Showing 12,181 - 12,193 results of 12,193 for search '(( 50 ((we decrease) OR (mean decrease)) ) OR ( 5 ((fold decrease) OR (nn decrease)) ))', query time: 0.41s Refine Results
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  3. 12183

    Table_2_Clostridium cellulovorans Proteomic Responses to Butanol Stress.XLSX by Paolo Costa (1396552)

    Published 2021
    “…Several additional metabolic adaptations were triggered by butanol exposure such as the up-regulation of V- and F-type ATPases (involved in ATP synthesis/generation of proton motive force), enzymes involved in amino acid (e.g., arginine, lysine, methionine, and branched chain amino acids) biosynthesis and proteins involved in cell envelope re-arrangement (e.g., the products of Clocel_4136, Clocel_4137, Clocel_4144, Clocel_4162 and Clocel_4352, involved in the biosynthesis of saturated fatty acids) and a redistribution of carbon flux through fermentative pathways (acetate and formate yields were increased and decreased, respectively). …”
  4. 12184

    Table_1_Clostridium cellulovorans Proteomic Responses to Butanol Stress.DOCX by Paolo Costa (1396552)

    Published 2021
    “…Several additional metabolic adaptations were triggered by butanol exposure such as the up-regulation of V- and F-type ATPases (involved in ATP synthesis/generation of proton motive force), enzymes involved in amino acid (e.g., arginine, lysine, methionine, and branched chain amino acids) biosynthesis and proteins involved in cell envelope re-arrangement (e.g., the products of Clocel_4136, Clocel_4137, Clocel_4144, Clocel_4162 and Clocel_4352, involved in the biosynthesis of saturated fatty acids) and a redistribution of carbon flux through fermentative pathways (acetate and formate yields were increased and decreased, respectively). …”
  5. 12185

    Table_3_Clostridium cellulovorans Proteomic Responses to Butanol Stress.XLSX by Paolo Costa (1396552)

    Published 2021
    “…Several additional metabolic adaptations were triggered by butanol exposure such as the up-regulation of V- and F-type ATPases (involved in ATP synthesis/generation of proton motive force), enzymes involved in amino acid (e.g., arginine, lysine, methionine, and branched chain amino acids) biosynthesis and proteins involved in cell envelope re-arrangement (e.g., the products of Clocel_4136, Clocel_4137, Clocel_4144, Clocel_4162 and Clocel_4352, involved in the biosynthesis of saturated fatty acids) and a redistribution of carbon flux through fermentative pathways (acetate and formate yields were increased and decreased, respectively). …”
  6. 12186

    Table_4_Clostridium cellulovorans Proteomic Responses to Butanol Stress.XLSX by Paolo Costa (1396552)

    Published 2021
    “…Several additional metabolic adaptations were triggered by butanol exposure such as the up-regulation of V- and F-type ATPases (involved in ATP synthesis/generation of proton motive force), enzymes involved in amino acid (e.g., arginine, lysine, methionine, and branched chain amino acids) biosynthesis and proteins involved in cell envelope re-arrangement (e.g., the products of Clocel_4136, Clocel_4137, Clocel_4144, Clocel_4162 and Clocel_4352, involved in the biosynthesis of saturated fatty acids) and a redistribution of carbon flux through fermentative pathways (acetate and formate yields were increased and decreased, respectively). …”
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    UHPLC-MS profiles and antidiarrheal activity of Quercus coccinea Münchh. and Quercus robur L. employing in vivo technique by mohamed mady (14339685)

    Published 2023
    “…Both extracts significantly decreased the volume of intestinal fluid by 27%, 39.78%, and 50.1% for <em>Q coccinea</em> respectively; and by 38.71%, 51.19%, and 60% for <em>Q robur </em>respectively as compared to the control group. …”
  13. 12193

    DataSheet1_UHPLC-MS profiles and antidiarrheal activity of Quercus coccinea münchh. and Quercus robur L. employing in vivo technique.pdf by Mohamed S. Mady (13151892)

    Published 2023
    “…</p><p>Result and Discussion: Twenty-five and twenty-six polyphenolic compounds were tentatively identified in Q. coccinea and Q. robur AME, respectively. …”