Showing 201 - 220 results of 42,840 for search '(( 5 ((nm decrease) OR (we decrease)) ) OR ( 50 ((ns decrease) OR (a decrease)) ))', query time: 0.66s Refine Results
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    Design and Synthesis of Novel sEH Inhibitors for the Treatment of Inflammatory Bowel Disease by Huashen Xu (13987046)

    Published 2025
    “…Especially, lead compounds <b>A1</b> and <b>A9</b> showed potent inhibitory activities against sEH (<b>A1</b> and <b>A9</b>; hsEH IC<sub>50</sub> = 0.1 nM, msEH IC<sub>50</sub> = 0.1 nM). …”
  7. 207

    Design and Synthesis of Novel sEH Inhibitors for the Treatment of Inflammatory Bowel Disease by Huashen Xu (13987046)

    Published 2025
    “…Especially, lead compounds <b>A1</b> and <b>A9</b> showed potent inhibitory activities against sEH (<b>A1</b> and <b>A9</b>; hsEH IC<sub>50</sub> = 0.1 nM, msEH IC<sub>50</sub> = 0.1 nM). …”
  8. 208

    Design and Synthesis of Novel sEH Inhibitors for the Treatment of Inflammatory Bowel Disease by Huashen Xu (13987046)

    Published 2025
    “…Especially, lead compounds <b>A1</b> and <b>A9</b> showed potent inhibitory activities against sEH (<b>A1</b> and <b>A9</b>; hsEH IC<sub>50</sub> = 0.1 nM, msEH IC<sub>50</sub> = 0.1 nM). …”
  9. 209

    Design and Synthesis of Novel sEH Inhibitors for the Treatment of Inflammatory Bowel Disease by Huashen Xu (13987046)

    Published 2025
    “…Especially, lead compounds <b>A1</b> and <b>A9</b> showed potent inhibitory activities against sEH (<b>A1</b> and <b>A9</b>; hsEH IC<sub>50</sub> = 0.1 nM, msEH IC<sub>50</sub> = 0.1 nM). …”
  10. 210

    Influence of Interfacial Gas Enrichment on Controlled Coalescence of Oil Droplets in Water in Microfluidics by Jianlong Wang (438075)

    Published 2019
    “…The thickness of the IGE layer decreases from 5.5 to 4.9 nm when the amount of dissolved gas decreases from 7.89 to 4.59 mg/L. …”
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    Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins by Kotaro Nakanishi (3389300)

    Published 2024
    “…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”
  15. 215

    Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins by Kotaro Nakanishi (3389300)

    Published 2024
    “…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”
  16. 216

    Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins by Kotaro Nakanishi (3389300)

    Published 2024
    “…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”
  17. 217

    Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins by Kotaro Nakanishi (3389300)

    Published 2024
    “…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”
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