanasios, Jaquin Thomas J, Peper-Gabriel Janet K, Hansbauer Eva-Maria, Grüner Stefan, Prassler Josef, Wurzenberger Claudia, Kennedy Joseph G C, Snead Jazmin Y, Wrennall Joe A, Heinig Kristina, Wurzenberger Cornelia, Bel Aiba Rachida-Siham, Tarran Robert, Livraghi-Butrico Alessandra, Fitzgerald Mary F, Anderson Gary P, Rothe Christine, Matschiner Gabriele, Olwill Shane A, Hagner Matthias