Nonclassical Crystallization of Calcium Hydroxide via Amorphous Precursors and the Role of Additives | Crystal Growth & Design
Calcium signaling in plant immunity: a spatiotemporally controlled symphony: Trends in Plant Science
Design and synthesis of novel anti-hyperalgesic agents based on 6-prenylnaringenin as the T-type calcium channel blockers - ScienceDirect
Cyclic Peptides as T-Type Calcium Channel Blockers: Characterization and Molecular Mapping of the Binding Site | ACS Pharmacology & Translational Science
Cyclic Peptides as T-Type Calcium Channel Blockers: Characterization and Molecular Mapping of the Binding Site | ACS Pharmacology & Translational Science
Molecules | Free Full-Text | Synthesis of Dihydropyrimidines: Isosteres of Nifedipine and Evaluation of Their Calcium Channel Blocking Efficiency
Molecules | Free Full-Text | Synthesis of Dihydropyrimidines: Isosteres of Nifedipine and Evaluation of Their Calcium Channel Blocking Efficiency
A turquoise fluorescence lifetime-based biosensor for quantitative imaging of intracellular calcium | Nature Communications
Cyclic Peptides as T-Type Calcium Channel Blockers: Characterization and Molecular Mapping of the Binding Site | ACS Pharmacology & Translational Science
PDF) Preadmission Use of Calcium Channel Blockers and Outcomes After Hospitalization With Pneumonia: A Retrospective Propensity-Matched Cohort Study
Cyclic Peptides as T-Type Calcium Channel Blockers: Characterization and Molecular Mapping of the Binding Site | ACS Pharmacology & Translational Science
Cyclic Peptides as T-Type Calcium Channel Blockers: Characterization and Molecular Mapping of the Binding Site | ACS Pharmacology & Translational Science
Molecules | Free Full-Text | Synthesis of Dihydropyrimidines: Isosteres of Nifedipine and Evaluation of Their Calcium Channel Blocking Efficiency
Molecules | Free Full-Text | Synthesis of Dihydropyrimidines: Isosteres of Nifedipine and Evaluation of Their Calcium Channel Blocking Efficiency
Central vestibular tuning arises from patterned convergence of otolith afferents - Neuroscience
PDF) Discovery of novel bridged tetrahydronaphthalene derivatives as potent T/L-type calcium channel blockers
Remote activation of cellular signaling | Science
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