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2561por Xu, Yuan, Li, Yuan, Pang, Ying, Ling, Min, Shen, Lu, Yang, Xiaojun, Zhang, Jianping, Zhou, Jianwei, Wang, Xinru, Liu, Qizhan“…HBE cells were continuously exposed to arsenite. Spheroid formation assays and analyses of side populations (SPs) were performed to confirm that arsenite induces the acquired EMT and cancer stem cell-like phenotype. …”
Publicado 2012
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2562por Yang, Chih-Hui, Wang, Chih-Yu, Huang, Keng-Shiang, Yeh, Chen-Sheng, Wang, Andrew H. -J., Wang, Wei-Ting, Lin, Ming-Yu“…The results showed that the in-situ co-precipitation of ferro-ions gave rise to a radial morphology with non-spheroid macro pores (large cavities) inside the chitosan spheres. …”
Publicado 2012
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2563por Stoczynska-Fidelus, Ewelina, Piaskowski, Sylwester, Bienkowski, Michal, Banaszczyk, Mateusz, Hulas-Bigoszewska, Krystyna, Winiecka-Klimek, Marta, Radomiak-Zaluska, Anna, Och, Waldemar, Borowiec, Maciej, Zieba, Jolanta, Treda, Cezary, Rieske, Piotr“…Thus, this is the first report of GB cells in primary cell cultures (including both monolayer and spheroid conditions) rapidly and spontaneously becoming senescent. …”
Publicado 2014
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2564por Gong, Yuehua, Guo, Ying, Hai, Yanan, Yang, Hao, Liu, Yang, Yang, Shi, Zhang, Zhenzhen, Ma, Meng, Liu, Linhong, Li, Zheng, He, Zuping“…Notably, Nodal facilitated spheroid formation of human CCSCs, and phosphorylation of Smad2 and Smad3 was activated by Nodal in cells of spheres derived from human CCSCs. …”
Publicado 2014
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2565“…We show that the oncolytic virus ΔPK lyses CSC-enriched breast cancer and melanoma 3D spheroid cultures at low titers (0.1pfu/cell) and without resistance development and it inhibits the 3D growth potential (spheroids and agarose colonies) of melanoma and breast cancer cells. …”
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2566por Kim, Sae Won, Yang, Hyun Gul, Kang, Moon Cheol, Lee, Seungwon, Namkoong, Hong, Lee, Seung-Woo, Sung, Young Chul“…KIAA1114(high) cells isolated from HCC cell lines displayed TIC-like features with superior functional and phenotypic traits compared to their KIAA1114(low) counterparts, including tumorigenic abilities in xenotransplantation model, in vitro colony- and spheroid-forming capabilities, expression of stemness-associated genes, and migratory capacity. …”
Publicado 2014
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2567por Kulkarni, Prajakta S., Haldar, Manas K., Nahire, Rahul R., Katti, Preeya, Ambre, Avinash H., Muhonen, Wallace W., Shabb, John B., Padi, Sathish K. R., Singh, Raushan K., Borowicz, Pawel P., Shrivastava, D. K., Katti, Kalpana S., Reindl, Katie, Guo, Bin, Mallik, Sanku“…Effective drug release was demonstrated using the pancreatic ductal carcinoma cells (PANC-1 and MIAPaCa-2) in two-dimensional and three-dimensional “tumor-like” spheroid cultures. A reduction in tumor growth was observed after intravenous administration of the gemcitabine-encapsulated nanovesicles in the xenograft model of athymic, female nude mice.…”
Publicado 2014
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2568“…Cell surface tailoring of chemoselective functional groups was achieved by a liposome fusion delivery method and quantified by flow cytometry and characterized by a new cell surface lipid pull down mass spectrometry strategy. Dynamic co-culture spheroid tissue assembly in solution and co-culture tissue multilayer assembly on materials was demonstrated by an intercellular photo-oxime ligation that could be remotely cleaved and disassembled on demand. …”
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2569por Vallen, Myrtille J. E., Schmidt, Samuel, Oosterhof, Arie, Bulten, Johan, Massuger, Leon F. A. G., van Kuppevelt, Toin H.“…Overexpression of CSE disaccharide units by tumour cells increased their adhesive properties which was especially seen in tumour spheroid formation. Increased expression of CSE reduced cell migration. …”
Publicado 2014
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2570“…We propose a rational classification of the four most commonly used spherical cancer models in cancer research based on culture methods for obtaining them and on subsequent differences in sphere biology: the multicellular tumor spheroid model, first described in the early 70s and obtained by culture of cancer cell lines under nonadherent conditions; tumorospheres, a model of cancer stem cell expansion established in a serum-free medium supplemented with growth factors; tissue-derived tumor spheres and organotypic multicellular spheroids, obtained by tumor tissue mechanical dissociation and cutting. …”
