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1781“…METHODS: Real-time quantitative PCR, western blot, spheroid formation, aldehyde dehydrogenase isoform 1 (ALDH1) activity analysis, luciferase reporter assay, and RNA pull-down analysis were used to examine MACC1-AS1–mediated effects on HCC cell stemness. …”
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1782por Hamis, Sara, Kohandel, Mohammad, Dubois, Ludwig J., Yaromina, Ala, Lambin, Philippe, Powathil, Gibin G.“…The mathematical model for tumour spheroid growth is parameterised by multicellular tumour spheroid (MCTS) data.…”
Publicado 2020
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1783por Kim, Eui Joo, Kim, Yoon Jae, Lee, Hye In, Jeong, Seok-Hoo, Nam, Hyo Jung, Cho, Jae Hee“…To validate the cancer stem cell-like cell characteristics of QGP-1 cells in spheroid culture, in vitro analyses and xenografting were performed. …”
Publicado 2020
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1784“…Heterotypic spheroids, composed of 12Z and T-HESC, an immortalized endometrial stromal cell line, self-assembled into a biologically relevant pattern, consisting of epithelial cells on the outside of the spheroids and stromal cells in the core. 12Z spheroids were biofabricated into large three-dimensional constructs alone, with HEYA8 spheroids, or as heterotypic spheroids with T-HESC. …”
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1785por Kaur, Pooja, Johnson, Alice, Northcote‐Smith, Joshua, Lu, Chunxin, Suntharalingam, Kogularamanan“…Notably, 4 exhibits greater potency (one order of magnitude) towards breast CSCs than salinomycin (an established breast CSC‐potent agent) and cisplatin (a clinically approved anticancer drug). Epithelial spheroid studies show that 4 is able to selectively inhibit breast CSC‐enriched HMLER‐shEcad spheroid formation and viability over non‐tumorigenic breast MCF10 A spheroids. …”
Publicado 2020
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1786Co-Stimulation of Oxytocin and Arginine-Vasopressin Receptors Affect Hypothalamic Neurospheroid Size“…In this study, we established a hypothalamic neuronal spheroid model to investigate the cellular response in a more realistic 3D setting. …”
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1787“…Cell viability and spheroid size in 2% EWA was significantly greater than 1% and 3%. …”
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1788“…We monitored the formation of specialized spheroid structures from the upper cell layer in aging culture. …”
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1789por Kantapan, Jiraporn, Intachai, Nuttawadee, Khamto, Nopawit, Meepowpan, Puttinan, Sangthong, Padchanee, Wantanajittikul, Kittichai, Dechsupa, Nathupakorn, Chitapanarux, Imjai“…Furthermore, we found that the combined treatment of PGG and cisplatin’s effect on 3D multicellular spheroid size was more potent than the monotherapies. …”
Publicado 2022
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1790por Morla, Shravan, Ravikumar, Ongolu, O’Hara, Connor, Boothello, Rio, Vera, Alberto, Abdelfadiel, Elsamani I., Fayyad, Rawan, Afosah, Daniel K., Sharon, Chetna, Fernandez, Leopoldo, Shah, Syed Ammer, Patel, Bhaumik B., Desai, Umesh R.“…A focused library of sulfated GAG mimetics was synthesized and found to inhibit the growth of a colorectal cancer cell line under spheroid conditions with a wide range of potencies ( 0.8 to 46 μM). …”
Publicado 2023
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1791por Farahani, Mohammad Kamalabadi, Bitaraf, Fateme Sadat, Atashi, Amir, Jabbarpour, Zahra“…The presence of cancer stem‐like cells (CSLCs) and their ability to self‐renew is determined by in vitro spheroid formation. AIMS: Many studies have found that frankincense has anticancer impacts, although these effects on breast CSLCs have never been evaluated. …”
