Showing 1,261 - 1,280 results of 43,867 for search '(( 20 ((c decrease) OR (a decrease)) ) OR ( 5 ((nn decrease) OR (teer decrease)) ))', query time: 1.03s Refine Results
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    Cell proliferation was decreased more by combination treatment of SLCP and BBR than individual treatments. by Panchanan Maiti (1459852)

    Published 2019
    “…<b>B-C:</b> Both U-87MG and U-251MG cells showed a significant decrease in immunofluorescent intensity (arbitrary unit) after treatment with SLCP and BBR. …”
  4. 1264

    DHT increases whereas orchidectomy decreases the weight and cross sectional area of hindlimb muscles. by Young-Eun Yoo (323357)

    Published 2013
    “…Sample size is indicated in ( ) for each group. ## <i>p</i><0.01, ### <i>p</i><0.01 (compared with age-matched WT mice), ** <i>p</i><0.01, ***<i>p</i><0.001 (compared with control SOD1 mice). <b>C:</b> DHT increased the cross-sectional area of TA muscle by 22.3% (3.23±0.19 mm<sup>2</sup>, n = 3, <i>p</i> = 0.034), whereas orchidectomy decreased it by 20.8% (2.09±0.11 mm<sup>2</sup>, n = 3, <i>p</i> = 0.008) compared with control SOD1 mice (2.64±0.03 mm<sup>2</sup>, n = 3). …”
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    Acute cocaine administration decreased pAkt-Thr308 in the caudate putamen of mice. by Jonathan S. Miller (519857)

    Published 2014
    “…<p>Levels of pAkt-Thr308 and pAkt-Ser473 were measured by Western blot analysis in mouse caudate putamen, nucleus accumbens and frontal cortex obtained 30 minutes following a single injection of cocaine (20 mg/kg). (1A) Cocaine significantly decreased pAkt-Thr308 (***p<0.001) and (1B) had no effect on pAkt-Ser473 in the caudate putamen. (1C&D) Levels of pAkt-Thr308 and pAkt-Ser473 were not changed in the nucleus accumbens or (1E&F) frontal cortex after cocaine administration. …”
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    Decreased plasmatic spermidine and increased spermine in mild cognitive impairment and Alzheimer’s disease patients by HELENA P. G. JOAQUIM (8047790)

    Published 2019
    “…<div><p>Abstract Background Current evidence suggests that upregulation of polyamines system plays a role both in cognitive deficit and synaptic loss observed in Alzheimer’s disease (AD). …”
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