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21
Por Alekseeva, Ludmila A., Mironova, Nadezhda L., Brenner, Evgenyi V., Kurilshikov, Alexander M., Patutina, Olga A., Zenkova, Marina A.
Publicado no PLoS One (2017)
“... and hepatocellular carcinoma A1 tumour models, we have shown the antimetastatic activity of bovine DNase I, which...”Publicado no PLoS One (2017)
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22
Por Rubin Donald H, Hodge Thomas W, Sheng Jinsong, Li Guangyu, Murray James L, Friedrich Brian M, O'Brien William A, Ferguson Monique R
Publicado em 2011-05-01
“..., our data support a model whereby ADAM10 is cleaved by ADAM15 and γ-secretase and that the ADAM10...”Publicado em 2011-05-01
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23
Por Friedrich, Brian M, Murray, James L, Li, Guangyu, Sheng, Jinsong, Hodge, Thomas W, Rubin, Donald H, O'Brien, William A, Ferguson, Monique R
Publicado em 2011
“..., our data support a model whereby ADAM10 is cleaved by ADAM15 and γ-secretase and that the ADAM10...”Publicado em 2011
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24
Por Jang, Jiho, Yoo, Jeong-Eun, Lee, Jeong-Ah, Lee, Dongjin R., Kim, Ji Young, Huh, Yong Jun, Kim, Dae-Sung, Park, Chul-Yong, Hwang, Dong-Youn, Kim, Han-Soo, Kang, Hoon-Chul, Kim, Dong-Wook
Publicado em 2012
“... with incurable diseases is a promising approach for studying disease mechanisms and drug screening...”Publicado em 2012
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25
Por Anna Gutowska, Anna Gutowska, Katherine McKinnon, Sarkis Sarkis, Melvin N. Doster, Massimiliano Bissa, Ramona Moles, James D. Stamos, Mohammad Arif Rahman, Robyn Washington-Parks, David Davis, Robert Yarchoan, Genoveffa Franchini, Cynthia A. Pise-Masison
Publicado em 2022-05-01
Assuntos:
“...macaque model...”Publicado em 2022-05-01
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26
Por Singh, Nripen, Arunkumar, Abhiram, Peck, Michael, Voloshin, Alexei M., Moreno, Angela M., Tan, Zhijun, Hester, Jonathan, Borys, Michael C., Li, Zheng Jian
Publicado no MAbs (2016)
“... was to develop a mechanistic understanding of the interactions governing adsorptive removal of impurities during...”Publicado no MAbs (2016)
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27
Por Singh, Vimal K., Kalsan, Manisha, Kumar, Neeraj, Saini, Abhishek, Chandra, Ramesh
Publicado no Front Cell Dev Biol (2015)
“... role in reprogramming to generate iPSCs from different types of somatic cell sources involves a...”Publicado no Front Cell Dev Biol (2015)
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28
Por Xiang, Yun, Remily-Wood, Elizabeth R., Oliveira, Vasco, Yarde, Danielle, He, Lili, Cheng, Jin Q., Mathews, Linda, Boucher, Kelly, Cubitt, Christopher, Perez, Lia, Gauthier, Ted J., Eschrich, Steven A., Shain, Kenneth H., Dalton, William S., Hazlehurst, Lori, Koomen, John M.
Publicado em 2011
“... to prevent cell death. Simultaneous monitoring of proteins involved in drug resistance is a major challenge...”Publicado em 2011
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29
Por Wendorff, Timothy J., Schmidt, Bryan H., Heslop, Pauline, Austin, Caroline A., Berger, James M.
Publicado em 2012
“...Type II topoisomerases are required for the management of DNA superhelicity and chromosome...”Publicado em 2012
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30
Por Shi, Ke, Carpenter, Michael A., Kurahashi, Kayo, Harris, Reuben S., Aihara, Hideki
Publicado no J Biol Chem (2015)
“... in cancer mutagenesis. APOBEC3B is a single-stranded DNA cytosine deaminase that functions normally as a...”Publicado no J Biol Chem (2015)
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31
“... pathways. A new model was then developed to detect subnetworks affected by drugs. Furthermore, we proposed...”
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32
Por Alimonti, Andrea, Nardella, Caterina, Chen, Zhenbang, Clohessy, John G., Carracedo, Arkaitz, Trotman, Lloyd C., Cheng, Ke, Varmeh, Shohreh, Kozma, Sara C., Thomas, George, Rosivatz, Erika, Woscholski, Rudiger, Cognetti, Francesco, Scher, Howard I., Pandolfi, Pier Paolo
Publicado em 2010
“... tumorigenesis in vivo in a human xenograft model of prostate cancer. Taken together, our data identify a type...”Publicado em 2010
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33
Por Le Dang, Na, Hughes, Tyler B., Miller, Grover P., Swamidass, S. Joshua
Publicado no Chem Res Toxicol (2018)
“.... This model used a deep learning approach previously developed by our group to predict other types of drug...”Publicado no Chem Res Toxicol (2018)
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34
Por Lujambio, A, Portela, A, Liz, J, Melo, S A, Rossi, S, Spizzo, R, Croce, C M, Calin, G A, Esteller, M
Publicado em 2010
“... the realization that a large class of non-coding RNAs (ncRNAs), named microRNAs, contribute to cancer development...”Publicado em 2010
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35
Por Mazzone, Roberta, Zwergel, Clemens, Mai, Antonello, Valente, Sergio
Publicado no Clin Epigenetics (2017)
“... T lymphocyte-associated antigen-4 (CTLA-4) receptors, are targets for monoclonal antibodies (MAbs) developed...”Publicado no Clin Epigenetics (2017)
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36
Por Okamura, Kohji, Sakaguchi, Hironari, Sakamoto-Abutani, Rie, Nakanishi, Mahito, Nishimura, Ken, Yamazaki-Inoue, Mayu, Ohtaka, Manami, Periasamy, Vaiyapuri Subbarayan, Alshatwi, Ali Abdullah, Higuchi, Akon, Hanaoka, Kazunori, Nakabayashi, Kazuhiko, Takada, Shuji, Hata, Kenichiro, Toyoda, Masashi, Umezawa, Akihiro
Publicado no Sci Rep (2016)
“...Disease-specific induced pluripotent stem cells (iPSCs) have been used as a model to analyze...”Publicado no Sci Rep (2016)
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37
Por Soares, Joana, Raimundo, Liliana, Pereira, Nuno A.L., Monteiro, Ângelo, Gomes, Sara, Bessa, Cláudia, Pereira, Clara, Queiroz, Glória, Bisio, Alessandra, Fernandes, João, Gomes, Célia, Reis, Flávio, Gonçalves, Jorge, Inga, Alberto, Santos, Maria M.M., Saraiva, Lucília
Publicado no Oncotarget (2015)
“... oxazoloisoindolinone SLMP53-1 as a novel reactivator of wild-type (wt) and mut p53, using a yeast-based screening...”Publicado no Oncotarget (2015)
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38
“...Aptamers are single-stranded structured oligonucleotides (DNA or RNA) that can bind to a wide range...”
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39
“... in thinking towards a cancer stem cell (CSC) model for tumor development is certain to impact on how...”
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40
“... for systemic adenovirus infections rely on a nonhuman adenovirus. We established mouse adenovirus type 1 (MAV-1...”
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