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6001“…After SP intervention, compared with ACN group, there was no significant difference in the proportion of sperm at all levels in low, medium, and high SP intervention groups (P > 0.05). (2) Compared with the control group, the sperm VCL, VSL, VAP, and mad in ACN group increased significantly, and the BCF decreased significantly (P < 0.05). …”
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6002
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6003por Liu, Zhengquan, Chen, Xingyong, Zhao, Yutong, Peng, Jingzhou, Chen, Daoyou, Yu, Shiqi, Geng, Zhaoyu“…At 1, 2, 3, and 4 weeks of age, goslings from each replicate were weighed, the ovaries were weighed and fixed for hematoxylin-eosin (HE) staining, Cell cycle checkpoint kinase 1 (CHK1), fibroblast growth factor 12 (FGF12) and Sma-and Mad-related protein 4 (SMAD4) which related to regulation of ovarian development were determined by qRT-PCR. …”
Publicado 2022
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6004por Johansen, Mikkel Willum, Goddiksen, Mads Paludan, Centa, Mateja, Clavien, Christine, Gefenas, Eugenijus, Globokar, Roman, Hogan, Linda, Merit, Marcus Tang, Nielsen, Søren Saxmose, Olsson, I. Anna S., Poškutė, Margarita, Quinn, Una, Santos, Júlio Borlido, Santos, Rita, Schöpfer, Céline, Strahovnik, Vojko, Wall, P. J., Sandøe, Peter, Lund, Thomas BøkerEnlace del recurso
Publicado 2022
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6005por Marner, Lisbeth, Korsholm, Kirsten, Anderberg, Lasse, Lonsdale, Markus N., Jensen, Mads Radmer, Brødsgaard, Eva, Denholt, Charlotte L., Gillings, Nic, Law, Ian, Friberg, LarsEnlace del recurso
Publicado 2022
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6006
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6007por Damkjaer, Mads, Loane, Maria, Urhøj, Stine Kjær, Ballardini, Elisa, Cavero- Carbonell, Clara, Coi, Alessio, García-Villodre, Laura, Given, Joanne Emma, Gissler, Mika, Heino, Anna, Jordan, Susan, Neville, Amanda, Pierini, Anna, Tan, Joachim, Scanlon, Ieuan, Garne, Ester, Morris, Joan KEnlace del recurso
Publicado 2022
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6008“…The 2-phenyl-5-propyl-DHPO (TSE; no. 2: TSE-2) compound showed the best activity of reduced expression levels of TGF-β2 among five derivatives and therefore was chosen to evaluate the anti-PCO activity and molecular mechanisms on the Sma and mad protein (SMAD) signaling pathway (including TGF-β2, SMADs, and the inhibition of nuclear translocation of SMADs), non-SMAD pathway proteins, including p-extracellular, regulated protein kinases (ERK) 1/2, or p-c-Jun N-terminal kinase (JUN) by Western blotting, PCR, or confocal immunofluorescence analyses. …”
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6009por Carvalho, Robson Francisco, do Canto, Luisa Matos, Abildgaard, Cecilie, Aagaard, Mads Malik, Tronhjem, Monica Søgaard, Waldstrøm, Marianne, Jensen, Lars Henrik, Steffensen, Karina Dahl, Rogatto, Silvia ReginaEnlace del recurso
Publicado 2022
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6010
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6011por Munch, Tina N, Hedley, Paula L, Hagen, Christian M, Bækvad-Hansen, Marie, Geller, Frank, Bybjerg-Grauholm, Jonas, Nordentoft, Merete, Børglum, Anders D, Werge, Thomas M, Melbye, Mads, Hougaard, David M, Larsen, Lars A, Christensen, Søren T, Christiansen, MichaelEnlace del recurso
