Dibutyryl Cyclic Adenosine Monophosphate Sodium Salt: Properties & Applications
Explore the cardiac stimulant and vasodilatory benefits of this essential cyclic AMP analog.
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Dibutyryl Cyclic Adenosine Monophosphate Sodium Salt
This Dibutyryl Cyclic Adenosine Monophosphate Sodium Salt, also known as dB-CAMP, is a vital derivative of cyclic-AMP. It is recognized for its cardiac stimulant and peripheral vasodilatory properties, making it a valuable compound in pharmaceutical research and applications related to cardiovascular health.
- Discover the cardiac stimulant properties of dibutyryl cyclic adenosine monophosphate sodium salt, essential for research into heart conditions.
- Learn about dB-CAMP sodium salt's role in peripheral vasodilatory effects, crucial for improving blood flow.
- Understand how this cyclic AMP analog can be useful in cardiac insufficiency, especially in post-operative recovery.
- Investigate the mechanism of stimulating cAMP-dependent protein kinase for enhanced cellular signaling.
Key Advantages
Cardiac Support
Leverage the cardiac stimulant capabilities of dibutyryl cyclic adenosine monophosphate sodium salt for advanced cardiovascular research.
Vasodilation Effects
Benefit from the peripheral vasodilatory properties of dB-CAMP sodium salt, aiding in circulation studies.
Research Versatility
Utilize this cyclic AMP analog as a key biochemical reagent, supporting diverse research into cellular pathways.
Key Applications
Cardiovascular Research
Explore the therapeutic potential of dibutyryl cyclic adenosine monophosphate sodium salt in treating cardiac insufficiency and related conditions.
Vasodilator Studies
Investigate the mechanisms behind peripheral vasodilatory properties with dB-CAMP sodium salt, a critical tool for pharmacological research.
Biochemical Research
Employ this high-purity compound as a cyclic AMP analog to study protein kinase activation and other cellular processes.
Pharmaceutical Development
Utilize dibutyryl cyclic adenosine monophosphate sodium salt as a pharmaceutical intermediate in the development of new cardiac medications.