Search alternatives:
ng decrease » nn decrease (Expand Search), _ decrease (Expand Search), we decrease (Expand Search)
nm decrease » nn decrease (Expand Search), _ decrease (Expand Search), we decrease (Expand Search)
ns decrease » nn decrease (Expand Search), _ decrease (Expand Search), we decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
50 ns » 50 ms (Expand Search)
5 nm » 5 mm (Expand Search), 5 cm (Expand Search)
ng decrease » nn decrease (Expand Search), _ decrease (Expand Search), we decrease (Expand Search)
nm decrease » nn decrease (Expand Search), _ decrease (Expand Search), we decrease (Expand Search)
ns decrease » nn decrease (Expand Search), _ decrease (Expand Search), we decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
50 ns » 50 ms (Expand Search)
5 nm » 5 mm (Expand Search), 5 cm (Expand Search)
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Selective TASK‑1 Inhibitor with a Defined Structure–Activity Relationship Reduces Cancer Cell Proliferation and Viability
Published 2022“…Mutation of seven residues to A (I118A, L122A, F125A, Q126A, L232A, I235A, and L239A) markedly decreased the F3-induced inhibition of TASK-1 channels, consistent with the molecular modeling predictions. …”
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Selective TASK‑1 Inhibitor with a Defined Structure–Activity Relationship Reduces Cancer Cell Proliferation and Viability
Published 2022“…Mutation of seven residues to A (I118A, L122A, F125A, Q126A, L232A, I235A, and L239A) markedly decreased the F3-induced inhibition of TASK-1 channels, consistent with the molecular modeling predictions. …”
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Insufficient disulfide bond formation results in a decrease in alkaline phosphatase activity and accumulation of the reduced form of DegP in LCFA-utilizing cells.
Published 2020“…The band corresponding to AP is shown (Mol. wt. ~50 kDa). <i>(C) Compromised DsbA-DsbB machinery is responsible for the decrease in alkaline phosphatase activity in cells utilizing oleate</i>. …”
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Machine Learning Accelerates Discovery of Optimal Colloidal Quantum Dot Synthesis
Published 2019Subjects: -
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