2-Chloro-N6-cyclopentyladenosine 2-Chloro-N6-cyclopentyladenosine

  • Product Code: 116548
  CAS:    37739-05-2
Molecular Weight: 369.8000 g./mol Molecular Formula: C₁₅H₂₀ClN₅O₄
EC Number: MDL Number: MFCD00078574
Melting Point: Boiling Point: 656.1±65.0 °C(Predicted)
Density: 1.87±0.1 g/cm3(Predicted) Storage Condition: 2-8°C, sealed, dry
Product Description: This compound is primarily used in research settings as a selective agonist for adenosine A1 receptors. It is valuable in studying the physiological and pharmacological roles of these receptors in various tissues, including the heart, brain, and kidneys. Its application helps in understanding adenosine-mediated processes such as neurotransmission, cardiovascular regulation, and renal function. Additionally, it is utilized in experimental models to investigate potential therapeutic targets for conditions like arrhythmias, ischemia, and neurodegenerative diseases. Its selectivity makes it a useful tool for dissecting the specific effects of A1 receptor activation in complex biological systems.
Product Specification:
Test Specification
Appearance White To Light Yellow And Faint Beige To Light Beige Powder
Purity (%) 97.5-100
Solubility (Solvent) Methanol
Solubility (Conc) 19.60 mg/ml-20.40 mg/ml
Solubility (Turbidity) Clear
Solubility (Color) Colorless To Faint Yellow
Infrared Spectrum Conforms To Structure
NMR Conforms To Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.010 10-20 days $505.73
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0.025 10-20 days $1,012.25
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0.100 10-20 days $2,835.01
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2-Chloro-N6-cyclopentyladenosine 2-Chloro-N6-cyclopentyladenosine
This compound is primarily used in research settings as a selective agonist for adenosine A1 receptors. It is valuable in studying the physiological and pharmacological roles of these receptors in various tissues, including the heart, brain, and kidneys. Its application helps in understanding adenosine-mediated processes such as neurotransmission, cardiovascular regulation, and renal function. Additionally, it is utilized in experimental models to investigate potential therapeutic targets for conditions like arrhythmias, ischemia, and neurodegenerative diseases. Its selectivity makes it a useful tool for dissecting the specific effects of A1 receptor activation in complex biological systems.
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