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4181por Naderi, Asieh, Soltanmaohammadi, Elham, Kaza, Vimala, Barlow, Shayne, Chatzistamou, Ioulia, Kiaris, Hippokratis“…Comparison of lung cancer cell spheroids that formed in the presence of sera from bonded and bond-disrupted deer mice showed that in monogamous Peromyscus polionotus and Peromyscus californicus, but not in polygamous Peromyscus maniculatus, the disruption of pair bonds altered the size and morphology of spheroids in a manner that is consistent with the acquisition of increased oncogenic potential. …”
Publicado 2021
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4182“…We studied TNBC cells with variable chemosensitivities, in the absence (on monolayers) and presence (in 3D multicellular spheroids) of transport barriers; we compared the combined killing effect of free doxorubicin and free cisplatin to the killing effect (1) of conventional liposomal forms of the two chemotherapeutics, and (2) of tumor-responsive lipid nanoparticles (NP), specifically engineered to result in more uniform spatiotemporal microdistributions of the agents within solid tumors. …”
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4183por Suzuki, Soma, Sato, Tatsuya, Watanabe, Megumi, Higashide, Megumi, Tsugeno, Yuri, Umetsu, Araya, Furuhashi, Masato, Ida, Yosuke, Hikage, Fumihito, Ohguro, Hiroshi“…TGF-β2 and hypoxia significantly and synergistically increased the barrier function of the 2D HRPE monolayers, as evidenced by TEER measurements, the downsizing and stiffening of the 3D HRPE spheroids and the mRNA expression of most of the ECM proteins. …”
Publicado 2022
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4184por Parchovianská, Ivana, Parchovianský, Milan, Pecušová, Beáta, Hanzel, Ondrej, Pakseresht, Amirhossein“…Neither an obvious mass change nor a visible energy change was observed within the tested temperature range, indicating high phase stability of the LC powder and its suitability for TBC applications. Spheroidization on the prepared LC powders was also investigated, revealing that powder size and morphology had a significant impact on the spheroidization efficiency.…”
Publicado 2022
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4185“…Results: MIRDcell V3 effectively reproduces experimental responses of multicellular spheroids to uniform and nonuniform distributions of therapeutic radiopharmaceuticals. …”
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4186por Ma, Chiyuan, Liu, Kaizheng, Li, Qin, Xiong, Yue, Xu, Cuixiang, Zhang, Wenya, Ruan, Changshun, Li, Xin, Lei, Xiaohua“…Notably, Schwann cells grew into larger spheroids in RGD-free PIC than in PIC-RGD, while HL-7702 showed the opposite behavior. …”
Publicado 2022
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4187por Boroda, Andrey, Privar, Yuliya, Maiorova, Mariya, Beleneva, Irina, Eliseikina, Marina, Skatova, Anna, Marinin, Dmitry, Bratskaya, Svetlana“…The application of CMC cryogels to 3D co-culture HEK-293T spheroids with P. fluorescence revealed a higher resistance of human cells to bacterial toxins than in the 2D co-culture.…”
Publicado 2022
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4188por Wußmann, Maximiliane, Groeber-Becker, Florian Kai, Riedl, Sabrina, Alihodzic, Dina, Padaric, Daniel, Gerlitz, Lisa, Stallinger, Alexander, Liegl-Atzwanger, Bernadette, Zweytick, Dagmar, Rinner, Beate“…Amongst others, fluorescence microscopy and spectroscopy, as well as cell death studies were applied for liposomal, 2D and 3D in vitro models including tumor spheroids without or within skin models and in vivo mouse xenografts. …”
Publicado 2022
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4189por Tafech, Alaa, Jacquet, Pierre, Beaujean, Céline, Fertin, Arnold, Usson, Yves, Stéphanou, Angélique“…This study explored these cells in both 2D flat layers and 3D structures called spheroids. In spheroids, the regulation process of internal acidity appears to work differently than in 2D. …”
Publicado 2023
