Dermenkephalin example sentences

Related (8): endorphin, enkephalin, pentapeptide, opioid, neuropeptide, neurotransmitter, analgesic, pain-relieving

"Dermenkephalin" Example Sentences

1. Dermenkephalin is a neuropeptide that plays a role in pain modulation.
2. The production of dermenkephalin is regulated by certain neurons in the brain.
3. Dermosuppressive effects of dermenkephalin have been observed in animal studies.
4. Opioid receptors are known to bind dermenkephalin and other similar peptides.
5. The binding affinity of dermenkephalin for mu-opioid receptors is relatively high.
6. Administration of dermenkephalin has been shown to reduce stress-related behaviors in rats.
7. Endogenous levels of dermenkephalin vary depending on factors like stress and pain.
8. The use of dermenkephalin as a therapeutic agent for pain management is currently being explored.
9. Studies suggest that dermenkephalin may have potential for use in treating addiction.
10. The mechanism by which dermenkephalin exerts its analgesic effects is still not fully understood.
11. The cellular signaling pathways through which dermenkephalin activates mu-opioid receptors are complex.
12. The effectiveness of dermenkephalin in reducing pain may depend on various factors like dosage and route of administration.
13. When dermenkephalin binds to mu-opioid receptors, it can activate downstream signaling cascades that modulate pain perception.
14. Research has shown that endogenous levels of dermenkephalin are elevated in response to acute pain.
15. Some researchers speculate that dermenkephalin may have anti-inflammatory effects in addition to its analgesic properties.
16. Dermomorphin, a structurally similar peptide, may interact with opioid receptors in a similar way to dermenkephalin.
17. The discovery of dermenkephalin and other endogenous opioid peptides has greatly improved our understanding of pain regulation.
18. Although dermenkephalin has high affinity for mu-opioid receptors, it may also interact with other opioid receptor subtypes.
19. One study found that dermenkephalin was ineffective in reducing pain in mice lacking mu-opioid receptors.
20. The neurobiological basis of dermenkephalin's effects on emotional processing is not yet well-understood.
21. Dermomorphin and dermenkephalin are both derived from a larger precursor protein called proenkephalin A.
22. Research suggests that dermenkephalin may be more effective in reducing acute pain versus chronic pain.
23. Administering dermenkephalin directly to the brain can be difficult due to its short half-life.
24. The use of dermenkephalin as a potential treatment for opioid addiction is being studied due to its effects on mu-opioid receptors.
25. Some studies suggest that dermenkephalin may be involved in the regulation of body temperature.
26. Mice that are genetically altered to have increased endogenous levels of dermenkephalin exhibit reduced sensitivity to painful stimuli.
27. The discovery of dermenkephalin has led to the development of opioid medications that selectively target mu-opioid receptors.
28. The effects of dermenkephalin on mood and anxiety have been studied in animal models.
29. Research suggests that dermenkephalin is involved in several biological processes beyond pain regulation.
30. Endogenous levels of dermenkephalin may be affected by factors like substance abuse and stress.

Common Phases

1. Dermenkephalin is a naturally occurring opioid peptide.
2. Researchers have studied the effects of dermenkephalin on pain perception.
3. Endogenous dermenkephalin can bind to opioid receptors in the brain and spinal cord.
4. Synthetic versions of dermenkephalin have been developed for potential therapeutic use.
5. Dermenkephalin has been found to have analgesic properties.
6. Studies have shown that dermenkephalin can cross the blood-brain barrier.
7. The discovery of dermenkephalin has contributed to our understanding of the opioid system.
8. Some scientists are investigating the potential of dermenkephalin as a treatment for opioid addiction.
9. Dermenkephalin is one of several endogenous opioid peptides that have been identified.
10. Further research is needed to fully understand the effects of dermenkephalin on the body.

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