Articles dans des revues avec comité de lecture (29)

  1. 25. Singh, S. P., & Ninov, N. (2018). The triumvirate of beta-cell regeneration: solutions and bottlenecks to curing diabetes. The International journal of developmental biology, 62(6-7-8), 453-464. doi:10.1387/ijdb.180067nn
  2. 26. Singh, S. P., Janjuha, S., Hartmann, T., Kayisoglu, Ö., Konantz, J., Birke, S., Murawala, P., Alfar, E. A., Murata, K., Eugster, A., Tsuji, N., Morrissey, E., Brand, M., & Ninov, N. (2017). Different developmental histories of beta-cells generate functional and proliferative heterogeneity during islet growth. Nature communications, 8(1). doi:10.1038/s41467-017-00461-3
  3. 27. Fei, J.-F., Knapp, D., Schuez, M., Murawala, P., Zou, Y., Singh, S. P., Drechsel, D., & Tanaka, E. (2016). Tissue- and time-directed electroporation of CAS9 protein–gRNA complexes in vivo yields efficient multigene knockout for studying gene function in regeneration. npj Regenerative Medicine, 1(1). doi:10.1038/npjregenmed.2016.2
  4. 28. Singh, S. P., Holdway, J., & Poss, K. D. (2012). Regeneration of Amputated Zebrafish Fin Rays from De Novo Osteoblasts. Developmental cell, 22(4), 879-886. doi:10.1016/j.devcel.2012.03.006
  5. 29. Wang, J., Panáková, D., Kikuchi, K., Holdway, J., Gemberling, M., Burris, J., Singh, S. P., Dickson, A., Lin, Y.-F., Sabeh, K., Werdich, A., Yelon, D., MacRae, C., & Poss, K. D. (2011). The regenerative capacity of zebrafish reverses cardiac failure caused by genetic cardiomyocyte depletion. Development, 138(16), 3421-3430. doi:10.1242/dev.068601
  6.   Articles dans des revues sans comité de lecture (9)

  7. 1. Valiente-Gabioud, A., Garteizgogeascoa Suñer, I., Idziak, A., Fabritius, A., Angibaud, J., Basquin, J., Valentin Nägerl, U., Singh, S. P., & Griesbeck, O. (2023). Fluorescent Sensors for Imaging Interstitial Calcium. BioRxiv. doi:10.1101/2023.03.23.533956
  8. 2. Ibneeva, L., Singh, S. P., Sinha, A., Eski, S. E., Wehner, R., Rupp, L., Perez-Valencia, J. A., Gerbaulet, A., Reinhardt, S., Wobus, M., Van Bonin, M., Sancho, J., Lund, F., Dahl, A., Schmitz, M., Bornhäuser, M., Chavakis, T., Wielockx, B., & Grinenko, T. (2023). CD38 promotes hematopoietic stem cell dormancy via c-Fos. BioRxiv. doi:10.1101/2023.02.08.527614
  9. 3. Yu, Q., Walters, H., Pasquini, G., Singh, S. P., León-Periñán, D., Petzold, A., Kesavan, P., Subiran, C., Garteizgogeascoa Suñer, I., Wagner, A., Bernardos, A., Alfonso, M., Nadar, G., Dahl, A., Busskamp, V., Mart'inez-Máñez, R., & Yun, M. (2022). Cellular senescence modulates progenitor cell expansion during axolotl limb regeneration. BioRxiv.
  10. 4. De Faria Da Fonseca, B., Barbee, C., Romitti, M., Eski, S. E., Gillotay, P., Monteyne, D., Perez-Morga, D., Refetoff, S., Singh, S. P., & Costagliola, S. (2022). Foxe1 orchestrates thyroid and lung cell lineage divergence in mouse stem cell-derived organoids. BioRxiv. doi:10.1101/2022.05.16.492074
  11. 5. Gillotay, P., Romitti, M., Dassy, B., Haerlingen, B., Parakkal Meghna Shankar, V., De Faria Da Fonseca, B., Panos, Z. G., Singh, S. P., Gerasimos, S., & Costagliola, S. (2022). Nrf2 promotes thyroid development and hormone synthesis. BioRxiv. doi:10.1101/2022.02.27.482168
  12. 6. Pozo Morales, M., Garteizgogeascoa Suñer, I., Perazzolo, C., & Singh, S. P. (2022). In vivo imaging of calcium dynamics in zebrafish hepatocytes. BioRxiv. doi:10.1101/2022.01.11.475536
  13. 7. Singh, S. P., Chawla, P., Hnatiuk, A., Kamel, M., Silva, L. D., Spanjard, B., Eski, S. E., Janjuha, S., Olivares, P., Kayisoglu, Ö., Rost, F., Bläsche, J., Kränkel, A., Petzold, A., Kurth, T., Reinhardt, S., Junker, J. P., & Ninov, N. (2021). A single-cell atlas of de novo β-cell regeneration reveals the contribution of hybrid β/δ cells to diabetes recovery in zebrafish. BioRxiv.

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