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1061por Kim, Tae-Hee, Choi, Jong Ho, Jun, Yesl, Lim, Seung Mook, Park, Sohae, Paek, Jin-Young, Lee, Sang-Hoon, Hwang, Ji-Young, Kim, Gi Jin“…Spheroid PD-MSCs exhibited a significantly higher efficiency of engraftment onto ovarian tissues at 2 weeks. …”
Publicado 2018
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1062por Rodallec, Anne, Sicard, Guillaume, Giacometti, Sarah, Carré, Manon, Pourroy, Bertrand, Bouquet, Fanny, Savina, Ariel, Lacarelle, Bruno, Ciccolini, Joseph, Fanciullino, Raphaelle“…Here, we developed three-dimensional (3D) spheroid models to test the efficacy of trastuzumab-docetaxel immunoliposomes in breast cancer prior to further testing them in vivo. …”
Publicado 2018
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1063por Privat-Maldonado, Angela, Gorbanev, Yury, Dewilde, Sylvia, Smits, Evelien, Bogaerts, Annemie“…The cytotoxicity and spheroid shrinkage were monitored using live imaging. …”
Publicado 2018
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1064por Edsbäcker, Elin, Serviss, Jason T., Kolosenko, Iryna, Palm-Apergi, Caroline, De Milito, Angelo, Tamm, Katja Pokrovskaja“…Three-dimensional cell cultures, such as multicellular spheroids (MCS), reflect the in vivo architecture of solid tumours and multicellular drug resistance. …”
Publicado 2019
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1065por Zhang, Qingyu, Yu, Shan, Lam, Melody Man Ting, Poon, Terence Chuen Wai, Sun, Litao, Jiao, Yufei, Wong, Alice Sze Tsai, Lee, Leo Tsz On“…Recent studies have suggested that ovarian cancer metastasis is highly dependent on the formation of multicellular spheroids (MCS). To understand the associations between the ANGII/AGTR1 pathway and cancer outcomes, we evaluated the effects of ANGII on MCS formation by ovarian cancer cells and used a proteomic approach to analyze the mechanistic basis. …”
Publicado 2019
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1066por Osseiran, Sam, Austin, Lauren A., Cannon, Taylor M., Yan, Chuan, Langenau, David M., Evans, Conor L.“…Here, we demonstrate a method using DiR for the spatiotemporal labeling of specific cells in the context of cancer cell monolayer cultures, 3D tumor spheroids, and in vivo melanoma xenograft models to monitor the proliferation of cellular subpopulations of interest over time. …”
Publicado 2019
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1067“…Hereditary diffuse leukoencephalopathy with axonal spheroids (HDLS) is a rare autosomal dominant disorder that typically presents with early-onset cognitive decline or personality change. …”
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1068por Firuzi, Omidreza, Che, Pei Pei, El Hassouni, Btissame, Buijs, Mark, Coppola, Stefano, Löhr, Matthias, Funel, Niccola, Heuchel, Rainer, Carnevale, Ilaria, Schmidt, Thomas, Mantini, Giulia, Avan, Amir, Saso, Luciano, Peters, Godefridus J., Giovannetti, Elisa“…PCM of cells pre-incubated with PDAC conditioned medium, containing increased hepatocyte growth factor (HGF) levels, made PDAC cells significantly more resistant to gemcitabine, but not to c-MET inhibitors. Hetero-spheroids containing both PSCs and PDAC5 (SSEA4) cells were more resistant to gemcitabine compared to PDAC5 (SSEA4) homo-spheroids. …”
Publicado 2019
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1069por Della Corte, Carminia Maria, Barra, Giusi, Ciaramella, Vincenza, Di Liello, Raimondo, Vicidomini, Giovanni, Zappavigna, Silvia, Luce, Amalia, Abate, Marianna, Fiorelli, Alfonso, Caraglia, Michele, Santini, Mario, Martinelli, Erika, Troiani, Teresa, Ciardiello, Fortunato, Morgillo, Floriana“…We confirmed these data on ex-vivo human spheroids, showing a synergism of MEK and PD-L1 inhibition as result of both direct cancer cell toxicity of MEK-I and its immune-stimulatory effect on cytokine secretion profile of cancer cells and PBMCs with the induction of the ones that sustain an immune-reactive and inflammatory micro-environment. …”
Publicado 2019
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1070“…Hereditary diffuse leukoencephalopathy with axonal spheroids (HDLS) is a rare autosomal dominant disease caused by mutations in the colony stimulating factor 1 receptor (CSF1R) gene that often results in cognitive impairment, psychiatric disorders, motor dysfunction and seizure. …”
