Showing 17,741 - 17,760 results of 226,405 for search '(( a ((a decrease) OR (linear decrease)) ) OR ( a ((largest decrease) OR (larger decrease)) ))', query time: 1.72s Refine Results
  1. 17741
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  3. 17743
  4. 17744

    Loss of MALS-1 function suppresses the mitochondrial and axon degeneration phenotypes that are caused by loss of RBM-26 function. by Tamjid A. Chowdhury (14149846)

    Published 2024
    “…(D) Loss of RBM-26 protein expression causes a decrease in mitoribosome expression, which was assayed with the MitoRibo-Tag system consisting of the MRPL-58 mitoribosomal protein tagged at its C-terminus with 3XFLAG (MRPL-58::3XFLAG). …”
  5. 17745
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  8. 17748
  9. 17749
  10. 17750

    Optical Effects of <i>S</i>-Oxidation and M<sup><i>n</i>+</sup> Binding in <i>meso</i>-Thienyl Dipyrrin Systems and of Stepwise Bromination of 4,4-Difluoro-8-(2,5-dibromo-3-thienyl... by Shin Hei Choi (2190841)

    Published 2008
    “…<i>meso</i>-Thienyl group properties were revealed through the use of 3,4,4-triphenyl-8-(thienyl)-4-bora-3<i>a</i>,4<i>a</i>-diaza-<i>s</i>-indacene; Cu<sup>2+</sup> addition resulted in smooth absorption decreases which were modeled to support 1:1 substrate:M<sup>2+</sup> binding; for Hg<sup>2+</sup> 1:2 substrate:M<sup>2+</sup> binding was found. …”
  11. 17751

    Optical Effects of <i>S</i>-Oxidation and M<sup><i>n</i>+</sup> Binding in <i>meso</i>-Thienyl Dipyrrin Systems and of Stepwise Bromination of 4,4-Difluoro-8-(2,5-dibromo-3-thienyl... by Shin Hei Choi (2190841)

    Published 2008
    “…<i>meso</i>-Thienyl group properties were revealed through the use of 3,4,4-triphenyl-8-(thienyl)-4-bora-3<i>a</i>,4<i>a</i>-diaza-<i>s</i>-indacene; Cu<sup>2+</sup> addition resulted in smooth absorption decreases which were modeled to support 1:1 substrate:M<sup>2+</sup> binding; for Hg<sup>2+</sup> 1:2 substrate:M<sup>2+</sup> binding was found. …”
  12. 17752

    Optical Effects of <i>S</i>-Oxidation and M<sup><i>n</i>+</sup> Binding in <i>meso</i>-Thienyl Dipyrrin Systems and of Stepwise Bromination of 4,4-Difluoro-8-(2,5-dibromo-3-thienyl... by Shin Hei Choi (2190841)

    Published 2008
    “…<i>meso</i>-Thienyl group properties were revealed through the use of 3,4,4-triphenyl-8-(thienyl)-4-bora-3<i>a</i>,4<i>a</i>-diaza-<i>s</i>-indacene; Cu<sup>2+</sup> addition resulted in smooth absorption decreases which were modeled to support 1:1 substrate:M<sup>2+</sup> binding; for Hg<sup>2+</sup> 1:2 substrate:M<sup>2+</sup> binding was found. …”
  13. 17753

    Optical Effects of <i>S</i>-Oxidation and M<sup><i>n</i>+</sup> Binding in <i>meso</i>-Thienyl Dipyrrin Systems and of Stepwise Bromination of 4,4-Difluoro-8-(2,5-dibromo-3-thienyl... by Shin Hei Choi (2190841)

    Published 2008
    “…<i>meso</i>-Thienyl group properties were revealed through the use of 3,4,4-triphenyl-8-(thienyl)-4-bora-3<i>a</i>,4<i>a</i>-diaza-<i>s</i>-indacene; Cu<sup>2+</sup> addition resulted in smooth absorption decreases which were modeled to support 1:1 substrate:M<sup>2+</sup> binding; for Hg<sup>2+</sup> 1:2 substrate:M<sup>2+</sup> binding was found. …”
  14. 17754

