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Kisspeptin-10

Product information

$58.99

Product description

Kisspeptin-10 is a decapeptide fragment of the kisspeptin protein, a crucial regulator of mammalian reproductive function. This peptide has gained significant attention in the scientific community due to its pivotal role in the hypothalamic-pituitary-gonadal (HPG) axis, puberty onset, and fertility. Kisspeptin-10 acts as a potent stimulator of gonadotropin-releasing hormone (GnRH) secretion, making it a promising target for the treatment of reproductive disorders and hormone-dependent cancers.

Kisspeptin-10 ()

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Product Usage: This product is intended solely for use as a research chemical in vitro and laboratory experimentation by licensed, qualified professionals. It is not approved for human or animal consumption. Misuse, misbranding, or mislabeling as a drug, food, or cosmetic is strictly prohibited. All information provided is for educational purposes only.

Table of Contents

  1. Characteristics
  2. How does Kisspeptin-10 work?
  3. Research
  4. Side Effects
  5. Summary
  6. Certificate of Analysis (COA)
  7. References

Characteristics

Molecular Formula

C63H89N19O12S

CAS-number

374675-21-5

Molar Mass

1318.56 g/mol

Chemical Formula

Tyr-Asn-Trp-Asn-Ser-Phe-Gly-Leu-Arg-Phe-NH2

Amino Acid Sequence

Tyr-Asn-Trp-Asn-Ser-Phe-Gly-Leu-Arg-Phe

Synonyms

Metastin (45-54), KP-10

Solubility

Water-soluble (≥1 mg/mL)

Organoleptic Profile

White to off-white powder

Composition

Synthetic peptide

How does Kisspeptin-10 work?

Kisspeptin-10 exerts its effects primarily through binding to the G protein-coupled receptor 54 (GPR54), also known as KISS1R. This interaction triggers a signaling cascade that leads to the release of GnRH from hypothalamic neurons. The released GnRH then stimulates the anterior pituitary gland to secrete luteinizing hormone (LH) and follicle-stimulating hormone (FSH), which in turn regulate gonadal function and steroidogenesis.

Research

  1. Puberty Onset: Research has shown that kisspeptin-10 plays a critical role in the initiation of puberty. Studies in various animal models have demonstrated that the activation of the kisspeptin system is essential for the onset of puberty and the development of secondary sexual characteristics.

  2. Reproductive Function: Kisspeptin-10 is integral to the regulation of the reproductive axis in both males and females. It modulates the pulsatile release of GnRH, which is crucial for normal gonadal function and fertility.

  3. Metabolic Regulation: Emerging evidence suggests that kisspeptin-10 may also be involved in metabolic regulation, potentially linking reproductive function with energy homeostasis.

  1. Reproductive Disorders: Given its role in the HPG axis, kisspeptin-10 has been investigated as a potential treatment for various reproductive disorders, including hypogonadotropic hypogonadism and polycystic ovary syndrome (PCOS).

  2. Infertility: Clinical trials have explored the use of kisspeptin-10 in assisted reproductive technologies, particularly for in vitro fertilization (IVF) protocols, as an alternative to traditional hormonal stimulation methods.

  3. Hormone-Dependent Cancers: Some studies have suggested that kisspeptin-10 may have anti-metastatic properties in certain hormone-dependent cancers, such as breast and prostate cancer, although more research is needed in this area.

Side Effects

While kisspeptin-10 is generally well-tolerated, some potential side effects have been reported in animal studies and mammalian clinical trials. These include:

  • Transient hot flushes

  • Mild headache

  • Nausea

  • Fatigue

  • Injection site reactions (e.g., redness, swelling, or pain)

Summary

While kisspeptin-10 shows promise in various therapeutic applications, several challenges remain. These include optimizing delivery methods, understanding potential long-term effects, and elucidating its interactions with other neuroendocrine systems. Ongoing research aims to address these challenges and further explore the therapeutic potential of kisspeptin-10 in reproductive medicine and beyond.

In conclusion, kisspeptin-10 represents a significant area of interest in reproductive endocrinology and neuroendocrinology. Its central role in the HPG axis and potential therapeutic applications make it a valuable target for continued scientific investigation and clinical research.

References

  1. Abbara, A., Eng, P. C., Phylactou, M., Clarke, S. A., Richardson, R., Sykes, C. M., ... & Dhillo, W. S. (2020). Kisspeptin receptor agonist has therapeutic potential for female reproductive disorders. Journal of Clinical Investigation, 130(12), 6739-6753.

  2. Abbara, A., Izzi-Engbeaya, C., Comninos, A. N., Clarke, S. A., Malik, Z., Mavrelos, D., ... & Dhillo, W. S. (2023). Kisspeptin-10 for the treatment of male and female infertility: a narrative review. Human Reproduction Update, 29(2), 159-178.

  3. Cernea, M., Padmanabhan, V., Goodman, R. L., Coolen, L. M., & Lehman, M. N. (2022). Kisspeptin and puberty: A 2022 update. Frontiers in Endocrinology, 13, 1027434.

  4. Coutinho, E. A., Prescott, M., Hessler, S., Marshall, C. J., Herbison, A. E., & Campbell, R. E. (2022). Activation of a classic hunger circuit slows luteinizing hormone pulsatility. Neuroendocrinology, 112(11), 1046-1061.

  5. Hu, K. L., Zhao, H., Chang, H. M., Yu, Y., & Qiao, J. (2022). Kisspeptin/kisspeptin receptor system in the ovary. Frontiers in Endocrinology, 13, 842897.

  6. Kunwar, P. S., & Rao, A. (2021). Kisspeptin and cancer: A functional link. Biomedicine & Pharmacotherapy, 144, 112352.

  7. Millar, R. P., Sonigo, C., Anderson, R. A., George, J. T., Maione, L., Braun, T., ... & Maggi, R. (2022). Kisspeptin-10 and kisspeptin neurones: a key link between reproduction and metabolism. Journal of Neuroendocrinology, 34(4), e13115.

  8. Pałasz, A., Janas-Kozik, M., & Borrow, A. (2023). The kisspeptin system: A new treatment target for reproductive and metabolic disorders. Pharmacological Research, 188, 106601.

  9. Trevisan, C. M., Montagna, E., de Oliveira, R., Christofolini, D. M., & Bianco, B. (2023). Kisspeptin and puberty: an update. Jornal de Pediatria, S0021-7557(23)00029-6. Advance online publication.

  10. Wahab, F., Atika, B., Shahab, M., & Behr, R. (2018). Kisspeptin signalling in the physiology and pathophysiology of the urogenital system. Nature Reviews Urology, 15(4), 215-229.

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