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4190por Di Fusco, Davide, Segreto, Maria Teresa, Di Maggio, Giulia, Iannucci, Andrea, Maresca, Claudia, Di Grazia, Antonio, Colella, Marco, Stolfi, Carmine, Monteleone, Giovanni, Monteleone, Ivan“…Using a specific siRNA IMP1, we analyzed cell death and cell cycle progression in PDAC cell lines and 3D spheroids. The role of IMP1 was also evaluated in vivo in a Panc-1-derived tumor xenograft murine model. …”
Publicado 2023
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4191por Rubiano, Andrés, Indapurkar, Amruta, Yokosawa, Ryosuke, Miedzik, Alina, Rosenzweig, Barry, Arefin, Ayesha, Moulin, Chloe M., Dame, Keri, Hartman, Neil, Volpe, Donna A., Matta, Murali K., Hughes, David J., Strauss, David G., Kostrzewski, Tomasz, Ribeiro, Alexandre J. S.“…Upon culturing equivalent hepatocytes in the MPS, spheroids, and sandwich cultures, differences between culture formats were detected in CYP3A4 activity and albumin production. …”
Publicado 2021
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4192por Llewellyn, Samantha V., Conway, Gillian E., Zanoni, Ilaria, Jørgensen, Amalie Kofoed, Shah, Ume-Kulsoom, Seleci, Didem Ag, Keller, Johannes G., Kim, Jeong Won, Wohlleben, Wendel, Jensen, Keld Alstrup, Costa, Anna, Jenkins, Gareth J. S., Clift, Martin J. D., Doak, Shareen H.“…The aim of this study was to determine if acute (24 h) and prolonged (120 h) exposures to five ENMs (TiO(2), ZnO, Ag, BaSO(4) and CeO(2)) would have a significantly different toxicological outcome (cytotoxicity, (pro-)inflammatory and genotoxic response) upon 3D human HepG2 liver spheroids. In addition, this study evaluated whether a more realistic, prolonged fractionated and repeated ENM dosing regime induces a significantly different toxicity outcome in liver spheroids as compared to a single, bolus prolonged exposure. …”
Publicado 2021
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4193por Acciari, V.A., Ansoldi, S., Antonelli, L.A., Arbet Engels, A., Baack, D., Babić, A., Banerjee, B., Barres de Almeida, U., Barrio, J.A., Becerra González, J., Bednarek, W., Bellizzi, L., Bernardini, E., Berti, A., Besenrieder, J., Bhattacharyya, W., Bigongiari, C., Biland, A., Blanch, O., Bonnoli, G., Bošnjak, Ž., Busetto, G., Carosi, R., Ceribella, G., Chai, Y., Chilingarian, A., Cikota, S., Colak, S.M., Colin, U., Colombo, E., Contreras, J.L., Cortina, J., Covino, S., D'Elia, V., Da Vela, P., Dazzi, F., De Angelis, A., De Lotto, B., Delfino, M., Delgado, J., Depaoli, D., Di Pierro, F., Di Venere, L., Do Souto Espiñeira, E., Dominis Prester, D., Donini, A., Dorner, D., Doro, M., Elsaesser, D., Fallah Ramazani, V., Fattorini, A., Ferrara, G., Fidalgo, D., Foffano, L., Fonseca, M.V., Font, L., Fruck, C., Fukami, S., García López, R.J., Garczarczyk, M., Gasparyan, S., Gaug, M., Giglietto, N., Giordano, F., Gliwny, P., Godinović, N., Green, D., Green, J.G., Guberman, D., Hadasch, D., Hahn, A., Herrera, J., Hoang, J., Hrupec, D., Hütten, M., Inada, T., Inoue, S., Ishio, K., Iwamura, Y., Jouvin, L., Kerszberg, D., Kubo, H., Kushida, J., Lamastra, A., Lelas, D., Leone, F., Lindfors, E., Lombardi, S., Longo, F., López, M., López-Coto, R., López-Oramas, A., Loporchio, S., Machado de Oliveira Fraga, B., Maggio, C., Majumdar, P., Makariev, M., Mallamaci, M., Maneva, G., Manganaro, M., Mannheim, K., Maraschi, L., Mariotti, M., Martínez, M., Mazin, D., Mićanović, S., Miceli, D., Miener, T., Minev, M., Miranda, J.M., Mirzoyan, R., Molina, E., Moralejo, A., Morcuende, D., Moreno, V., Moretti, E., Munar-Adrover, P., Neustroev, V., Nigro, C., Nilsson, K., Ninci, D., Nishijima, K., Noda, K., Nogués, L., Nozaki, S., Paiano, S., Palacio, J., Palatiello, M., Paneque, D., Paoletti, R., Paredes, J.M., Peñil, P., Peresano, M., Persic, M., Prada Moroni, P.G., Prandini, E., Puljak, I., Rhode, W., Ribó, M., Rico, J., Righi, C., Rugliancich, A., Saha, L., Sahakyan, N., Saito, T., Sakurai, S., Satalecka, K., Saturni, F.G., Schmidt, K., Schweizer, T., Sitarek, J., Šnidarić, I., Sobczynska, D., Somero, A., Stamerra, A., Strom, D., Suda, Y., Surić, T., Takahashi, M., Tavecchio, F., Temnikov, P., Terzić, T., Teshima, M., Torres-Albà, N., Tosti, L., Vagelli, V., van Scherpenberg, J., Vanzo, G., Vazquez Acosta, M., Vigorito, C.F., Vitale, V., Vovk, I., Will, M., Zarić, D.“…We present the first results from very-high-energy observations of the dwarf spheroidal satellite candidate Triangulum II with the MAGIC telescopes from 62.4 hours of good-quality data taken between August 2016 and August 2017. …”
