JJC8-088
Chemical compound
JJC8-088 is a chemical compound that acts as a potent and selective antagonist of the sigma-1 receptor. It is primarily used in scientific research to explore the role of sigma receptors in various physiological and pathological processes.
Chemical Properties
JJC8-088 is a synthetic compound with a complex chemical structure. The molecular formula of JJC8-088 is C22H28FN3O2, and it has a molecular weight of 385.48 g/mol. The compound is characterized by its high affinity for the sigma-1 receptor, which is a chaperone protein involved in modulating ion channels and other cellular processes.
Pharmacology
JJC8-088 is known for its high selectivity towards the sigma-1 receptor, with minimal activity at other receptor sites. This selectivity makes it a valuable tool in research settings, allowing scientists to study the specific effects of sigma-1 receptor modulation without interference from other receptor systems.
Mechanism of Action
The sigma-1 receptor is involved in a variety of cellular functions, including calcium signaling, neuroprotection, and modulation of neurotransmitter systems. JJC8-088 binds to the sigma-1 receptor, inhibiting its activity and thereby affecting these cellular processes. This can lead to changes in neuronal excitability, protection against cellular stress, and modulation of pain perception.
Research Applications
JJC8-088 is used extensively in preclinical research to investigate the role of sigma-1 receptors in various conditions, such as neuropathic pain, depression, and neurodegenerative diseases. By blocking the sigma-1 receptor, researchers can study the potential therapeutic effects of sigma-1 receptor antagonism in these conditions.
Potential Therapeutic Uses
While JJC8-088 itself is not used clinically, its ability to modulate sigma-1 receptor activity suggests potential therapeutic applications for sigma-1 receptor antagonists in treating conditions like chronic pain, Alzheimer's disease, and schizophrenia.
Safety and Toxicology
As with many research chemicals, the safety profile of JJC8-088 is not fully established. It is primarily used in controlled laboratory settings, and its effects in humans are not well-documented. Researchers handling JJC8-088 must follow appropriate safety protocols to minimize exposure and potential risks.
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Contributors: Prab R. Tumpati, MD