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4-(4-Fluorophenyl)-3-hydroxymethyl-1-methyl-piperidine CAS:109887-53-8

4-(4-Fluorophenyl)-3-hydroxymethyl-1-methylpiperidine is an organic compound featuring a piperidine ring substituted with a hydroxymethyl group and a para-fluorophenyl moiety. This specific arrangement imparts unique chemical properties that make it of interest in the field of medicinal chemistry. The compound’s structural characteristics suggest potential biological activity, making it a candidate for further investigation in therapeutic applications.


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Application and Effect:

4-(4-Fluorophenyl)-3-hydroxymethyl-1-methylpiperidine has several important applications, particularly in drug discovery and development: Drug Development: This compound is primarily explored as a lead structure in the development of new pharmaceuticals. Its unique combination of a piperidine core and functional groups may provide valuable insights into designing compounds with improved efficacy against certain diseases, especially those affecting the central nervous system (CNS). Neuropharmacology: Given its structural features, 4-(4-fluorophenyl)-3-hydroxymethyl-1-methylpiperidine may exhibit activity at various neurotransmitter receptors, including those targeting serotonin, norepinephrine, or dopamine pathways. Researching its interactions with these receptors can help elucidate its potential effects in treating mood disorders, anxiety, and other CNS-related conditions. Analgesic Properties: The compound’s structural similarities to known analgesic agents suggest it could be investigated for pain relief applications. By assessing its ability to modulate pain pathways or influence pain perception, researchers may identify a novel non-opioid alternative for managing acute and chronic pain conditions. Chiral Compound Studies: As a compound with significant stereochemical properties, 4-(4-fluorophenyl)-3-hydroxymethyl-1-methylpiperidine can serve as a model in studies focused on chiral synthesis and asymmetric reactions. Understanding how to synthesize this compound with high enantiomeric purity is vital for developing effective drugs where stereochemistry plays a critical role in pharmacological activity. Biochemical Research: In biochemical studies, the compound may be used to investigate molecular interactions and cellular responses. Its ability to influence signaling pathways can provide insights into mechanisms of action for related compounds, enhancing the understanding of various physiological processes and disease mechanisms. Potential Role in Addiction Medicine: Due to its interaction profiles, there is potential for this compound to be explored in addiction medicine. Researching its effects on neurotransmitter systems implicated in substance use disorders may offer new avenues for treatment strategies aimed at reducing dependence and withdrawal symptoms. In summary, 4-(4-Fluorophenyl)-3-hydroxymethyl-1-methylpiperidine represents a versatile compound with promising applications in drug development, neuropharmacology, and biochemical research. Its potential roles in analgesia, chiral synthesis, and addiction medicine underscore its importance in advancing therapeutic strategies in modern healthcare.

Product Sample:

Amino acid powder1
Amino acid powder2

Product Packing:

Amino acid powder3
Amino acid powder4
Amino acid powder5
Amino acid powder6

Additional Information:

Composition C13H18FNO
Assay 99%
Appearance white powder
CAS No.  109887-53-8
Packing Small and bulk
Shelf Life 2 years
Storage Store in cool and dry area
Certification ISO.

 


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