This chemical compound is categorized as a benzodiazepine and possesses powerful muscle relaxant, sedative, and hypnotic effects. It is frequently prescribed for the management of seizure disorders, anxiety, and insomnia.
Specification
CAS No. 171489-59-1
Melting point: 230-232°C
Boiling point: 627.5±55.0°C (Predicted)
Density:1.445
Storage: Conditions Inertatmosphere, 2-8°C
Chloroform has a slight solubility, as does DChemicalbookMSO and EthylAcetate. These substances can be dissolved to some extent, but not fully.
Form: Solid
Acidity coefficient: (pKa) 16.25±0.60 (Predicted)
Color:White to Pale Orange
Application
1R3R-Methyl-1Benzod-13-diozol-5-yl-2-2-chloroacetyl-2349-tetrahydro-1H-pyrido34-bindole-3-carboxylate is primarily administered as a CNS depressant, effectively soothing the central nervous system. Its main applications lie in alleviating anxiety, promoting sleep, and managing seizure disorders. Moreover, it is utilized as a pre-anesthetic medication to mitigate anxiety and induce sedation.
The compound (1,R,3R)-Methyl-1Benzo(d)-1,3-diozol-5-yl)-2-(2-chloroacetyl)-2,3,4,9-tetra hydro-1H-pyrido(3,4-b_indole-3-carboxylate has various applications due to its unique chemical structure. It possesses a methyl group, a benzo[d]-1,3-diozol-5-yl moiety, and a 2-(2-chloroacetyl)-2,3,4,9-tetra hydro-1H-pyrido(3,4-b_indole-3-carboxylate substituent.
This compound has shown significant potential in pharmaceutical research, particularly in the development of new drugs and therapies. The presence of the methyl group and the benzo[d]-1,3-diozol-5-yl moiety contributes to its pharmacological activity, allowing it to interact with specific biological targets. Additionally, the 2-(2-chloroacetyl)-2,3,4,9-tetra hydro-1H-pyrido(3,4-b_indole-3-carboxylate substituent enhances the compound's stability and bioavailability.
The chemical features of (1,R,3R)-Methyl-1Benzo(d)-1,3-diozol-5-yl)-2-(2-chloroacetyl)-2,3,4,9-tetra hydro-1H-pyrido(3,4-b_indole-3-carboxylate make it a promising candidate for treating various diseases. Its potential applications include targeting specific receptors or enzymes involved in cancer, neurological disorders, and inflammation. Furthermore, its unique structure allows for modification and optimization to improve its potency and selectivity against specific disease targets.
Overall, the compound (1,R,3R)-Methyl-1Benzo(d)-1,3-diozol-5-yl)-2-(2-chloroacetyl)-2,3,4,9-tetra hydro-1H-pyrido(3,4-b_indole-3-carboxylate holds great potential in the field of medicinal chemistry and drug development. Further studies and chemical optimizations can pave the way for its application in innovative therapeutic interventions.
The intermediates of tadalafil are versatile in their applications and can serve as both organic synthesis intermediates and pharmaceutical intermediates. These intermediates find widespread use in research and development activities in laboratories, as well as in chemical and pharmaceutical synthesis processes. They play an essential role in the synthesis of tadalafil, which is used in the treatment of erectile dysfunction and pulmonary hypertension. Furthermore, tadalafil intermediates are being increasingly studied for potential applications in other areas such as cancer treatment and antiviral drugs. Overall, the high demand for tadalafil intermediates underscores their importance in various industries and research fields.
Storage
To ensure optimal stability and freshness, it is vital to store 1R3R-Methyl-1Benzod-13-diozol-5-yl-2-2-chloroacetyl-2349-tetrahydro-1H-pyrido34-bindole-3-carboxylate in a cool and dry location, avoiding exposure to direct sunlight and heat. Keeping it in a well-sealed container is recommended, and it should be kept away from minors and animals. The ideal storage temperature is at room temperature, which typically falls between 20-25°C, and it is essential to protect the substance from moisture. Be sure to adhere to the manufacturer's instructions and expiry dates when storing this chemical.
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