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Iratxe Zuazo Gaztelu
Iratxe Zuazo Gaztelu
Postdoctoral Research Fellow, Genentech Inc.
Verified email at gene.com
Title
Cited by
Cited by
Year
Unraveling the role of angiogenesis in cancer ecosystems
I Zuazo-Gaztelu, O Casanovas
Frontiers in Oncology 8, 248, 2018
2772018
Endoplasmic reticulum stress activates human IRE1α through reversible assembly of inactive dimers into small oligomers
V Belyy, I Zuazo-Gaztelu, A Alamban, A Ashkenazi, P Walter
Elife 11, e74342, 2022
282022
Decoding non-canonical mRNA decay by the endoplasmic-reticulum stress sensor IRE1α
A Le Thomas, E Ferri, S Marsters, JM Harnoss, DA Lawrence, ...
Nature communications 12 (1), 7310, 2021
282021
Antitumor effects of anti-semaphorin 4D antibody unravel a novel proinvasive mechanism of vascular-targeting agents
I Zuazo-Gaztelu, M Pàez-Ribes, P Carrasco, L Martín, A Soler, ...
Cancer research 79 (20), 5328-5341, 2019
232019
Antigen-derived peptides engage the ER stress sensor IRE1α to curb dendritic cell cross-presentation
O Guttman, A Le Thomas, S Marsters, DA Lawrence, L Gutgesell, ...
Journal of Cell Biology 221 (6), e202111068, 2022
192022
Sprouting strategies and dead ends in anti-angiogenic targeting of NETs
P Carrasco, I Zuazo-Gaztelu, O Casanovas
Journal of Molecular Endocrinology 59 (1), R77-R91, 2017
112017
Mechanisms of tumor angiogenesis
I Zuazo-Gaztelu, O Casanovas
Tumor Angiogenesis: A Key Target for Cancer Therapy, 3-31, 2019
62019
A nonenzymatic dependency on inositol-requiring enzyme 1 controls cancer cell cycle progression and tumor growth
I Zuazo-Gaztelu, D Lawrence, I Oikonomidi, S Marsters, X Pechuan-Jorge, ...
bioRxiv, 2023.11. 22.567905, 2023
2023
Anti-Tumor Effects of Semaphorin 4D Blockade Unravel a Novel Pro-Invasive Mechanism of Vascular Targeting Agents
I Zuazo-Gaztelu, M Paez-Ribes, P Carrasco, L Martin-Mitjana, ...
NEUROENDOCRINOLOGY 110, 23-23, 2020
2020
Dual effect of Semaphorin 4D blockade in neuroendocrine tumor malignization: from vessels to macrophages
I Zuazo Gaztelu
Universitat de Barcelona, 2018
2018
Analysing the contribution of ATM/ATR pathway activation in establishing the premature senescence of E2F1/E2F2-/-bone-marrow-derived macrophages
I Zuazo Gaztelu
2015
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Articles 1–11