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largest decrease » largest decreases (Expand Search), larger decrease (Expand Search), marked decrease (Expand Search)
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laser decrease » larger decrease (Expand Search), water decreases (Expand Search), teer decrease (Expand Search)
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largest decrease » largest decreases (Expand Search), larger decrease (Expand Search), marked decrease (Expand Search)
linear decrease » linear increase (Expand Search)
laser decrease » larger decrease (Expand Search), water decreases (Expand Search), teer decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
a largest » _ largest (Expand Search), a large (Expand Search), a latest (Expand Search)
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10861
C2GnT1 gene knockdown decreases C2-O-sLe<sup>X</sup> glycoproteins and C2GnT1 activity.
Published 2013“…<p>(A) C2GnT1 suppression by shRNA resulted in decreased mRNA levels of C2GnT1 but not FucT-III in LS174T cells, (scrambled shRNA vector, lane 1, and C2GnT1 shRNA vector, lane 2). …”
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10862
Data_Sheet_1_Marathon Running Increases Synthesis and Decreases Catabolism of Joint Cartilage Type II Collagen Accompanied by High-Energy Demands and an Inflamatory Reaction.PDF
Published 2021“…Accompanied by an increase in type II collagen cartilage fibrils synthesis (sPIINP increase) and a decrease in its catabolism (sC2C decrease), without changes in non-collagenous cartilage metabolism (sCOMP, sC846, and sYKL-40). …”
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10863
Secondary Hypervalent I(III)···O Interactions: Synthesis and Structure of Hypervalent Complexes of Diphenyl-λ<sup>3</sup>-iodanes with 18-Crown-6
Published 2002“…Substitution of an electron-withdrawing group onto the <i>para</i> position of Ph<sub>2</sub>IBF<sub>4</sub> tends to increase in the complex stability. A linear Hammett relationship (ρ = 0.59) between log <i>K</i><sub>a</sub> and σ<sub>p</sub><sup>+</sup> values of substituents indicates that the diaryl-λ<sup>3</sup>-iodanes with electropositive iodine(III) interact more efficiently with 18C6. …”
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10864
Secondary Hypervalent I(III)···O Interactions: Synthesis and Structure of Hypervalent Complexes of Diphenyl-λ<sup>3</sup>-iodanes with 18-Crown-6
Published 2002“…Substitution of an electron-withdrawing group onto the <i>para</i> position of Ph<sub>2</sub>IBF<sub>4</sub> tends to increase in the complex stability. A linear Hammett relationship (ρ = 0.59) between log <i>K</i><sub>a</sub> and σ<sub>p</sub><sup>+</sup> values of substituents indicates that the diaryl-λ<sup>3</sup>-iodanes with electropositive iodine(III) interact more efficiently with 18C6. …”
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10865
Secondary Hypervalent I(III)···O Interactions: Synthesis and Structure of Hypervalent Complexes of Diphenyl-λ<sup>3</sup>-iodanes with 18-Crown-6
Published 2002“…Substitution of an electron-withdrawing group onto the <i>para</i> position of Ph<sub>2</sub>IBF<sub>4</sub> tends to increase in the complex stability. A linear Hammett relationship (ρ = 0.59) between log <i>K</i><sub>a</sub> and σ<sub>p</sub><sup>+</sup> values of substituents indicates that the diaryl-λ<sup>3</sup>-iodanes with electropositive iodine(III) interact more efficiently with 18C6. …”
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10866
Secondary Hypervalent I(III)···O Interactions: Synthesis and Structure of Hypervalent Complexes of Diphenyl-λ<sup>3</sup>-iodanes with 18-Crown-6
Published 2002“…Substitution of an electron-withdrawing group onto the <i>para</i> position of Ph<sub>2</sub>IBF<sub>4</sub> tends to increase in the complex stability. A linear Hammett relationship (ρ = 0.59) between log <i>K</i><sub>a</sub> and σ<sub>p</sub><sup>+</sup> values of substituents indicates that the diaryl-λ<sup>3</sup>-iodanes with electropositive iodine(III) interact more efficiently with 18C6. …”
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10867
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10868
Multiomics Study of Bacterial Growth Arrest in a Synthetic Biology Application
Published 2021“…We investigated the scalability of a previously developed growth switch based on external control of RNA polymerase expression. …”
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10869
Multiomics Study of Bacterial Growth Arrest in a Synthetic Biology Application
Published 2021“…We investigated the scalability of a previously developed growth switch based on external control of RNA polymerase expression. …”
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10870
Multiomics Study of Bacterial Growth Arrest in a Synthetic Biology Application
Published 2021“…We investigated the scalability of a previously developed growth switch based on external control of RNA polymerase expression. …”
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10871
Multiomics Study of Bacterial Growth Arrest in a Synthetic Biology Application
Published 2021“…We investigated the scalability of a previously developed growth switch based on external control of RNA polymerase expression. …”
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10872
Multiomics Study of Bacterial Growth Arrest in a Synthetic Biology Application
Published 2021“…We investigated the scalability of a previously developed growth switch based on external control of RNA polymerase expression. …”
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10873
Biodegradability analysis of Gel/MWCNT nanocomposites in water as a function of time.
Published 2023Subjects: -
10874
Multiomics Study of Bacterial Growth Arrest in a Synthetic Biology Application
Published 2021“…We investigated the scalability of a previously developed growth switch based on external control of RNA polymerase expression. …”
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10875
Multiomics Study of Bacterial Growth Arrest in a Synthetic Biology Application
Published 2021“…We investigated the scalability of a previously developed growth switch based on external control of RNA polymerase expression. …”
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10876
Dystrophic neurites relative to Aβ42 are not reduced by nimodipine treatment.
Published 2022“…The decrease in LAMP1:Aβ42 ratio with increasing Aβ42 area was similar between vehicle and nimodipine-treated mice, with no significant differences between the two groups for any size range of plaques. …”
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10877
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10878
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10879
Multiomics Study of Bacterial Growth Arrest in a Synthetic Biology Application
Published 2021“…We investigated the scalability of a previously developed growth switch based on external control of RNA polymerase expression. …”
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10880
Multiomics Study of Bacterial Growth Arrest in a Synthetic Biology Application
Published 2021“…We investigated the scalability of a previously developed growth switch based on external control of RNA polymerase expression. …”