Recent Publications


Keratin filaments mediate the expansion of extra-embryonic membranes in the post-gastrulation mouse embryo
Mouse Embryo, Keratin Aleks Mouse Embryo, Keratin Aleks

Keratin filaments mediate the expansion of extra-embryonic membranes in the post-gastrulation mouse embryo

Wallis Nahaboo, Sema Elif Eski, Evangéline Despin-Guitard, Marjorie Vermeersch, Marie Versaevel, Bechara Saykali, Daniel Monteyne, Sylvain Gabriele, Thomas M Magin, Nicole Schwarz, Rudolf E Leube, An Zwijsen, David Perez-Morga, Sumeet Pal Singh, Isabelle Migeotte. The EMBO Journal (2022) e108747.https://doi.org/10.15252/embj.2021108747

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A single-cell atlas of de novo β-cell regeneration reveals the contribution of hybrid β/δ cells to diabetes recovery in zebrafish
Pancreas, Zebrafish, Diabetes Aleks Pancreas, Zebrafish, Diabetes Aleks

A single-cell atlas of de novo β-cell regeneration reveals the contribution of hybrid β/δ cells to diabetes recovery in zebrafish

Sumeet Pal Singh, Prateek Chawla, Alisa Hnatiuk, Margrit Kamel, Luis F Delgadillo Silva, Bastiaan Spanjaard, Sema Elif Eski, Sharan Janjuha, Pedro Olivares Chauvet, Oezge Kayisoglu, Fabian Rost, Juliane Blasche, Annekathrin Krankel, Andreas Petzold, Thomas Kurth, Susanne Reinhardt, Jan Philipp Junker, Nikolay Ninov., Development (2022) 149 (2): dev199853. https://doi.org/10.1242/dev.199853

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Spatial proteogenomics reveals distinct and evolutionarily conserved hepatic macrophage niches
Macropahes, Proteogenomic, Cell niche Aleks Macropahes, Proteogenomic, Cell niche Aleks

Spatial proteogenomics reveals distinct and evolutionarily conserved hepatic macrophage niches

Guilliams M, Bonnardel J, Haest B, Vanderborght B, Wagner C, Remmerie A, Bujko A, Martens L, Thoné T, Browaeys R, De Ponti FF, Vanneste B, Zwicker C, Svedberg FR, Vanhalewyn T, Gonçalves A, Lippens S, Devriendt B, Cox E, Ferrero G, Wittamer V , Willaert A, Kaptein SJF, Neyts J, Dallmeier K, Geldhof P, Casaert S, Deplancke B, Ten Dijke P, Hoorens A, Vanlander A, Berrevoet F, Van Nieuwenhove Y, Saeys Y, Saelens W, Van Vlierberghe H, Devisscher L, Scott CL. Cell. 2022 Jan 5:S0092-8674(21)01481-1. doi: 10.1016/j.cell.2021.12.018.

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Mitochondrial AIF loss causes metabolic reprogramming, caspase-independent cell death blockade, embryonic lethality, and perinatal hydrocephalus
Hydrocephaly IRIBHM Desk Hydrocephaly IRIBHM Desk

Mitochondrial AIF loss causes metabolic reprogramming, caspase-independent cell death blockade, embryonic lethality, and perinatal hydrocephalus

Delavallée, L., Mathiah, N., Cabon, L., Mazeraud, A., Brunelle-Navas, M.-N., Lerner,L. L., Tannoury, M., Prola, A., Moreno-Loshuertos, R., Baritaud, M., Vela, L., Garbin, K., Garnier, D., Lemaire, C., Langa-Vives,F., Cohen-Salmon, M., Fernández-Silva, P., Chretien, F., Migeotte, I., & Susin, S. A. (2020). M. Molecular metabolism, 40, 101027. doi:10.1016/ j.molmet.2020.101027

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