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Catalog Number:
44580
8-Chloro-1-(3-chloropropyl)theobromine
Purity:
≥ 95% (HPLC)
Synonym(s):
8-Chloro-1-(3-chloropropyl)-3,7-dimethyl-1H-purine-2,6(3H,7H-dione
Documents
$188.98 /5G
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Product Information

8-Chloro-1-(3-chloropropyl)theobromine is a specialized compound that exhibits unique properties beneficial for various applications in the pharmaceutical and chemical industries. This derivative of theobromine is recognized for its potential as a pharmacological agent, particularly in the development of therapeutic drugs targeting respiratory conditions and cardiovascular health. Its structural modifications enhance its bioactivity, making it a subject of interest in medicinal chemistry research.

In addition to its pharmaceutical applications, 8-Chloro-1-(3-chloropropyl)theobromine can serve as a valuable intermediate in the synthesis of other bioactive compounds, facilitating the creation of novel therapeutic agents. Researchers and industry professionals can leverage its unique properties to explore innovative solutions in drug formulation and development. With its promising applications, this compound stands out as a significant contributor to advancements in medicinal chemistry and therapeutic innovation.

Synonyms
8-Chloro-1-(3-chloropropyl)-3,7-dimethyl-1H-purine-2,6(3H,7H-dione
Purity
≥ 95% (HPLC)
Molecular Formula
C10H12Cl2N4O2
Molecular Weight
291.13
Melting Point
144 - 148 °C
Appearance
White to orange to green powder to crystal
Conditions
Store at 2 - 8 °C
General Information
Synonyms
8-Chloro-1-(3-chloropropyl)-3,7-dimethyl-1H-purine-2,6(3H,7H-dione
Purity
≥ 95% (HPLC)
Molecular Formula
C10H12Cl2N4O2
Molecular Weight
291.13
Melting Point
144 - 148 °C
Appearance
White to orange to green powder to crystal
Conditions
Store at 2 - 8 °C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

8-Chloro-1-(3-chloropropyl)theobromine is widely utilized in research focused on:

  • Pharmaceutical Development: This compound is explored for its potential as a therapeutic agent, particularly in the treatment of various diseases due to its unique structural properties that may enhance bioactivity.
  • Neuroscience Research: It is studied for its effects on neurotransmitter systems, providing insights into cognitive function and potential applications in neurodegenerative disease therapies.
  • Plant Growth Regulation: The compound may serve as a growth regulator in agricultural applications, helping to improve crop yield and resilience against environmental stress.
  • Biochemical Assays: Researchers utilize it in assays to study enzyme interactions and metabolic pathways, aiding in the understanding of cellular processes.
  • Material Science: It is investigated for its properties in developing new materials, particularly in coatings or composites that require enhanced chemical resistance.

Citations