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Material Type: Artigo
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Distinct functional roles of amphibian (Xenopus laevis) colony‐stimulating factor‐1‐ and interleukin‐34‐derived macrophagesGrayfer, Leon ; Robert, JacquesJournal of leukocyte biology, 2015-10, Vol.98 (4), p.641-649 [Periódico revisado por pares]United States: Society for Leukocyte BiologyTexto completo disponível |
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Material Type: Artigo
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CRISPR/Cas9-based simple transgenesis in Xenopus laevisShibata, Yuki ; Suzuki, Miyuki ; Hirose, Nao ; Takayama, Ayuko ; Sanbo, Chiaki ; Inoue, Takeshi ; Umesono, Yoshihiko ; Agata, Kiyokazu ; Ueno, Naoto ; Suzuki, Ken-ichi T. ; Mochii, MakotoDevelopmental biology, 2022-09, Vol.489, p.76-83 [Periódico revisado por pares]United States: Elsevier IncTexto completo disponível |
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Material Type: Artigo
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Adipose tissue macrophages develop from bone marrow–independent progenitors in Xenopus laevis and mouseHassnain Waqas, Syed F. ; Noble, Anna ; Hoang, Anh C. ; Ampem, Grace ; Popp, Manuela ; Strauß, Sarah ; Guille, Matthew ; Röszer, TamásJournal of leukocyte biology, 2017-09, Vol.102 (3), p.845-855 [Periódico revisado por pares]Bethesda, MD, USA: Society for Leukocyte BiologyTexto completo disponível |
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Material Type: Artigo
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Deep Proteomics of the Xenopus laevis Egg using an mRNA-Derived Reference DatabaseWühr, Martin ; Freeman, Robert M. ; Presler, Marc ; Horb, Marko E. ; Peshkin, Leonid ; Gygi, Steven P. ; Kirschner, Marc W.Current biology, 2014-07, Vol.24 (13), p.1467-1475 [Periódico revisado por pares]England: Elsevier IncTexto completo disponível |
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Material Type: Artigo
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Transmembrane H + fluxes and the regulation of neural induction in Xenopus laevisLeung, Ho Chi ; Leclerc, Catherine ; Moreau, Marc ; Shipley, Alan M ; Miller, Andrew L ; Webb, Sarah EZygote (Cambridge), 2022-04, Vol.30 (2), p.267-278 [Periódico revisado por pares]England: Cambridge University PressTexto completo disponível |
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Material Type: Artigo
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Divergent antiviral roles of amphibian (Xenopus laevis) macrophages elicited by colony‐stimulating factor‐1 and interleukin‐34Grayfer, Leon ; Robert, JacquesJournal of leukocyte biology, 2014-12, Vol.96 (6), p.1143-1153 [Periódico revisado por pares]United States: Society for Leukocyte BiologyTexto completo disponível |
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Material Type: Artigo
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Modeling congenital kidney diseases in Xenopus laevisBlackburn, Alexandria T M ; Miller, Rachel KDisease models & mechanisms, 2019-04, Vol.12 (4) [Periódico revisado por pares]England: The Company of Biologists LtdTexto completo disponível |
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Material Type: Artigo
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Molecular architecture of the luminal ring of the Xenopus laevis nuclear pore complexZhang, Yanqing ; Li, Sai ; Zeng, Chao ; Huang, Gaoxingyu ; Zhu, Xuechen ; Wang, Qifan ; Wang, Kunpeng ; Zhou, Qiang ; Yan, Chuangye ; Zhang, Wusheng ; Yang, Guangwen ; Liu, Minhao ; Tao, Qinghua ; Lei, Jianlin ; Shi, YigongCell research, 2020-06, Vol.30 (6), p.532-540 [Periódico revisado por pares]England: Nature Publishing GroupTexto completo disponível |
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Material Type: Artigo
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Cellular responses in the FGF10‐mediated improvement of hindlimb regenerative capacity in Xenopus laevis revealed by single‐cell transcriptomicsYanagi, Nodoka ; Kato, Sumika ; Fukazawa, Taro ; Kubo, TakeoDevelopment, growth & differentiation, 2022-08, Vol.64 (6), p.266-278 [Periódico revisado por pares]Japan: Wiley Subscription Services, IncTexto completo disponível |
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Material Type: Artigo
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Optimization of CRISPR/Cas9‐mediated gene disruption in Xenopus laevis using a phenotypic image analysis techniqueTanouchi, Mikio ; Igawa, Takeshi ; Suzuki, Nanoka ; Suzuki, Makoto ; Hossain, Nusrat ; Ochi, Haruki ; Ogino, HajimeDevelopment, growth & differentiation, 2022-05, Vol.64 (4), p.219-225 [Periódico revisado por pares]Japan: Wiley Subscription Services, IncTexto completo disponível |