EMD 21657
EMD 21657 is a derivative of Piracetam (HY-B0585). EMD 21657 inhibits LOT compound action potential, and enhances the local anesthetic effect of Hexanol (HY-W032022). EMD 21657 exhibits hemolytic effect, and can be used in research about alcoholic encephalopathy syndrome.
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- CAS. Nr.: 61711-37-3
- Formel: C12H20N2OS
- Molecular Weight:240.37
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Speicherung:
Please store the product under the recommended conditions in the Certificate of Analysis.
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Biologische Aktivität
Beschreibung
Chemical Information
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CAS. Nr. 61711-37-3
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Molecular Weight 240.37
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Formel C12H20N2OS
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SMILES
OC1=C(CCNCC)C(CSC)=CN=C1C
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Versand
Room temperature in continental US; may vary elsewhere.
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Speicherung
Please store the product under the recommended conditions in the Certificate of Analysis.
Protokoll
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Cardiac voltage-sensitive optical mapping
Cardiac voltage-sensitive optical mapping records changes in transmembrane potential from cardiac tissue by staining the preparation with a voltage-sensitive dye and imaging fluorescence changes during electrical activation; the resulting optical action potentials can be used to map activation time, action potential duration, conduction velocity, wavefront propagation, and arrhythmia dynamics. The optical signal represents a relative fluorescence change from a tissue volume rather than a single-cell intracellular recording, so spatial resolution, sampling rate, voltage resolution, optical magnification, light penetration, and motion control must be considered together when interpreting optical action potentials.
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Neuronal voltage-sensitive dye imaging
Neuronal voltage-sensitive dye imaging detects membrane-potential-dependent optical changes from dyes associated with neuronal membranes, enabling optical recording of electrical activity from single neurons, dendrites, axons, spines, or neuronal populations in brain slices and cultured neurons. VSD signals are typically reported as fractional fluorescence or absorbance changes over baseline, such as ΔF/F or ΔI/I, and published protocols use high-speed cameras or photodiode arrays because neuronal voltage signals occur on millisecond time scales. Fast VSD imaging can be applied at two common scales: bulk staining of brain slices to measure circuit-level spatiotemporal activity, and single-cell loading or biolistic delivery to record membrane-potential transients from individual neuronal compartments. Optical signals should be interpreted as membrane-potential-related readouts, and validation by simultaneous electrophysiology or pharmacological controls is recommended when the experimen
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Acute brain-slice whole-cell patch-clamp recording
Acute brain-slice whole-cell patch-clamp recording measures membrane voltage or ionic current from visually targeted cells in living brain slices; after giga-seal formation, the membrane under the pipette is ruptured to provide low-resistance electrical access to the cell interior, enabling current-clamp analysis of excitability and voltage-clamp analysis of synaptic or membrane currents. Acute slices preserve local tissue architecture better than dissociated preparations and allow visually guided recording from defined brain regions or fluorescently labeled cells; however, whole-cell access also permits exchange between pipette solution and cytoplasm, so intracellular dialysis must be considered when interpreting signaling-dependent phenomena.
Reinheit & Dokumentation
Verweise
[1]. Richards CD, et al., Degenerate perturbations of protein structure as the mechanism of anaesthetic action. Nature. 1978 Dec 21-28;276(5690):775-9. [Content Brief]
[2]. Saletu B, et al., Treatment of the alcoholic organic brain syndrome with EMD 21657. A derivative of a pyritinolmetabolite: double-blind clinical, quantitative EEG and psychometric studies. Int Pharmacopsychiatry. 1978;13(3):177-92. [Content Brief]
Calculators
Konzentration (Stammlösung) × Volumen (Stammlösung) = Konzentration (Ziellösung) × Volumen (Ziellösung)