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Kisspeptin-10

KP-10, Metastin (45-54), Kisspeptin-10 (human), KiSS-1

Quick Stats
Studies 877
Trials 47
Score 1
2021 pubmed 6 citations

Functional analysis of the emerging roles for the KISS1/KISS1R signaling pathway in cancer metastasis.

Li. Zhenxi Z; Liu. Jing J; Inuzuka. Hiroyuki H; Wei. Wenyi W

Key Findings

  • Kisspeptin was first found as a gene that can suppress melanoma spread.
  • Its signaling through the KISS1R receptor influences both reproductive hormones and cancer cell behavior, but the impact differs across tissue types.
  • Researchers are exploring ways to target the KISS1/KISS1R pathway for future cancer therapies.

Practical Outcomes

  • At this stage there are no actionable protocols or dosage recommendations for kisspeptin‑10 in longevity or performance. Biohackers should view this as basic science insight rather than a ready‑to‑use supplement or treatment, and await further clinical research before considering any use.

Summary

The paper explains that kisspeptin, a protein linked to reproductive hormone control, can also affect how cancer spreads, but its effects vary depending on the type of tissue and are still debated. While it might someday be used in anti‑cancer strategies, the study doesn’t give any clear ways to use kisspeptin for health or performance improvements today.

Abstract

Cancer metastasis, a process that primary tumor cells disseminate to secondary organs, is the most lethal and least effectively treated characteristic of human cancers. Kisspeptins are proteins encoded by the KISS1 gene that was originally described as a melanoma metastasis suppressor gene. Then, Kisspeptins were discovered as the natural ligands of the G-protein-coupled receptor 54 (GPR54) that is also called KISS1R. The KISS1/KISS1R signaling is essential to control GnRH secretion during puberty and to establish mammalian reproductive function through the hypothalamic-pituitary-gonadal (HPG) axis. Although KISS1 primarily plays a suppressive role in the metastasis progression in several cancer types, emerging evidence indicates that the physiological effect of KISS1/KISS1R in cancer metastasis is tissue context-dependent and still controversial. Here, we will discuss the epigenetic mechanism involved in the regulation of KISS1 gene expression, the context-dependent role of KISS1/KISS1R, prometastasis/anti-metastasis signaling pathways of KISS1/KISS1R, and the perspective anticancer therapeutics via targeting KISS1/KISS1R.

Study Information

Provider

pubmed

Year

2021

Date

2021-11-10T00:00:00.000Z

DOI

10.1016/j.jgg.2021.10.005

Citations

6

References

30