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  1. 1641
    “…The aim of this work was to determine how 3D spheroid growth of breast cancer cells impacts the expression and spatial organization of major acid extruding proteins, and how these proteins in turn are required for spheroid growth. …”
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  2. 1642
    “…The LM‐based 3D stem cell spheroids are demonstrated to possess an approximately threefold of cell viability compared with the conventional spheroid obtained from nonadhesive plates. …”
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  3. 1643
  4. 1644
    “…Therefore, more and more laboratories are tending towards multicellular spheroids grown in vitro as a model of native tissues. …”
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  5. 1645
    “…Furthermore, 3D in vitro tumor spheroid experiments confirmed the superior effects of the combination, as the only treatment regime resulting in growth inhibition and complete spheroid disintegration. …”
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  6. 1646
    “…Compared to control ASCs, spheroid-derived ASCs seeded at the same density exhibited decreased viability in the A2-P-supplemented medium. …”
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  7. 1647
    “…In the IA3D, spheroids of cancer HepG2 cells and keratinocytes HaCaT cells appeared after 2 and 3 days of culture, respectively, whereas no spheroids were formed in 2D culture. …”
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  8. 1648
    “…Neurites and spheroid cell sizes were reduced in mutant NB cells of 2D and 3D cultures, respectively. …”
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  9. 1649
  10. 1650
    “…OBJECTIVE: To evaluate the potency of the fraction of marine sponge Stylissa carteri in inducing cell death, inhibiting spheroid growth, and its impact on pro-apoptotic protein Mcl-1S in breast cancer cells. …”
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  11. 1651
  12. 1652
    “…In order to decipher the meaning of this spheroid structure, we established a cardiosphere clone (CSC-21E) derived from the rat heart which can switch its morphology between spheroid and nonspheroid. …”
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  13. 1653
    “…Here we show that a tumor spheroid embedded in a 3D collagen matrix exerts large contractile forces on the matrix before invasion. …”
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  14. 1654
    “…Co-culture of tumor cells with glial cells had little effect on 3D spheroid formation, while treatment with cannabinoids led to significantly larger spheroids. …”
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  15. 1655
    “…Comparative characterization of stable luciferase expressing derivatives of well-established CRC cell lines, derived spheroids and subcutaneous xenograft tumors showed that regarding primary tumor characteristics, the 3D-spheroid cultures resembled xenografts more closely than 2D-cultured cells do. …”
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  16. 1656
    “…Among the spheroid groups, keloid spheroids had much higher gene expression levels of collagen-1 and aSMA, which was confirmed by the immunofluorescent staining with the same correspondence proteins. …”
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  17. 1657
    “…Since then, we have studied cellular mechanisms triggering the cells to leave a monolayer and aggregate to spheroids. Our work focused on spheroid-related changes in gene expression patterns, in protein concentrations, and in factors secreted to the culture supernatant during the period when growth is altered. …”
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  18. 1658
    “…Ovarian cancer cells can form spheroids under serum‐free suspension culture conditions. …”
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  19. 1659
    “…We reveal a consistent increase of viscosity in cancer cells leading the invasion into the collagen matrices in comparison with cancer cells following in the stalk or remaining in the center of the spheroid. We hypothesize that this differential viscoelasticity might facilitate spheroid tip invasion through a dense matrix. …”
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  20. 1660
    por Clark, Kendra, Janorkar, Amol V.
    Publicado 2018
    “…Three conditions were tested: uncoated tissue culture polystyrene (TCPS) surfaces that induced a 2D monolayer formation; elastin-like polypeptide (ELP)-collagen composite hydrogel scaffolds that induced encapsulated 3D spheroid culture; and ELP-polyethyleneimine-coated TCPS surfaces that induced 3D spheroid formation in scaffold-free condition. …”
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