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プロフィール詳細
プロジェクトを作成
★★★★★
☆☆☆☆☆
Rosalía F.に依頼
Spain

Scientific advisor and writer. Stem cell biology, organoids and cellular models.

プロフィール概要
専門分野
サービス
Writing Medical Writing, Non-Medical Regulatory Writing, Technical Writing, Copywriting, General Proofreading & Editing, Translation
Research Scientific and Technical Research
Consulting Scientific and Technical Consulting
職務経験

Investigador distinguido María Zambrano

Universidad de León

12月 2021 - 現在

Postdoctoral Scientist

Helmholtz Zentrum München

1月 2019 - 12月 2021

Postdotoral Research Assistant

University of Dundee

9月 2014 - 12月 2018

学歴

PhD (Cell Biology)

Universidad de León

2008 - 6月 2013

Master in Research Methodology in Biomedicine (Cell Biology)

Universidad de León

2006 - 2007

Licenciatura (Cell Biology)

Universidad de León

2001 - 2006

認定資格
  • PhD

    University of León (Spain)

    6月 2013 - 現在

出版物
JOURNAL ARTICLE
Brown, H.A., Williams, C.A.C., Zhou, H., Rios-Szwed, D., Fernandez-Alonso, R., Mansoor, S., McMulkin, L., Toth, R., Gourlay, R., Peltier, J., et al.(2021). An ERK5-KLF2 signalling module regulates early embryonic gene expression and telomere rejuvenation in stem cells . Biochemical Journal. 478. (23). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 4119-4136.
Fernandez-Alonso, R., Bustos, F., Budzyk, M., Kumar, P., Helbig, A.O., Hukelmann, J., Lamond, A.I., Lanner, F., Zhou, H., Petsalaki, E., et al.(2020). Phosphoproteomics identifies a bimodal EPHA2 receptor switch that promotes embryonic stem cell differentiation . Nature Communications. 11. (1).
Fernandez-Alonso, R., Davidson, L., Hukelmann, J., Zengerle, M., Prescott, A.R., Lamond, A., Ciulli, A., Sapkota, G.P., Findlay, G.M.(2017). Brd4-Brd2 isoform switching coordinates pluripotent exit and Smad2-dependent lineage specification . EMBO Reports. 18. (7). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 1108-1122.
Fernandez-Alonso, R., Bustos, F., Williams, C.A.C., Findlay, G.M.(2017). Protein Kinases in Pluripotency—Beyond the Usual Suspects . Journal of Molecular Biology. 429. (10). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 1504-1520.
Williams, C.A.C., Fernandez-Alonso, R., Wang, J., Toth, R., Gray, N.S., Findlay, G.M.(2016). Erk5 Is a Key Regulator of Naive-Primed Transition and Embryonic Stem Cell Identity . Cell Reports. 16. (7). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 1820-1828.
Fernandez-Alonso, R., Martin-Lopez, M., Gonzalez-Cano, L., Garcia, S., Castrillo, F., Diez-Prieto, I., Fernandez-Corona, A., Lorenzo-Marcos, M.E., Li, X., Claesson-Welsh, L., et al.(2015). P73 is required for endothelial cell differentiation, migration and the formation of vascular networks regulating VEGF and TGFβ signaling . Cell Death and Differentiation. 22. (8). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 1287-1299.
Gonzalez-Cano, L., Herreros-Villanueva, M., Fernandez-Alonso, R., Ayuso-Sacido, A., Meyer, G., Garcia-Verdugo, J.M., Silva, A., Marques, M.M., Marin, M.C.(2010). P73 deficiency results in impaired self renewal and premature neuronal differentiation of mouse neural progenitors independently of p53 . Cell Death and Disease. 1. (12).
Marqués-García, F., Ferrandiz, N., Fernández-Alonso, R., González-Cano, L., Herreros-Villanueva, M., Rosa-Garrido, M., Fernández-García, B., Vaque, J.P., Marqués, M.M., Alonso, M.E., et al.(2009). P73 plays a role in erythroid differentiaion through GATA1 induction . Journal of Biological Chemistry. 284. (32). Microsoft.AspNetCore.Mvc.Localization.LocalizedHtmlString 21139-21156.
OTHER
Brown, H.A., Williams, C.A.C., Zhou, H., Rios-Szwed, D., Fernandez-Alonso, R., Mansoor, S., McMulkin, L., Toth, R., Gourlay, R., Peltier, J., et al.(2021). An ERK5-KLF2 Signalling Module Regulates Early Embryonic Gene Expression Dynamics and Stem Cell Rejuvenation . SSRN.
Brown, H.A., Williams, C.A.C., Zhou, H., Rios-Szwed, D., Fernandez-Alonso, R., Mansoor, S., McMulkin, L., Toth, R., Gourlay, R., Peltier, J., et al.(2021). An ERK5-KLF2 signalling module regulates early embryonic gene expression dynamics and stem cell rejuvenation . bioRxiv.