Conolidine’s analgesic effects stem from its interaction with non-opioid pain pathways. As opposed to opioids, which bind to µ-opioid receptors within the central nervous system, conolidine modulates alternate molecular targets. A Science Advances study found that conolidine interacts While using the atypical chemokine receptor ACKR3/CXCR7, whic… Read More


When you make a positive or adverse comment about an item, Observe if you've got a economic curiosity inside the product or in a competing solution.Developments in the understanding of the mobile and molecular mechanisms of pain and the traits of pain have led to the invention of novel therapeutic avenues for the administration of Long-term pain. C… Read More


Even though the opiate receptor depends on G protein coupling for signal transduction, this receptor was discovered to make use of arrestin activation for internalization with the receptor. Otherwise, the receptor promoted no other signaling cascades (59) Modifications of conolidine have resulted in variable enhancement in binding efficacy. This bi… Read More