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1071por Lee, Hyunjin, Son, Jihwan, Min, Sae Kyung, Na, Chae-Bin, Yi, Gawon, Koo, Heebeom, Park, Jun-Beom“…The objective of the present investigation is to determine the effects of neutral, anionic, and cationic liposomes loaded with doxorubicin with thin-lipid-film-hydration method on the cellular viability and osteogenesis of stem cell spheroids. Spheroid formation and morphology of the three-dimensional spheroid were noted with an inverted microscope. …”
Publicado 2019
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1072por Mo, Yudi, Liu, Junchen, Wang, Shuanjin, Xiao, Min, Ren, Shan, Han, Dongmei, Meng, Yuezhong“…Here, a simple method is developed to construct low-carbon and nanosheathed ZnCo(2)O(4) porous spheroids (ZCO@C-5). In this micro/nanostructure, an ultrathin amorphous carbon layer (~2 nm in thickness) is distributed all over the primary nanosized ZCO particles (~20 nm in diameter), which finally self-assembles into porous core (ZCO)-shell(carbon) micron spheroids. …”
Publicado 2019
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1073por LaBarge, Wesley, Mattapally, Saidulu, Kannappan, Ramaswamy, Fast, Vladimir G., Pretorius, Daniëlle, Berry, Joel L., Zhang, JianyiEnlace del recurso
Publicado 2019
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1074por Marzano, Mark, Bejoy, Julie, Cheerathodi, Mujeeb R., Sun, Li, York, Sara B., Zhao, Jing, Kanekiyo, Takahisa, Bu, Guojun, Meckes, David G., Li, Yan“…Treatment of cortical spheroids with hiPSC-EVs in vitro resulted in enhanced cell proliferation (indicated by BrdU+ cells) and axonal growth (indicated by β-tubulin III staining). …”
Publicado 2019
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1075por Gibot, Laure, Kolosnjaj-Tabi, Jelena, Bellard, Elisabeth, Chretiennot, Thomas, Saurin, Quentin, Catrain, Alexandre, Golzio, Muriel, Vézinet, René, Rols, Marie-Pierre“…Signals effects were assessed in tumor cells spheroids and in normal human dermal fibroblasts spheroids, where macroscopic aspect, growth, plasma membrane integrity, induction of apoptosis, ATP content, and mitochondrial potential were investigated after spheroids exposure to high power electromagnetic signals. …”
Publicado 2019
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1076por Mori, Yutaro, Yamawaki, Kaoru, Ishiguro, Tatsuya, Yoshihara, Kosuke, Ueda, Haruka, Sato, Ai, Ohata, Hirokazu, Yoshida, Yohko, Minamino, Tohru, Okamoto, Koji, Enomoto, TakayukiEnlace del recurso
Publicado 2019
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1077por Weber, Sarah, Koschade, Sebastian E., Hoffmann, Christopher M., Dubash, Taronish D., Giessler, Klara M., Dieter, Sebastian M., Herbst, Friederike, Glimm, Hanno, Ball, Claudia R.Enlace del recurso
Publicado 2019
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1078por Saeednejad Zanjani, Leili, Madjd, Zahra, Rasti, Arezoo, Asgari, Mojgan, Abolhasani, Maryam, Tam, Kevin J., Roudi, Raheleh, Mælandsmo, Gunhild Mari, Fodstad, Øystein, Andersson, Yvonne“…We demonstrated that a subpopulation of ACHN cells was capable of growing as spheroids with many properties similar to CSCs, including higher clonogenicity, superior colony- and sphere-forming ability, and stronger tumorigenicity and invasiveness. …”
Publicado 2019
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1079por Xu, Yongde, Yang, Yong, Zheng, Han, Huang, Chao, Zhu, Xiaoming, Zhu, Yichen, Guan, Ruili, Xin, Zhongcheng, Liu, Zhiqiang, Tian, Ye“…METHODS: Suspensions of free ADSCs (FAs) and ADSCs-based spheroids (ASs) with suitable size were intracavernously injected at doses of 0.5, 1, 2, or 4 million cells. …”
Publicado 2020
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1080por Zuo, Xingang, Zhang, Haolan, Zhou, Tong, Duan, Yiyuan, Shou, Hao, Yu, Shan, Gao, Changyou“…Three types of cell spheroids, i.e., endothelial cell (EC), smooth muscle cell (SMC), and EC-SMC spheroids, were prepared with 10,000 cells in each, whose diameters were about 343, 108, and 224 μm, respectively. …”
Publicado 2020
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