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2571por Cockle, J V, Picton, S, Levesley, J, Ilett, E, Carcaboso, A M, Short, S, Steel, L P, Melcher, A, Lawler, S E, Brüning-Richardson, A“…METHODS: Here, we examine the migratory characteristics and treatment effect of small molecule glycogen synthase kinase-3 inhibitors, lithium chloride (LiCl) and the indirubin derivative 6-bromoindirubin-oxime (BIO), previously shown to inhibit the migration of adult glioma cells, on two pHGG cell lines (SF188 and KNS42) and one patient-derived DIPG line (HSJD-DIPG-007) using 2D (transwell membrane, immunofluorescence, live cell imaging) and 3D (migration on nanofibre plates and spheroid invasion in collagen) assays. RESULTS: All lines were migratory, but there were differences in morphology and migration rates. …”
Publicado 2015
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2572por Yang, Yu, Xu, Haineng, Huang, Weidan, Ding, Miao, Xiao, Jing, Yang, Dongmei, Li, Huaguang, Liu, Xin-Yuan, Chu, Liang“…In this study, lung cancer cell line A549 cells propagated as spheroid bodies (named as A549 sphere cells) in growth factors-defined serum-free medium. …”
Publicado 2015
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2573por LeBlanc, Michelle E., Wang, Weiwen, Caberoy, Nora B., Chen, Xiuping, Guo, Feiye, Alvarado, Gabriela, Shen, Chen, Wang, Feng, Wang, Hui, Chen, Rui, Liu, Zhao-Jun, Webster, Keith, Li, Wei“…HRP-3 was further confirmed for its in vitro angiogenic activity by spheroid sprouting assay. HRP-3 extrinsically activated the extracellular-signal-regulated kinase ½ (ERK1/2) pathway in endothelial cells. …”
Publicado 2015
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2574por Kurokawa, Hiromi, Ito, Hidehiro, Inoue, Mai, Tabata, Kenji, Sato, Yoshifumi, Yamagata, Kazuya, Kizaka-Kondoh, Shinae, Kadonosono, Tetsuya, Yano, Shigenobu, Inoue, Masahiro, Kamachi, Toshiaki“…By the combination of ubiquitously distributed phosphorescent dye with this lifetime imaging microscope, we can visualize the OC inside the whole cell and spheroid. This system uses reversible phosphorescence quenching by oxygen, so it can measure successive OC changes from normoxia to anoxia. …”
Publicado 2015
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2575por Sai, Sei, Wakai, Toshifumi, Vares, Guillaume, Yamada, Shigeru, Kamijo, Takehiko, Kamada, Tadashi, Shirai, Toshiyuki“…The number of colonies and spheroids formed from CSCs after carbon ion beam irradiation was significantly reduced compared to after X-ray irradiation, and they were extremely highly suppressed when carbon ion beam combined with gemcitabine. …”
Publicado 2015
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2576por James, Mark I., Iwuji, Chinenye, Irving, Glen, Karmokar, Ankur, Higgins, Jennifer A., Griffin-Teal, Nicola, Thomas, Anne, Greaves, Peter, Cai, Hong, Patel, Samita R., Morgan, Bruno, Dennison, Ashley, Metcalfe, Matthew, Garcea, Giuseppe, Lloyd, David M., Berry, David P., Steward, William P., Howells, Lynne M., Brown, Karen“…Curcumin alone and in combination significantly reduced spheroid number in CRLM CSC models, and decreased the number of cells with high aldehyde dehydrogenase activity (ALDH(high)/CD133(−)). …”
Publicado 2015
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2577por Oikawa, Tsunekazu, Wauthier, Eliane, Dinh, Timothy A., Selitsky, Sara R., Reyna-Neyra, Andrea, Carpino, Guido, Levine, Ronald, Cardinale, Vincenzo, Klimstra, David, Gaudio, Eugenio, Alvaro, Domenico, Carrasco, Nancy, Sethupathy, Praveen, Reid, Lola M.“…The hFL-HCC tumour line is highly enriched for cancer stem cells as indicated by limited dilution tumourigenicity assays, spheroid formation and flow cytometry. Immunohistochemistry on the hFL-HCC model, with parallel studies on 27 primary hFL-HCC tumours, provides robust evidence for expression of endodermal stem cell traits. …”
Publicado 2015
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2578por Bhave, Madhura Satish, Hassanbhai, Ammar Mansoor, Anand, Padmaja, Luo, Kathy Qian, Teoh, Swee Hin“…IB significantly inhibited cell proliferation of CT26 to 6.3% of the control in 72 hours for the 2D monolayer culture. In the 3D spheroid culture, cell proliferation of HCT116 spheroids notably dropped to 26.2%. …”
Publicado 2015
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2579por WANG, TING-CHUNG, CHENG, CHUN-YU, YANG, WEI-HSUN, CHEN, WEN-CHENG, CHANG, PEY-JIUM“…High magnification views of the tissue sections revealed that C6 cells formed tumor spheroids following implantation and marked invasion was observed shortly after spheroid formation. …”
Publicado 2015
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2580“…LncRNA-HIF2PUTsmall interfering RNA transfection resulted in decreased stemness genes expression, impaired colony formation, and spheroid formation ability, retarded migration, and invasion of the cells. …”
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