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Hexarelin

Endocrine signaling research

Hexarelin

Lyophilized endocrine-signaling research peptide for systems review

Hexarelin is a synthetic GH secretagogue research peptide studied in endocrine and cardiometabolic signaling models.

价格范围:42.99 $ 至 182.99 $
98.5%-99.1% Lyophilized powder 5 mg
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仅供实验室研究使用。不适用于人类或兽医用途。并非旨在诊断、治疗、治愈、减轻或预防疾病。

存储

Keep sealed, cold, dry, and protected from heat swings. Confirm product-specific storage on arrival.

Shipping notes

Packed for transit stability with order support available for warm-weather routes.

Batch reference

Batch-linked certificate support is available through the documentation desk.

研究背景

Hexarelin 研究资料

Hexarelin is a synthetic hexapeptide growth hormone secretagogue studied at the ghrelin receptor. Research includes GH-release response, receptor potency, endocrine markers, desensitization, and experimental cardiac or metabolic signaling observations. It is often compared with GHRP-2, GHRP-6, and ipamorelin to examine differences in potency and selectivity, while GHRH analogs such as sermorelin and CJC-1295 provide a separate receptor pathway for comparison. Hexarelin is most appropriate when a study specifically needs this GHS-R ligand rather than a general GH-axis material. Much of the broader mechanistic evidence is preclinical or early-stage and should remain tied to its original model.

拟议机制

A potent synthetic GHS-R1a agonist that stimulates GH release through pituitary and hypothalamic pathways. Additional cardiac and cytoprotective mechanisms have been proposed in preclinical studies, some potentially independent of GH.

研究中报告的作用

  • Human pharmacology studies reported strong acute GH release and endocrine responses after hexarelin exposure.
  • Animal and cell studies reported changes in cardiac function, survival signaling, fibrosis, and tissue-injury markers.
  • Repeated exposure can cause desensitization, and cardiac findings remain largely preclinical and mechanism dependent.

常见研究终点

GHS-R potency, GH, ACTH, cortisol, prolactin, receptor desensitization, cardiac contractility, fibrosis, apoptosis, inflammatory markers, and pharmacokinetics.

证据与局限

Human evidence primarily addresses acute endocrine pharmacology; proposed cardiac effects are largely preclinical and not established as human outcomes.

External reading

Literature for context—not product proof.

Third-party sources describe their own research materials and methods. They do not validate a specific Azure catalog batch.

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