Publicado 2020
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4194por Araujo-Ayala, Ferran, Dobaño-López, Cèlia, Valero, Juan García, Nadeu, Ferran, Gava, Fabien, Faria, Carla, Norlund, Marine, Morin, Renaud, Bernes-Lasserre, Pascale, Serrat, Neus, Playa-Albinyana, Heribert, Giménez, Rubén, Campo, Elías, Lagarde, Jean-Michel, López-Guillermo, Armando, Gine, Eva, Colomer, Dolors, Bezombes, Christine, Pérez-Galán, Patricia“…MCL spheroids, integrated by tumor B cells, monocytes and autologous T-cells self-organize in disc-shaped structures, where B and T-cells maintain viability and proliferate, and monocytes differentiate into M2-like macrophages. …”
Publicado 2023
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4195por Escudero, Mélanie, Vaysse, Laurence, Eke, Gozde, Peyrou, Marion, Villarroya, Francesc, Bonnel, Sophie, Jeanson, Yannick, Boyer, Louisa, Vieu, Christophe, Chaput, Benoit, Yao, Xi, Deschaseaux, Frédéric, Parny, Mélissa, Raymond‐Letron, Isabelle, Dani, Christian, Carrière, Audrey, Malaquin, Laurent, Casteilla, Louis“…The controlled assembly of spheroids allows to translate organoid morphogenesis to a macroscopic scale, generating vascularized centimeter‐scale beige adipose micro‐tissues. …”
Publicado 2023
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4196por Terzis, A. J., Thorsen, F., Heese, O., Visted, T., Bjerkvig, R., Dahl, O., Arnold, H., Gundersen, G.“…Paclitaxel also proved to be remarkably effective in preventing invasion in a co-culture system in which tumour spheroids were confronted with fetal rat brain cell aggregates. …”
Publicado 1997
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4197“…Three-dimensional cartilage-like constructs, called single spheroids, and microtissues consisting of several spheroids fused together, named as fusions, were formed. …”
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4198por Cirelli, Elisa, De Domenico, Emanuela, Botti, Flavia, Massoud, Renato, Geremia, Raffaele, Grimaldi, Paola“…When cultured in Rotary Cell Culture System (RCCS), Sertoli cells, formed multicellular three dimensional spheroids (3D). Biological properties were first analyzed in terms of viability, cell cycle, expression of cytoskeletal components and growth factors in comparison to Sertoli cells cultured in spheroids at unit gravity (G). …”
Publicado 2017
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4199por Ong, Chin Siang, Fukunishi, Takuma, Zhang, Huaitao, Huang, Chen Yu, Nashed, Andrew, Blazeski, Adriana, DiSilvestre, Deborah, Vricella, Luca, Conte, John, Tung, Leslie, Tomaselli, Gordon F., Hibino, Narutoshi“…Human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs), fibroblasts (FB) and endothelial cells (EC) were aggregated to create mixed cell spheroids. Cardiac patches were created from spheroids (CM:FB:EC = 70:15:15, 70:0:30, 45:40:15) using a 3D bioprinter. …”
Publicado 2017
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4200por Meehan, James, Ward, Carol, Turnbull, Arran, Bukowski-Wills, Jimi, Finch, Andrew J., Jarman, Edward J., Xintaropoulou, Chrysi, Martinez-Perez, Carlos, Gray, Mark, Pearson, Matthew, Mullen, Peter, Supuran, Claudiu T., Carta, Fabrizio, Harrison, David J., Kunkler, Ian H., Langdon, Simon P.“…This difference in CAIX expression in hypoxia was consistent with a varying activity of FIH-1 between the cell lines. 3D expression analysis demonstrated that both CAIX and NHE1 were up-regulated in the hypoxic areas of multicellular tumor spheroids. However, the induction of CAIX expression in hypoxia was again cell line dependent. 3D invasion assays conducted with spheroids showed that CAIX inhibition significantly reduced the invasion of cells. …”
Publicado 2017
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