Mostrando 1,781 - 1,800 Resultados de 8,639 Para Buscar '"HeLa"', tiempo de consulta: 0.46s Limitar resultados
  1. 1781
    “…Untreated cells were used as negative control (representing 100% viability). Cell lines: HeLa (cervical cancer), HCC1806 (breast cancer) and MCF10A (non-tumorigenic breast epithelial cell line). …”
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  2. 1782
    por Chu, Duan, Wei, Lai
    Publicado 2019
    “…METHODS: We utilized YTHDF1 target genes and normal or si-METTL3 NGS (next-generation sequencing) data from HeLa cells generated by a previous work and collected known human oncogenes from a website. …”
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  3. 1783
    “…Methods: Cervical cancer cell lines (C-33A and HeLa) were treated with propofol alone (1, 2, 5, 10, and 20 μg/ml) or in combination with paclitaxel (0.5, 1, and 5 μg/ml). …”
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  4. 1784
    “…Several cancer cells showing invasiveness were detected during this period, while other HeLa cells did not show any signs of aggressivity. …”
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  5. 1785
    “…In HeLa cells, APA (Sox) extract showed the highest SOD, GST activity, GSH content, and the least MDA content, whereas APA (Mac) extract showed the highest catalase activity. …”
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  6. 1786
  7. 1787
  8. 1788
    “…We have established RALY overexpression cell lines and studied the effect of RALY on proliferation and apoptosis in HeLa cells. Then we used RNA-seq to analyze the transcriptomes data. …”
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  9. 1789
    “…Catalase-treated PAL at pH 5.9 had no significant effect on mutation frequency, the expression of γH2AX, or G2 arrest in HeLa cells. CONCLUSION: PAL contains one or more active compounds or species in addition to H(2)O(2) that have a killing effect on HeLa cells. …”
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  10. 1790
    “…Essential oil of T. majus showed higher antiproliferative activity (IC(50)<5 µg/mL) than T. majus extract (IC(50)<27 µg/mL) against three cancer cell lines: HeLa, HCT116 and U2OS. BITC showed much higher inhibitory effect on all tested cells than BCN. …”
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  11. 1791
    “…MATERIAL AND METHODS: In this experimental study, bystander response was investigated in human carcinoma cells of HeLa and HN5, neighboring those that received high doses. …”
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  12. 1792
    “…In addition, DBPpys can also be converted into DBPpy by carboxylesterase in HeLa cells and localized in lipid droplets (LDs), emitting bright near-infrared fluorescence under the irradiation of white light. …”
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  13. 1793
  14. 1794
    “…In this study, we implemented single-molecule microscopy techniques as a toolbox for a comprehensive characterization as well as measurement of the cellular uptake of HEK293T cell-derived EVs (eGFP-labeled) in HeLa cells. A combination of fluorescence and atomic force microscopy revealed a fraction of 68% fluorescently labeled EVs with an average size of ∼45 nm. …”
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  15. 1795
    “…Here, we utilize three different azide-containing sugars for metabolic glycan engineering with HeLa cells to incorporate azido glycans that are modified with a DBCO-based nitroxide moiety via click reaction. …”
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  16. 1796
    “…Pseudo isocyanine chloride (PIC) has been identified in a preceding work as a sensor suited to probe macromolecular crowding both in test tubes with solutions of synthetic crowding agents and in HeLa cells as a representative of living systems. …”
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  17. 1797
    “…Isolation of myristoylated peptides from HeLa digests prepared with different proteases enabled the identification of different myristoylated sites, extending the coverage of N-myristoylome. …”
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  18. 1798
    “…Tamoxifen treatment demonstrated an inhibitory effect on HeLa cell multiplication at lower concentrations and toxicity at higher concentrations and longer treatment durations. …”
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  19. 1799
    “…In the absence of doxycycline (Dox) HeLa clones expressing TetR, that carry the RNAi-cassette stably integrated, exhibited no significant alteration in Plk1 expression levels. …”
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  20. 1800
    por Kleinfeld, Ruth G., Sisken, Jesse E.
    Publicado 1966
    “…The effect of Colcemid on the in vivo system of regenerating rat liver and on the in vitro system of HeLa cell cultures was studied to determine some of the morphological and kinetic aspects of metaphase blockage and recovery. …”
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