    Optical Effects of <i>S</i>-Oxidation and M<sup><i>n</i>+</sup> Binding in <i>meso</i>-Thienyl Dipyrrin Systems and of Stepwise Bromination of 4,4-Difluoro-8-(2,5-dibromo-3-thienyl... by Shin Hei Choi (2190841)

    Published 2008
    “…<i>meso</i>-Thienyl group properties were revealed through the use of 3,4,4-triphenyl-8-(thienyl)-4-bora-3<i>a</i>,4<i>a</i>-diaza-<i>s</i>-indacene; Cu<sup>2+</sup> addition resulted in smooth absorption decreases which were modeled to support 1:1 substrate:M<sup>2+</sup> binding; for Hg<sup>2+</sup> 1:2 substrate:M<sup>2+</sup> binding was found. …”
  15. 17755

    Optical Effects of <i>S</i>-Oxidation and M<sup><i>n</i>+</sup> Binding in <i>meso</i>-Thienyl Dipyrrin Systems and of Stepwise Bromination of 4,4-Difluoro-8-(2,5-dibromo-3-thienyl... by Shin Hei Choi (2190841)

    Published 2008
    “…<i>meso</i>-Thienyl group properties were revealed through the use of 3,4,4-triphenyl-8-(thienyl)-4-bora-3<i>a</i>,4<i>a</i>-diaza-<i>s</i>-indacene; Cu<sup>2+</sup> addition resulted in smooth absorption decreases which were modeled to support 1:1 substrate:M<sup>2+</sup> binding; for Hg<sup>2+</sup> 1:2 substrate:M<sup>2+</sup> binding was found. …”
  16. 17756

    Optical Effects of <i>S</i>-Oxidation and M<sup><i>n</i>+</sup> Binding in <i>meso</i>-Thienyl Dipyrrin Systems and of Stepwise Bromination of 4,4-Difluoro-8-(2,5-dibromo-3-thienyl... by Shin Hei Choi (2190841)

    Published 2008
    “…<i>meso</i>-Thienyl group properties were revealed through the use of 3,4,4-triphenyl-8-(thienyl)-4-bora-3<i>a</i>,4<i>a</i>-diaza-<i>s</i>-indacene; Cu<sup>2+</sup> addition resulted in smooth absorption decreases which were modeled to support 1:1 substrate:M<sup>2+</sup> binding; for Hg<sup>2+</sup> 1:2 substrate:M<sup>2+</sup> binding was found. …”
  17. 17757

    Optical Effects of <i>S</i>-Oxidation and M<sup><i>n</i>+</sup> Binding in <i>meso</i>-Thienyl Dipyrrin Systems and of Stepwise Bromination of 4,4-Difluoro-8-(2,5-dibromo-3-thienyl... by Shin Hei Choi (2190841)

    Published 2008
    “…<i>meso</i>-Thienyl group properties were revealed through the use of 3,4,4-triphenyl-8-(thienyl)-4-bora-3<i>a</i>,4<i>a</i>-diaza-<i>s</i>-indacene; Cu<sup>2+</sup> addition resulted in smooth absorption decreases which were modeled to support 1:1 substrate:M<sup>2+</sup> binding; for Hg<sup>2+</sup> 1:2 substrate:M<sup>2+</sup> binding was found. …”
  18. 17758

    GTPs alleviates the decrease of adiponectin expression in fat tissue and serum induced by HF diet. by Chong Tian (288555)

    Published 2013
    “…<p>Fig. 2 A showed the mRNA level of adiponectin in adipose tissue, the result is presented in arbitrary units using GADPH as reference. …”
  19. 17759

    Chloroquine and hydroxychloroquine decrease CXCL12-mediated proliferation in pancreatic cancer cell lines. by Joseph Kim (17521)

    Published 2013
    “…<p>(A) PANC-1, (B) Hs-766T, and (C) MIAPaCa-2 cells were pretreated with chloroquine or hydroxychloroquine (0.1 µM) for 30 minutes after which cells were exposed to CXCL12 (200 ng/ml) for 72 hours. …”
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