Search alternatives:
greatest decrease » greater decrease (Expand Search), treatment decreased (Expand Search), greater increase (Expand Search)
largest decrease » largest decreases (Expand Search), larger decrease (Expand Search), marked decrease (Expand Search)
linear decrease » linear increase (Expand Search)
mean decrease » a decrease (Expand Search)
greatest decrease » greater decrease (Expand Search), treatment decreased (Expand Search), greater increase (Expand Search)
largest decrease » largest decreases (Expand Search), larger decrease (Expand Search), marked decrease (Expand Search)
linear decrease » linear increase (Expand Search)
mean decrease » a decrease (Expand Search)
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11041
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11042
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11043
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11044
The forest plots of the effect of probiotics on the level of IFN-γ by ELISA (A) and RT-PCR (B) methods.
Published 2025“…Overall, probiotics decreased IFN-γ production with Std diff in means between probiotics and control groups was -2.492 with ELISA test (A) and -2.453 with RT-PCR test (B).…”
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11045
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11046
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11047
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11048
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11049
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11050
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11051
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11052
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11053
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11054
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11055
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11056
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11057
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11058
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11059
Self-Assembly of Reactive Linear Cu<sub>3</sub> Building Blocks for Supramolecular Coordination Chemistry and Their Reactivity toward E<sub><i>n</i></sub> Ligand Complexes
Published 2016“…This study describes the selective synthesis of linear, trinuclear, halide-bridged Cu<sup>I</sup> complexes [Cu<sub>3</sub>(μ-X)<sub>2</sub>(μ-dpmp)<sub>2</sub>(MeCN)<sub>2</sub>]<sup>+</sup> (<b>1a</b>: X = Cl; <b>1b</b>: X = Br; <b>1c</b>: X = I) stabilized by the tridentate dpmp ligand obtained by self-assembly reactions in THF/MeCN. …”
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11060