Showing 18,981 - 19,000 results of 63,540 for search '(( 50 ((teer decrease) OR (((mean decrease) OR (a decrease)))) ) OR ( 2 e decrease ))', query time: 1.42s Refine Results
  1. 18981
  2. 18982

    Expression of the miR-34 family, Axl and HNF4A in RCC. by Helena K. Fritz (785130)

    Published 2015
    “…(<b>C</b>) Kaplan-Meier survival analysis for miR-34a in ccRCC patients, divided into two groups; the 50% of patients with miR-34a expression above median versus the 50% of patients with miR-34a expression below median. …”
  3. 18983

    <i>In vitro</i> inhibitory effects of the HBV shRNAs on HBV replication in HepG2.2.15 cells. by Jingwei Ma (125700)

    Published 2012
    “…<p>HepG2.2.15 cells were transfected with pGenesil-siHBV1∼6 respectively. …”
  4. 18984

    <i>Methanobrevibacter</i> attenuation via probiotic intervention reduces flatulence in adult human: A non-randomised paired-design clinical trial of efficacy by Minseok Seo (316795)

    Published 2017
    “…</p><p>Conclusions</p><p>These results reveal that probiotic intervention modulated the composition of gut microbiota and reduced the abundance of potential pathogens (i.e. <i>Citrobacter</i> and <i>Klebsiella)</i>. In addition, methanogens (i.e. …”
  5. 18985

    Angiogenesis <i>in vitro</i> of ECs of HD2. by Christina Herre (12475755)

    Published 2022
    “…<p>Native (a-c), control (d-f) and knockdown group (g-i) of HD2 including eGFP control of SCR<sub>2</sub> (d<sub>GFP</sub>, e<sub>GFP</sub>, f<sub>GFP</sub>) and sh<sub>2</sub> (g<sub>GFP</sub>, h<sub>GFP</sub>, i<sub>GFP</sub>) at day 5 (a, d, d<sub>GFP</sub>, g, g<sub>GFP</sub>), 25 (b, e, e<sub>GFP</sub>, h, h<sub>GFP</sub>) and 50 (c, f, f<sub>GFP</sub>, i, i<sub>GFP</sub>) of cultivation. …”
  6. 18986
  7. 18987
  8. 18988
  9. 18989

    Comparison of MSH4 and RNF212 dynamics in WT and <i>Cdk2</i><sup><i>T160A</i></sup> spermatocytes. by Nathan Palmer (264897)

    Published 2020
    “…In early-pachytene WT and <i>Cdk2</i><sup><i>T160A</i></sup> spermatocytes, MSH4 foci can be observed along the length of paired axes (A and C, insets I–II and V–VI). …”
  10. 18990
  11. 18991
  12. 18992

    Table_1_Microbiota-Related Changes in Unconjugated Fecal Bile Acids Are Associated With Naturally Occurring, Insulin-Dependent Diabetes Mellitus in Dogs.docx by Albert E. Jergens (6887375)

    Published 2019
    “…The pattern of dysbiosis and altered BA composition is similar to that seen in humans with Type 2 DM. The dog represents a novel large animal model for advancing translational medicine research efforts (e.g., investigating pathogenesis and therapeutics) in DM affecting humans.…”
  13. 18993
  14. 18994

    Proposing model for the interplay between E-cadherin, IR/IGF-IR, and bisecting GlcNAc <i>N</i>-glycans on the stabilization of both cell-cell adhesion and epithelial-like phenotype... by Julio Cesar Madureira de-Freitas-Junior (489189)

    Published 2013
    “…Stimulation with insulin or IGF-I activates IR/IGF-IR signaling and downstream protein ERK 1/2, promoting a decreased expression of bisecting GlcNAc structures in general and specifically on E-cadherin which was previously shown to destabilize cell-cell adhesion [<a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0081579#B18" target="_blank">18</a>], leading to an invasive phenotype. …”
  15. 18995
  16. 18996
  17. 18997
  18. 18998

    DataSheet1_The influence of drug-induced metabolic enzyme activity inhibition and CYP3A4 gene polymorphism on aumolertinib metabolism.docx by Feng Ye (173489)

    Published 2024
    “…The IC<sub>50</sub> values of telmisartan and carvedilol in CYP3A4.1 were 6.68 ± 1.76 μM and 0.60 ± 0.25 μM, respectively, whereas in CYP3A4.12, the IC<sub>50</sub> exceeded 100 μM. …”
  19. 18999

    Two-wave induction of the phosphate starvation response. by Yonat Gurvich (4683127)

    Published 2017
    “…Genes induced by Pho4 include high-affinity transporters (e.g., <i>PHO84</i>) and an inhibitor of low-affinity transporters (<i>SPL2</i>), genes involved in phosphate mobilization in and out of vacuole storage as PolyP (e.g., <i>PHM3</i>), and phosphatases, which scavenge phosphate from molecules inside or outside the cell. …”
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