Publicado 2023
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6012por White, Jason A., Kaninjing, Ernest T., Adeniji, Kayode A., Jibrin, Paul, Obafunwa, John O., Ogo, Chidiebere N., Mohammed, Faruk, Popoola, Ademola, Fatiregun, Omolara A., Oluwole, Olabode P., Karanam, Balasubramanyam, Elhussin, Isra, Ambs, Stefan, Tang, Wei, Davis, Melissa, Polak, Paz, Campbell, Moray J., Brignole, Kathryn R., Rotimi, Solomon O., Dean-Colomb, Windy, Odedina, Folake T., Martin, Damali N., Yates, Clayton“…BRCA2 (27%), APC (20%), ATM (20%), BRCA1 (13%), DNAJC6 (13%), EGFR (13%), MAD1L1 (13%), MLH1 (11%), and PMS2 (11%) showed mutation frequencies >10%. …”
Publicado 2022
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6013por Mahmoodi Chalbatani, Ghanbar, Gharagouzloo, Elahe, Malekraeisi, Mohammad Amin, Azizi, Paniz, Ebrahimi, Amirabbas, Hamblin, Michael R., Mahmoodzadeh, Habibollah, Elkord, Eyad, Miri, Seyed Rohollah, Sanati, Mohammad Hossein, Panahi, Bahman“…Among these genes, eight, including CHEK1, CDC6, FANCI, GINS2, MAD2L1, ORC1, RACGAP1, and SMC4, have demonstrated a significant impact on overall survival. …”
Publicado 2023
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6014por Morandi, Elena, Severini, Cinzia, Quercioli, Daniele, D'Ario, Giovanni, Perdichizzi, Stefania, Capri, Miriam, Farruggia, Giovanna, Mascolo, Maria Grazia, Horn, Wolfango, Vaccari, Monica, Serra, Roberto, Colacci, Annamaria, Silingardi, Paola“…Furthermore, the down-regulation of MYC and DP1 genes, which act as key transcription factors in cell growth control, together with the inhibition of BUB1, BUB3 and MAD2 mRNAs, which are known to be involved in the spindle checkpoint pathway, were specifically associated with the execution of senescence in U87-MG cells and addressed as critical factors that could drive the choice between different CPT-inducible effectors programs. …”
Publicado 2008
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6015por Peachman, Kristina K., Karasavvas, Nicos, Chenine, Agnes-Laurence, McLinden, Robert, Rerks-Ngarm, Supachai, Jaranit, Kaewkungwal, Nitayaphan, Sorachai, Pitisuttithum, Punnee, Tovanabutra, Sodsai, Zolla-Pazner, Susan, Michael, Nelson L., Kim, Jerome H., Alving, Carl R., Rao, Mangala“…RESULTS: We demonstrate that α4β7 on RPMI8866 cells bound specifically to its natural ligand mucosal addressin cell adhesion molecule-1 (MAdCAM-1) as well as to cyclic-V2 and cyclic-V3 peptides. …”
Publicado 2015
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6016por Li, Yuan, Yang, Kai, Yang, Wei, Chu, Liwei, Chen, Chunhai, Zhao, Bo, Li, Yisong, Jian, Jianbo, Yin, Zhichao, Wang, Tianqi, Wan, Ping“…VaAGL encodes an agamous-like MADS-box protein of 379 amino acids. VaPhyE encodes a phytochrome E protein of 1,121 amino acids. …”
Publicado 2017
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6017por Huang, Bo, Tuo, Fei, Liang, Yuan, Wu, Wanting, Wu, Guangchao, Huang, Shiguang, Zhong, Qirun, Su, Xin-zhuan, Zhang, Hongying, Li, Mingqiang, Bacar, Affane, Abdallah, Kamal Said, Mliva, Ahamada M. S. A., Wang, Qi, Yang, Zhaoli, Zheng, Shaoqin, Xu, Qin, Song, Jianping, Deng, Changsheng“…RESULTS: Three msp-1 alleles (K1, MAD20, and RO33), two msp-2 alleles (FC27 and 3D7), and two msp-3 alleles (K1 and 3D7) were detected in parasites of both sampling periods. …”
