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Sermorelin

GHRH (1-29), GRF 1-29 NH2, Sermorelin acetate

Quick Stats
Studies 223
Trials 41
2007 pubmed

Alterations of EGFR/HER, angiogenesis and apoptosis pathways after therapy with antagonists of growth hormone releasing hormone and bombesin in non-small cell lung cancer.

Kanashiro. Celia A CA; Schally. Andrew V AV; Zarandi. Marta M; Hammann. Brian D BD; Varga. Jozsef L JL

Key Findings

  • GHRH antagonists (MZ-J-7-114, MZ-J-7-118) and a bombesin antagonist (RC-3940-II) slowed tumor growth by 22‑84% in two NSCLC mouse models.
  • Treatment lowered expression of EGFR/HER family receptors and angiogenic factors (VEGF‑A, VEGF‑R1, VEGF‑R2).
  • In one tumor type (H‑460), the drugs increased pro‑apoptotic Bax and decreased anti‑apoptotic Bcl‑2, indicating enhanced cell death.

Practical Outcomes

  • The findings are pre‑clinical and involve drug antagonists, not sermorelin or any supplement that can be safely used by individuals. There is no actionable dosing guidance or relevance to longevity, metabolism, or performance for the biohacker community.

Summary

In a mouse study, drugs that block growth‑hormone‑releasing hormone (GHRH) and bombesin reduced the size of lung cancer tumors by interfering with growth‑factor and blood‑vessel pathways. These compounds are antagonists, not the GHRH‑stimulating peptide sermorelin that biohackers sometimes use, and the work was done in cancer‑bearing mice, not in healthy people.

Abstract

New therapeutic strategies are necessary to improve the treatment of lung cancer. We investigated the effects of bombesin/gastrin-releasing peptide (GRP) antagonist, RC-3940-II, and growth hormone-releasing hormone (GHRH) antagonists, MZ-J-7-114 and MZ-J-7-118, on the expression of epidermal growth factor receptor (EGFR)/HER (-2, -3, and -4) family, angiogenic factors, VEGF-A and VEGF receptors (VEGF-R1 and VEGF-R2), and the apoptotic molecules Bax and Bcl-2, in H-460 and A-549 non-small cell lung carcinomas (NSCLC). Nude mice bearing xenografts of H-460 and A-549 NSCLC were treated daily with these peptide analogues for 4 weeks. The treatment resulted in growth inhibition of H-460 by 22-77% and A-549 NSCLCs by 64-84%. The inhibition of tumor growth was associated with a down-regulation of members of EGFR/HER family. A significant reduction of the levels of expression of EGFR/HER family on both tumors varied from 29-96%: the greatest inhibition being induced by RC-3940-II. Similarly, a significant decrease in the levels of VEGF-A in tumors by 19-60% and VEGF receptors (VEGF-R1, 24-74% and VEGF-R2, 25-50%) was detected after therapy. An up-regulation of Bax by 21-63% and a down-regulation of Bcl-2 by 23-39% was observed only for H-460 NSCLC. Our study demonstrates that human H-460 and A-549 NSCLC, express receptors for GHRH and bombesin/GRP, and respond to the respective antagonists. The antagonists of bombesin/GRP and GHRH could provide a new strategy for treatment of NSCLC through down-regulation of EGFR/HER family and an interference with the angiogenic and apoptotic pathways.

Study Information

Provider

pubmed

Year

2007