Menu
Peptide Database
Results
No peptides found
Featured

Use search to browse all 100+ peptides

GHRP-6

Growth Hormone Releasing Peptide-6, Growth hormone-releasing hexapeptide, His-D-Trp-Ala-Trp-D-Phe-Lys-NH2

Quick Stats
Studies 702
Trials 0
Score 2
2018 pubmed 55 citations

Down-regulation of ghrelin receptors on dopaminergic neurons in the substantia nigra contributes to Parkinson's disease-like motor dysfunction.

Suda. Yukari Y; Kuzumaki. Naoko N; Sone. Takefumi T; Narita. Michiko M; Tanaka. Kenichi K; Hamada. Yusuke Y; Iwasawa. Chizuru C; Shibasaki. Masahiro M; Maekawa. Aya A; Matsuo. Miri M; Akamatsu. Wado W; Hattori. Nobutaka N; Okano. Hideyuki H; Narita. Minoru M

Key Findings

  • s patients.",
  • ,

Practical Outcomes

  • For biohackers, the data hint that boosting ghrelin signaling (e.g., using GHRP‑6 as an agonist) might support dopamine neuron health, but the research is early‑stage and done in cells and mice. It does not provide dosing guidelines or proven benefits for humans, so it’s more a mechanistic insight than a ready‑to‑use protocol.

Summary

The study found that the brain's ghrelin receptor (GHSR) is much lower in dopamine neurons from Parkinson's patients, and blocking this receptor in healthy mice caused motor problems. This suggests that having enough active ghrelin signaling may be important for keeping dopamine neurons healthy.

Abstract

Ghrelin exerts a wide range of physiological actions throughout the body and appears to be a promising target for disease therapy. Endogenous ghrelin receptors (GHSRs) are present in extrahypothalamic sites including the substantia nigra pars compacta (SNc), which is related to phenotypic dysregulation or frank degeneration in Parkinson's disease (PD). Here we found a dramatic decrease in the expression of GHSR in PD-specific induced pluripotent stem cell (iPSC)-derived dopaminergic (DAnergic) neurons generated from patients carrying parkin gene (PARK2) mutations compared to those from healthy controls. Consistently, a significant decrease in the expression of GHSR was found in DAnergic neurons of isogenic PARK2-iPSC lines that mimicked loss of function of the PARK2 gene through CRISPR Cas9 technology. Furthermore, either intracerebroventricular injection or microinjection into the SNc of the selective GHSR1a antagonist [D-Lys3]-GHRP6 in normal mice produced cataleptic behaviors related to dysfunction of motor coordination. These findings suggest that the down-regulation of GHSRs in SNc-DA neurons induced the initial dysfunction of DA neurons, leading to extrapyramidal disorder under PD.

Study Information

Provider

pubmed

Year

2018

Date

2018-02-20T00:00:00.000Z

DOI

10.1186/s13041-018-0349-8

Citations

55

References

30