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461por Nevers, Yannis, Prasad, Megana K., Poidevin, Laetitia, Chennen, Kirsley, Allot, Alexis, Kress, Arnaud, Ripp, Raymond, Thompson, Julie D., Dollfus, Hélène, Poch, Olivier, Lecompte, OdileEnlace del recurso
Publicado 2017
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462por Bhardwaj, Shivam, Prudic, Kathleen L, Bear, Ashley, Dasgupta, Mainak, Wasik, Bethany R, Tong, Xiaoling, Cheong, Wei Fun, Wenk, Markus R, Monteiro, AntóniaEnlace del recurso
Publicado 2018
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463por Zhang, Shi-Jian, Wang, Chenqu, Yan, Shouyu, Fu, Aisi, Luan, Xuke, Li, Yumei, Sunny Shen, Qing, Zhong, Xiaoming, Chen, Jia-Yu, Wang, Xiangfeng, Chin-Ming Tan, Bertrand, He, Aibin, Li, Chuan-YunEnlace del recurso
Publicado 2017
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464por Pacheco, M Andreína, Matta, Nubia E, Valkiūnas, Gediminas, Parker, Patricia G, Mello, Beatriz, Stanley, Craig E, Lentino, Miguel, Garcia-Amado, Maria Alexandra, Cranfield, Michael, Kosakovsky Pond, Sergei L, Escalante, Ananias AEnlace del recurso
Publicado 2018
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465por Sousa, Ana, Ramiro, Ricardo S., Barroso-Batista, João, Güleresi, Daniela, Lourenço, Marta, Gordo, IsabelEnlace del recurso
Publicado 2017
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466por Bertels, Frederic, Marzel, Alex, Leventhal, Gabriel, Mitov, Venelin, Fellay, Jacques, Günthard, Huldrych F, Böni, Jürg, Yerly, Sabine, Klimkait, Thomas, Aubert, Vincent, Battegay, Manuel, Rauch, Andri, Cavassini, Matthias, Calmy, Alexandra, Bernasconi, Enos, Schmid, Patrick, Scherrer, Alexandra U, Müller, Viktor, Bonhoeffer, Sebastian, Kouyos, Roger, Regoes, Roland REnlace del recurso
Publicado 2018
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467por Renault, Hugues, De Marothy, Minttu, Jonasson, Gabriella, Lara, Patricia, Nelson, David R., Nilsson, IngMarie, André, François, von Heijne, Gunnar, Werck-Reichhart, DanièleEnlace del recurso
Publicado 2017
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468
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469por Huerta-Cepas, Jaime, Forslund, Kristoffer, Coelho, Luis Pedro, Szklarczyk, Damian, Jensen, Lars Juhl, von Mering, Christian, Bork, PeerEnlace del recurso
Publicado 2017
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470
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471por Tsuchimatsu, Takashi, Goubet, Pauline M., Gallina, Sophie, Holl, Anne-Catherine, Fobis-Loisy, Isabelle, Bergès, Hélène, Marande, William, Prat, Elisa, Meng, Dazhe, Long, Quan, Platzer, Alexander, Nordborg, Magnus, Vekemans, Xavier, Castric, VincentEnlace del recurso
Publicado 2017
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472“…Our findings suggest that transcription factors with expression restricted to ventral (non-neural) ectoderm (AP2, Msx1, FoxI1, Vent2, Dlx3, GATA2) and those restricted to dorsal (neural) ectoderm (Pax3, Hairy2b, Zic1) are required for specification of both preplacodal ectoderm and neural crest in a context-dependent fashion and are cross-regulated by Eya1 and Six1. …”
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473“…We hypothesized adenosine A(2A) receptors and G(S) signaling are involved in establishing VAH with longer term moderate CH and tested this in adult male rats by measuring ventilatory responses to O(2) and CO(2) with barometric pressure plethysmography after administering MSX-3 or ketanserin (A(2A) and 5HT(2) antagonists, respectively, both 1 mg/Kg i.p.) during CH for 7 days. …”
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474por Umair, Zobia, Kumar, Shiv, Kim, Daniel H., Rafiq, Khezina, Kumar, Vijay, Kim, SungChan, Park, Jae-Bong, Lee, Jae-Yong, Lee, Unjoo, Kim, Jaebong“…However, none of these direct target transcription factors in this pathway, including GATA1b, Msx1 and Ventx1.1 have yet been proven as direct repressors of early neuro-ectodermal gene expression. …”
Publicado 2018
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475por Grahofer, Alexander, Letko, Anna, Häfliger, Irene Monika, Jagannathan, Vidhya, Ducos, Alain, Richard, Olivia, Peter, Vanessa, Nathues, Heiko, Drögemüller, Cord“…All affected offspring were shown to be carriers of a partial trisomy of chromosome 14 including the FGFR2 gene, which is associated with various dominant inherited craniofacial dysostosis syndromes in man, and partial monosomy of chromosome 8 containing MSX1 known to be associated with tooth agenesis and orofacial clefts in other species. …”
Publicado 2019
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476por Nettersheim, Daniel, Vadder, Saskia, Jostes, Sina, Heimsoeth, Alena, Schorle, Hubert“…Closer analyses of these differentiated clusters suggested that the pioneer factor FOXA2 might be the driving force behind this induction of differentiation, since many FOXA2 interacting genes and differentiation factors like AFP, EOMES, CDX1, ALB, HAND1, DKK, DLK1, MSX1 and PITX2 were upregulated. In this study, we generated TCam-2 cells double-deficient for SOX2 and FOXA2 using the CRISPR/Cas9 technique and xenografted those cells into the flank of nude mice. …”
Publicado 2019
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477por Dalle Carbonare, L., Mottes, M., Cheri, S., Deiana, M., Zamboni, F., Gabbiani, D., Schena, F., Salvagno, G. L., Lippi, G., Valenti, M. T.“…Osteogenesis-related genes as RUNX2, MSX1, and SPP1 appeared to be upregulated after the run; data showed also increased levels of BMP2 and BMP6 expressions. …”
Publicado 2019
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478por Chin, Christine Lin, Goh, Justin Bryan, Srinivasan, Harini, Liu, Kaiwen Ivy, Gowher, Ali, Shanmugam, Raghuvaran, Lim, Hsueh Lee, Choo, Matthew, Tang, Wen Qin, Tan, Andy Hee-Meng, Nguyen-Khuong, Terry, Tan, Meng How, Ng, Say Kong“…Selection was performed using methionine sulfoximine (MSX) to select for high EPO expression cells. EPO production of up to 92700 U/mL of EPO as analyzed by ELISA or 696 mg/L by densitometry was demonstrated in a 2 L stirred-tank fed batch bioreactor. …”
Publicado 2019
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479“…Among EMI‐related proteins, BMP4 elevated the expression levels of osteogenic genes, Msx2, Dlx5, and Bmp2 the most, more noticeably in mABDCs than in mLBDCs during osteogenic differentiation. …”
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480“…In addition, ectopic overexpression of FGF23 increased the levels of p-ERK, Msx2 and Osx in a dose-dependent manner. Furthermore, a total of 48 patients were enrolled in the present study. …”
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