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Neuroscience Neurotransmission Receptors / Channels Potassium Channels

Diazoxide, KIR6.x (ATP-sensitive K+ channel) activator (ab120266)

Price and availability

36 854 ₸

Availability

Order now and get it on Thursday February 25, 2021

Key features and details

  • Selective KIR6.x (ATP-sensitive K+ channel) activator
  • CAS Number: 364-98-7
  • Purity: > 99%
  • Soluble in DMSO to 100 mM
  • Form / State: Solid
  • Source: Synthetic

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Overview

  • Product name

    Diazoxide, KIR6.x (ATP-sensitive K+ channel) activator
  • Description

    Selective KIR6.x (ATP-sensitive K+ channel) activator
  • Biological description

    Selective KIR6.x (KATP) activator; antihypertensive.

  • Purity

    > 99%
  • CAS Number

    364-98-7
  • Chemical structure

    Chemical Structure

Properties

  • Chemical name

    7-Chloro-3-methyl-2H-1,2,4-benzothiadiazine 1,1-dioxide
  • Molecular weight

    230.67
  • Molecular formula

    C8H7ClN2O2S
  • PubChem identifier

    3019
  • Storage instructions

    Store at Room Temperature. The product can be stored for up to 12 months.
  • Solubility overview

    Soluble in DMSO to 100 mM
  • Handling

    Wherever possible, you should prepare and use solutions on the same day. However, if you need to make up stock solutions in advance, we recommend that you store the solution as aliquots in tightly sealed vials at -20°C. Generally, these will be useable for up to one month. Before use, and prior to opening the vial we recommend that you allow your product to equilibrate to room temperature for at least 1 hour.

    Need more advice on solubility, usage and handling? Please visit our frequently asked questions (FAQ) page for more details.

  • SMILES

    Clc1ccc2N=C(C)NS(=O)(=O)c2c1
  • Source

    Synthetic

  • Research areas

    • Neuroscience
    • Neurotransmission
    • Receptors / Channels
    • Potassium Channels
    • Cardiovascular
    • Lipids / Lipoproteins
    • Lipid Metabolism
    • Cytochromes
    • Cardiovascular
    • Hypoxia
    • Associated Proteins
    • Signal Transduction
    • Metabolism
    • Energy Metabolism
    • Signal Transduction
    • Metabolism
    • Plasma Membrane
    • Channels
    • Neuroscience
    • Neurology process
    • Metabolism
    • Signal Transduction
    • Metabolism
    • Drug metabolism
    • Cardiovascular
    • Atherosclerosis
    • Diabetes associated
    • Cardiovascular
    • Heart
    • Cardiac arrhythmias
    • Cancer
    • Cancer Metabolism
    • Metabolic signaling pathway
    • Integration of energy metabolism
    • Biochemicals
    • Chemical Type
    • Biochemicals
    • Biochemicals
    • Pharmacology
    • Ion Channels
    • Potassium
    • Activators
    • Metabolism
    • Pathways and Processes
    • Metabolic signaling pathways
    • Lipid and lipoprotein metabolism
    • Lipases
    • Metabolism
    • Pathways and Processes
    • Metabolic signaling pathways
    • Drug metabolism
    • Metabolism
    • Pathways and Processes
    • Metabolic signaling pathways
    • Energy transfer pathways
    • Energy Metabolism
    • Metabolism
    • Pathways and Processes
    • Metabolic signaling pathways
    • Energy transfer pathways
    • Integration of energy
    • Metabolism
    • Pathways and Processes
    • Mitochondrial Metabolism
    • Cytochromes
    • Metabolism
    • Types of disease
    • Diabetes
    • Metabolism
    • Types of disease
    • Heart disease
    • Biochemicals
    • Research Area
    • Diabetes
    • Potassium
    • Activators
    • Biochemicals
    • Research Area
    • Heart disease
    • Potassium
    • Activators
    • Biochemicals
    • Research Area
    • Hypertension
    • Potassium
    • Activators
    • Biochemicals
    • Research Area
    • Obesity
    • Potassium
    • Activators
    • Biochemicals
    • Research Area
    • Pain & inflammation
    • Potassium
    • Activators
    • Biochemicals
    • Research Area
    • Respiratory disease
    • Potassium
    • Activators
    • Biochemicals
    • Research Area
    • Stroke
    • Potassium
    • Activators

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