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Sermorelin

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

Quick Stats
Studies 223
Trials 41
2022 pubmed 4 citations

Impact of growth hormone-releasing hormone antagonist on decidual stromal cell growth and apoptosis in vitro†.

Wu. Hsien-Ming HM; Chen. Liang-Hsuan LH; Schally. Andrew V AV; Huang. Hong-Yuan HY; Soong. Yung-Kuei YK; Leung. Peter C K PCK; Wang. Hsin-Shih HS

Key Findings

  • Human decidual stromal cells express GHRH and a splice variant of its receptor.
  • The GHRH antagonist JMR‑132 reduces cell viability and induces apoptosis in a dose‑ and time‑dependent manner.
  • Apoptosis is mediated through activation of ERK1/2 and JNK pathways, leading to up‑regulation of GADD45α.

Practical Outcomes

  • For biohackers, this research offers no actionable protocol or safety insight for sermorelin or other GHRH‑based interventions. It is focused on a pregnancy‑specific cell type and a drug that blocks GHRH, which is not relevant to typical longevity or performance goals.

Summary

The study looked at a drug that blocks growth‑hormone‑releasing hormone (GHRH) and found it makes certain cells from early pregnancy tissue die. It shows the drug triggers cell‑death pathways, but it doesn’t tell us anything useful for using sermorelin or other GHRH‑related supplements for health, performance, or longevity.

Abstract

Endometrial stromal cells remodeling is critical during human pregnancy. Growth hormone-releasing hormone and its functional receptor have been shown to be expressed in gynecological cancer cells and eutopic endometrial stromal cells. Recent studies have demonstrated the potential clinical uses of antagonists of growth hormone-releasing hormone as effective antitumor agents because of its directly antagonistic effect on the locally produced growth hormone-releasing hormone in gynecological tumors. However, the impact of growth hormone-releasing hormone antagonists on normal endometrial stromal cell growth remained to be elucidated. The aim of this study was to investigate the effect of a growth hormone-releasing hormone antagonist (JMR-132) on cell proliferation and apoptosis of human decidual stromal cells and the underlying molecular mechanisms. Our results showed that growth hormone-releasing hormone and the splice variant 1 of growth hormone-releasing hormone receptor are expressed in human decidual stromal cells isolated from the decidual tissues of early pregnant women receiving surgical abortion. In addition, treatment of stroma cells with JMR-132 induced cell apoptosis with increasing cleaved caspase-3 and caspase-9 activities and decrease cell viability in a time- and dose-dependent manner. Using a dual inhibition approach (pharmacological inhibitors and siRNA-mediated knockdown), we showed that JMR-132-induced activation of apoptotic signals are mediated by the activation of ERK1/2 and JNK signaling pathways and the subsequent upregulation of GADD45alpha. Taken together, JMR-132 suppresses cell survival of decidual stromal cells by inducing apoptosis through the activation of ERK1/2- and JNK-mediated upregulation of GADD45alpha in human endometrial stromal cells. Our findings provide new insights into the potential impact of growth hormone-releasing hormone antagonist on the decidual programming in humans.

Study Information

Provider

pubmed

Year

2022

Date

2022-01-13T00:00:00.000Z

DOI

10.1093/biolre/ioab214

Citations

4

References

37