GHRP-6
Growth Hormone Releasing Peptide-6, Growth hormone-releasing hexapeptide, His-D-Trp-Ala-Trp-D-Phe-Lys-NH2
A stable meta-carborane enables the generation of boron-rich peptide agonists targeting the ghrelin receptor.
Worm. Dennis J DJ; Els-Heindl. Sylvia S; Kellert. Martin M; Kuhnert. Robert R; Saretz. Stefan S; Koebberling. Johannes J; Riedl. Bernd B; Hey-Hawkins. Evamarie E; Beck-Sickinger. Annette G AG
Key Findings
- A stable meta‑carborane building block with a mercaptoacetic acid linker can be chemically attached to peptide agonists.
- The boron‑loaded hexapeptide still activates the ghrelin receptor strongly, acting as a super‑agonist.
- Using the backbone of known ghrelin‑receptor ligands (GHRP‑6 and Ipamorelin) they created highly potent, boron‑rich conjugates for potential BNCT use.
Practical Outcomes
- For biohackers and self‑experimenters, there is no actionable protocol, dosage, or performance benefit. The study is relevant only to specialized cancer‑therapy research and does not translate into everyday health‑optimization practices.
Summary
Scientists attached a special boron cluster to short peptides like GHRP‑6 to make them carry boron into cells that have the ghrelin receptor, aiming to improve a cancer treatment called boron neutron capture therapy. The work is about drug design for tumors, not about boosting metabolism, muscle, or brain performance.
Abstract
Boron neutron capture therapy (BNCT) is a binary cancer therapy, which combines the biochemical targeting of a boron-containing drug with the regional localization of radiation treatment. Although the concept of BNCT has been known for decades, the selective delivery of boron into tumor cells remains challenging. G protein-coupled receptors that are overexpressed on cancer cells in combination with peptidic ligands can be potentially used as shuttle system for a tumor-directed boron uptake. In this study, we present the generation of short, boron-rich peptide conjugates that target the ghrelin receptor. Expression of the ghrelin receptor on various cancer cells makes it a viable target for BNCT. We designed a novel hexapeptide super-agonist that was modified with different specifically synthesized carborane monoclusters and tested for ghrelin receptor activation. A meta-carborane building block with a mercaptoacetic acid linker was found to be optimal for peptide modification, owing to its chemical stability and a suitable activation efficacy of the conjugate. The versatility of this carborane for the development of peptidic boron delivery agents was further demonstrated by the generation of highly potent, boron-loaded conjugates using the backbone of the known ghrelin receptor ligands growth hormone releasing peptide 6 and Ipamorelin.
Study Information
pubmed
2018
2018-08-31T00:00:00.000Z
10.1002/psc.3119
31
61