Publicado 2022
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1792por Sai, Sei, Vares, Guillaume, Kim, Eun Ho, Karasawa, Kumiko, Wang, Bing, Nenoi, Mitsuru, Horimoto, Yoshiya, Hayashi, Mitsuhiro“…RESULTS: The colony, spheroid formation, and tumorigenicity assays confirmed that CD44+/CD24- and ESA+/CD24- cells have CSC properties in MDA-MB-231 and MDA-MB-453 cells, respectively. …”
Publicado 2015
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1793por Seo, Yoojeong, Kim, Janghyun, Park, Soo Jung, Park, Jae Jun, Cheon, Jae Hee, Kim, Won Ho, Kim, Tae Il“…The results of tumor spheroid growth matched those of the CSC population experiments. …”
Publicado 2020
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1794por Li, Li-Jie, Chang, Peter Mu-Hsin, Li, Chien-Hsiu, Chang, Yu-Chan, Lai, Tsung-Ching, Su, Chia-Yi, Chen, Chi-Long, Chang, Wei-Min, Hsiao, Michael, Feng, Sheng-Wei“…FAS knockout inhibited in vitro cancer spheroid formation, migration and invasion, and prevented mesenchymal transition in OSCC cells and inhibited OSCC pulmonary metastasis in vivo. …”
Publicado 2022
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1795por Moret, Francesca, Conte, Claudia, Esposito, Diletta, Dal Poggetto, Giovanni, Avitabile, Concetta, Ungaro, Francesca, Tiso, Natascia, Romanelli, Alessandra, Laurienzo, Paola, Reddi, Elena, Quaglia, Fabiana“…In particular, NPs unmodified on the surface were randomly distributed in the spheroid, whereas the presence of Fol promoted the accumulation in the outer rims of the spheroid. …”
Publicado 2022
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1796por Bagheri, Vahid, Esmaeili, Seyed-Alireza, Gholamin, Mehran, Abbaszadegan, Mohammad Reza“…Spheroid-forming single cells upregulated stemness transcription factors OCT4, SOX2, SALL4, and Cripto-1 that are associated with pluripotency and self-renewal and CD44 isoforms (CD44s, CD44v3, CD44v6, CD44V8-10) compared with gastric normal tissue cells. …”
Publicado 2022
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1797“…Spheroid oligomers linearly align to form fibrils by opening up and combining. …”
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1798por Minoves, Mélanie, Hazane-Puch, Florence, Moriondo, Giorgia, Boutin-Paradis, Antoine, Lemarié, Emeline, Pépin, Jean-Louis, Godin-Ribuot, Diane, Briançon-Marjollet, Anne“…Both SH and IH stimulated wound healing, spheroid expansion and proliferation of HepG2 cells. …”
Publicado 2023
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1799por Tamaoki, Naritaka, Siebert, Stefan, Maeda, Takuya, Ha, Ngoc-Han, Good, Meghan L., Huang, Yin, Vodnala, Suman K., Haro-Mora, Juan J., Uchida, Naoya, Tisdale, John F., Sweeney, Colin L., Choi, Uimook, Brault, Julie, Koontz, Sherry, Malech, Harry L., Yamazaki, Yasuhiro, Isonaka, Risa, Goldstein, David S., Kimura, Masaki, Takebe, Takanori, Zou, Jizhong, Stroncek, David F., Robey, Pamela G., Kruhlak, Michael J., Restifo, Nicholas P., Vizcardo, Raul“…We found that hiPSCs cocultured with stromal cells as spheroids (hematopoietic spheroids [Hp-spheroids]) can grow in a stirred bioreactor and develop into yolk sac-like organoids without the addition of exogenous factors. …”
Publicado 2023
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1800Publicado 1988“…The inner lobe of the actin subunit, located at 20 A radius, is a prolate ellipsoid, 50 X 25 A; the outer actin lobe, at 30 A radius, is a 35-A-diam spheroid. Attached to the inner lobe of actin is the 60-kD protein, an oblate spheroid, 55 X 40 A, at 50 A radius. …”
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