Showing 13,521 - 13,540 results of 122,558 for search '(( 2 e decrease ) OR ( 5 ((((nn decrease) OR (a decrease))) OR (mean decrease)) ))', query time: 2.18s Refine Results
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    Opposing roles of C/EBPα and eEF1A1 in Sp1-regulated miR-122 transcription by Chunxian Zeng (7440389)

    Published 2019
    “…In this study, we found that Sp1 bound to the miR-122 promoter at two different sites. Interestingly, either inhibition or overexpression of Sp1 could decrease the miR-122 promoter activity and the cellular miR-122 level in hepatoma cells. …”
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  10. 13530

    Table_1_hnRNP E1 Regulates HPV16 Oncogene Expression and Inhibits Cervical Cancerization.docx by Li Song (34475)

    Published 2022
    “…Low expression of HPV16 E2, high expression of E6, and a low ratio of E2 to E6 could increase the risk of cervical lesions. hnRNP E1 expression was correlated with HPV16 oncogene expression. hnRNP E1-relevant genes were involved in the dopaminergic synapses, Wnt signaling pathway, gnRH secretion, and mTOR signaling pathway. hnRNP E1 significantly inhibited cell proliferation, induced apoptosis, arrested the cell cycle at the G0/G1 stage, and decreased HPV16 E6 expression. …”
  11. 13531

    Presentation_1_hnRNP E1 Regulates HPV16 Oncogene Expression and Inhibits Cervical Cancerization.pdf by Li Song (34475)

    Published 2022
    “…Low expression of HPV16 E2, high expression of E6, and a low ratio of E2 to E6 could increase the risk of cervical lesions. hnRNP E1 expression was correlated with HPV16 oncogene expression. hnRNP E1-relevant genes were involved in the dopaminergic synapses, Wnt signaling pathway, gnRH secretion, and mTOR signaling pathway. hnRNP E1 significantly inhibited cell proliferation, induced apoptosis, arrested the cell cycle at the G0/G1 stage, and decreased HPV16 E6 expression. …”
  12. 13532

    Toward Sustainable Li–S Battery Using Scalable Cathode and Safe Glyme-Based Electrolyte by Vittorio Marangon (9706225)

    Published 2023
    “…The cathode is preliminarily studied in terms of structure, thermal behavior, and morphology and exploited in a cell using standard electrolyte. This cell performs over 200 cycles, with sulfur loading increased to 5.2 mg cm<sup>–2</sup> and the electrolyte/sulfur (E/S) ratio decreased to 6 μL mg<sup>–1</sup>. …”
  13. 13533

    Toward Sustainable Li–S Battery Using Scalable Cathode and Safe Glyme-Based Electrolyte by Vittorio Marangon (9706225)

    Published 2023
    “…The cathode is preliminarily studied in terms of structure, thermal behavior, and morphology and exploited in a cell using standard electrolyte. This cell performs over 200 cycles, with sulfur loading increased to 5.2 mg cm<sup>–2</sup> and the electrolyte/sulfur (E/S) ratio decreased to 6 μL mg<sup>–1</sup>. …”
  14. 13534

    Toward Sustainable Li–S Battery Using Scalable Cathode and Safe Glyme-Based Electrolyte by Vittorio Marangon (9706225)

    Published 2023
    “…The cathode is preliminarily studied in terms of structure, thermal behavior, and morphology and exploited in a cell using standard electrolyte. This cell performs over 200 cycles, with sulfur loading increased to 5.2 mg cm<sup>–2</sup> and the electrolyte/sulfur (E/S) ratio decreased to 6 μL mg<sup>–1</sup>. …”
  15. 13535

    Toward Sustainable Li–S Battery Using Scalable Cathode and Safe Glyme-Based Electrolyte by Vittorio Marangon (9706225)

    Published 2023
    “…The cathode is preliminarily studied in terms of structure, thermal behavior, and morphology and exploited in a cell using standard electrolyte. This cell performs over 200 cycles, with sulfur loading increased to 5.2 mg cm<sup>–2</sup> and the electrolyte/sulfur (E/S) ratio decreased to 6 μL mg<sup>–1</sup>. …”
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