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

Jurkat T-cell lines exhibit marked genomic instability affecting karyotype, mutational profile, gene expression, immunophenotype and function

Jurkat T细胞系表现出显著的基因组不稳定性,影响核型、突变谱、基因表达、免疫表型和功能。

Wilson, Andrew; Dasyam, Nathaniel; O'Hagan, Felix; Farrell, Dianna; Turner, Claire; Jay, Anne; Schmidt, Alfonso; Beddow, Rachel; Lillis, Tina; Chin, Tom; Perret, Rachel; McCulley, Michelle; Weinkove, Robert

A Small Intestinal Helminth Infection Alters Colonic Mucus and Shapes the Colonic Mucus Microbiome

小肠蠕虫感染会改变结肠黏液并影响结肠黏液微生物群。

Mules, Thomas C; Vacca, Francesco; Cait, Alissa; Yumnam, Bibek; Schmidt, Alfonso; Lavender, Brittany; Maclean, Kate; Noble, Sophia-Louise; Gasser, Olivier; Camberis, Mali; Le Gros, Graham; Inns, Stephen

Residual OXPHOS is required to drive primary and metastatic lung tumours in an orthotopic breast cancer model

在原位乳腺癌模型中,残余氧化磷酸化是驱动原发性和转移性肺肿瘤生长所必需的。

Herst, Patries; Carson, Georgia; Lewthwaite, Danielle; Eccles, David; Schmidt, Alfonso; Wilson, Andrew; Grasso, Carole; O'Sullivan, David; Neuzil, Jiri; McConnell, Melanie; Berridge, Michael

Inhibition of HIF-prolyl hydroxylases improves healing of intestinal anastomoses

抑制 HIF-脯氨酰羟化酶可改善肠吻合口愈合

Moritz J Strowitzki, Gwendolyn Kimmer, Julian Wehrmann, Alina S Ritter, Praveen Radhakrishnan, Vanessa M Opitz, Christopher Tuffs, Marvin Biller, Julia Kugler, Ulrich Keppler, Jonathan M Harnoss, Johannes Klose, Thomas Schmidt, Alfonso Blanco, Cormac T Taylor, Martin Schneider

A new method to localise and quantify oxidative stress in live juvenile mussels

一种定位和量化活体幼贻贝氧化应激的新方法

Delorme, Natalí J; Schmidt, Alfonso J; Zamora, Leonardo N; Burritt, David J; Ragg, Norman L C

The Gastrointestinal Helminth Heligmosomoides bakeri Suppresses Inflammation in a Model of Contact Hypersensitivity

胃肠道蠕虫贝克氏螺旋线虫在接触性超敏反应模型中抑制炎症

Filbey, Kara J; Mehta, Palak H; Meijlink, Kimberley J; Pellefigues, Christophe; Schmidt, Alfonso J; Le Gros, Graham

A novel blood-feeding detoxification pathway in Nippostrongylus brasiliensis L3 reveals a potential checkpoint for arresting hookworm development.

巴西尼氏线虫 L3 中一种新的吸血解毒途径揭示了阻止钩虫发育的潜在检查点

Bouchery Tiffany, Filbey Kara, Shepherd Amy, Chandler Jodie, Patel Deepa, Schmidt Alfonso, Camberis Mali, Peignier Adeline, Smith Adam A T, Johnston Karen, Painter Gavin, Pearson Mark, Giacomin Paul, Loukas Alex, Bottazzi Maria-Elena, Hotez Peter, LeGros Graham