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Hexarelin

Examorelin, HEX

Quick Stats
Studies 233
Trials 61
Score 1
2001 pubmed

EP 91073 prevents EP 80661-induced penile erection: new evidence for the existence of specific EP peptide receptors mediating penile erection.

Melis. M R MR; Succu. S S; Spano. M S MS; Deghenghi. R R; Argiolas. A A

Key Findings

  • EP 91073 (0.2‑1 µg) prevents penile erection induced by EP 80661 or EP 60761 in the hypothalamic paraventricular nucleus
  • EP 91073 does not block erections caused by apomorphine, oxytocin, or NMDA
  • The blockade is associated with reduced nitric‑oxide production, implying a specific EP peptide receptor involvement

Practical Outcomes

  • For most health‑optimizing biohackers, this study offers little direct use. It shows that certain hexarelin analogues can act as receptor‑specific antagonists in rats, but there’s no clear protocol or dosage for humans, nor evident benefits for longevity, metabolism, or performance.

Summary

In rats, a hexarelin‑related peptide called EP 91073 can block erections caused by two other EP peptides when injected into a brain area that controls sexual function, but it doesn't stop erections triggered by dopamine, oxytocin, or NMDA. This suggests EP 91073 works as an antagonist at a specific receptor linked to those EP peptides and reduces related nitric‑oxide signals.

Abstract

The effect of EP 91073, EP 51389, EP 70555 and EP 51216, peptide analogues of the growth hormone releasing peptide hexarelin, on penile erection induced by EP 80661 or EP 60761 injected into the paraventricular nucleus of the hypothalamus, was studied in male rats. Of the above peptides only EP 91073 (0.2-1 microg) was found capable of reducing penile erection induced by EP 80661 or EP 60761, when given into the paraventricular nucleus. Despite its ability to prevent EP peptide-induced penile erection, EP 91073 (1 microg) was unable to prevent penile erection induced by the dopamine receptor agonist apomorphine (50 ng), oxytocin (30 ng) and N-methyl-D-aspartic acid (50 ng), when given into the paraventricular nucleus 10 min prior to the above substances. The EP 91073-induced prevention of penile erection occurred with a reduction in the increase in nitric oxide production that occurs in the paraventricular nucleus concomitant to penile erection induced by EP 80661 and EP 60761, as measured by intracerebral vertical microdialysis. The present results are in line with the hypothesis that EP 80661 and EP 60761 induce penile erection by activating specific receptors in the paraventricular nucleus, located possibly in oxytocinergic neurons mediating penile erection, and show that EP 91073 acts as an antagonist of these EP peptide receptors mediating penile erection.

Study Information

Provider

pubmed

Year

2001

DOI

10.1016/s0028-3908(01)00059-4