Publicado 2018
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6018por Pabla, Sarabjot, Conroy, Jeffrey M., Nesline, Mary K., Glenn, Sean T., Papanicolau-Sengos, Antonios, Burgher, Blake, Hagen, Jacob, Giamo, Vincent, Andreas, Jonathan, Lenzo, Felicia L., Yirong, Wang, Dy, Grace K., Yau, Edwin, Early, Amy, Chen, Hongbin, Bshara, Wiam, Madden, Katherine G., Shirai, Keisuke, Dragnev, Konstantin, Tafe, Laura J., Marin, Daniele, Zhu, Jason, Clarke, Jeff, Labriola, Matthew, McCall, Shannon, Zhang, Tian, Zibelman, Matthew, Ghatalia, Pooja, Araujo-Fernandez, Isabel, Singavi, Arun, George, Ben, MacKinnon, Andrew Craig, Thompson, Jonathan, Singh, Rajbir, Jacob, Robin, Dressler, Lynn, Steciuk, Mark, Binns, Oliver, Kasuganti, Deepa, Shah, Neel, Ernstoff, Marc, Odunsi, Kunle, Kurzrock, Razelle, Gardner, Mark, Galluzzi, Lorenzo, Morrison, Carl“…RESULTS: Cell proliferation, derived from the mean expression of 10 proliferation-associated genes (namely BUB1, CCNB2, CDK1, CDKN3, FOXM1, KIAA0101, MAD2L1, MELK, MKI67, and TOP2A), was identified as a marker of response to ICIs in NSCLC. …”
Publicado 2019
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6019por Perez-Ramos, Jose G, Leon-Thomas, Mariela, Smith, Sabrina L, Silverman, Laura, Perez-Torres, Claudia, Hall, Wyatte C, Iadarola, Suzannah“…Positive ranking comprised the “smiley” and “loved” emojis, and negative ranking comprised the “neutral,” “sad,” and “mad” emojis. When comparing negative and positive experiences, the latter was higher across Ana’s platforms (English: n=41, 64.06%; Spanish: n=41, 77.35%) versus the former (English: n=23, 35.93%; Spanish: n=12, 22.64%). …”
Publicado 2023
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6020por Turner, M., Adli, E., Ahuja, A., Apsimon, O., Apsimon, R., Bachmann, A.-M, Barros Marin, M., Barrientos, D., Batsch, F., Batkiewicz, J., Bauche, J., Berglyd Olsen, V.K., Bernardini, M., Biskup, B., Boccardi, A., Bogey, T., Bohl, T., Bracco, C., Braunmüller, F., Burger, S., Burt, G., Bustamante, S., Buttenschön, B., Caldwell, A., Cascella, M., Chappell, J., Chevallay, E., Chung, M., Cooke, D., Damerau, H., Deacon, L., Deubner, L.H., Dexter, A., Doebert, S., Farmer, J., Fedosseev, V.N., Fior, G., Fiorito, R., Fonseca, R.A., Friebel, F., Garolfi, L., Gessner, S., Gorgisyan, I., Gorn, A.A., Granados, E., Grulke, O., Gschwendtner, E., Guerrero, A., Hansen, J., Helm, A., Henderson, J.R., Hessler, C., Hofle, W., Hüther, M., Ibison, M., Jensen, L., Jolly, S., Keeble, F., Kim, S.Y., Kraus, F., Lefevre, T., Legodec, G., Li, Y., Liu, S., Lopes, N., Lotov, K.V., Maricalva Brun, L., Martyanov, M., Mazzoni, S., Medina Godoy, D., Minakov, V.A., Mitchell, J., Molendijk, J.C., Mompo, R., Moody, J.T., Moreira, M., Muggli, P., Öz, E., Ozturk, E., Mutin, C., Pasquino, C., Pardons, A., Peña Asmus, F., Pepitone, K., Perera, A., Petrenko, A., Pitman, S., Plyushchev, G., Pukhov, A., Rey, S., Rieger, K., Ruhl, H., Schmidt, J.S., Shalimova, I.A., Shaposhnikova, E., Sherwood, P., Silva, L.O., Soby, L., Sosedkin, A.P., Speroni, R., Spitsyn, R.I., Tuev, P.V., Velotti, F., Verra, L., Verzilov, V.A., Vieira, J., Vincke, H., Welsch, C.P., Williamson, B., Wing, M., Woolley, B., Xia, G.Enlace del recurso
Publicado 2018
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