Tesamorelin 2mg

24.00

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Tesamorelin 2mg

24.00

In stock

Description

Tesamorelin is a synthetic analogue of growth hormone-releasing hormone (GHRH), studied in laboratory environments for its role in growth hormone (GH) secretion, endocrine signalling, and metabolic pathway research.

It is designed to stimulate the pituitary gland via GHRH receptor activation, promoting controlled growth hormone release within experimental models. Due to its structure and activity profile, Tesamorelin is widely investigated in studies focusing on the GH/IGF-1 axis, metabolic regulation, and hormone-driven signalling systems.

In controlled research settings, Tesamorelin is explored for its influence on lipid metabolism, cellular signalling, and endocrine system regulation, making it a key compound in research involving metabolic processes and hormonal pathways.

Across Ireland and Europe, Tesamorelin is commonly studied in areas such as:

  • Growth hormone secretion and GHRH receptor activation
  • GH/IGF-1 axis and endocrine signalling
  • Metabolic regulation and lipid metabolism research
  • Hormone-driven cellular signalling pathways

This product is supplied as a high-purity research peptide, intended strictly for scientific and laboratory use.

Disclaimer: This product is strictly for research purposes only and is not for human consumption.

Technical Information – Tesamorelin

Specification Details
Product Name Tesamorelin
Compound Type Synthetic GHRH analogue peptide
Functional Class Growth hormone-releasing hormone analogue
Mechanism of Action Activates GHRH receptors to stimulate GH release
Biological Targets Pituitary gland, GH/IGF-1 axis
Structure Modified GHRH analogue
Format Lyophilised powder
Purity Research-grade (high purity)
Storage Refrigerated (2–8°C, protected from light)
Application Laboratory research use only

* Images for illustration purposes only

Further Refrences: PubChem Entry

Researched Benefits & Focus Areas – Tesamorelin

1. Growth Hormone (GH) Secretion Research

Tesamorelin has been studied for:

  • Stimulation of endogenous GH release via GHRH receptors
  • Investigation of pituitary gland signalling pathways
  • Analysis of controlled hormone secretion mechanisms

Reference basis: Derived from endocrinology research examining GHRH analogues and GH release dynamics.


2. GH/IGF-1 Axis & Endocrine Signalling

Research has explored:

  • Interaction with the GH/IGF-1 signalling pathway
  • Regulation of hormone-driven cellular processes
  • Influence on endocrine system communication

Reference basis: Based on studies investigating GH axis regulation and endocrine signalling mechanisms.


3. Metabolic & Lipid Regulation Research

Tesamorelin is commonly studied for:

  • Influence on lipid metabolism pathways
  • Investigation of metabolic regulation systems
  • Interaction with energy utilisation and storage mechanisms

Reference basis: Supported by research into GHRH analogues and metabolic signalling pathways.


4. Hormonal Pathway Modulation

  • Studied for its role in hormone-driven cellular signalling
  • Explored in endocrine system regulation models
  • Investigated for interaction with metabolic and growth pathways

Reference basis: Derived from research into peptide-mediated endocrine modulation.


Disclaimer: These are research-based findings only. This product is not intended for human use or consumption.

Researched Risks & Considerations – Tesamorelin

1. Hormonal System Influence

  • May significantly affect growth hormone levels
  • Potential for endocrine imbalance in research models

Reference basis: Based on studies examining GH regulation and hormonal feedback systems.


2. Metabolic Pathway Effects

  • May influence lipid and glucose metabolism
  • Potential for system-wide metabolic changes

Reference basis: Derived from research into metabolic signalling and endocrine interactions.


3. Endocrine Feedback Mechanisms

  • May impact natural hormonal feedback loops
  • Potential for overstimulation or suppression of pathways

Reference basis: Based on studies examining GH/IGF-1 axis feedback systems.


4. Limited Long-Term Research

  • Lack of extensive long-term data
  • Primarily studied in controlled laboratory environments

Reference basis: Reflects the current stage of Tesamorelin research.


Disclaimer: These risks are based on available research data only. This product is strictly a research peptide and not for human consumption.

Additional information

Weight 23 kg
Dimensions 12 × 23 × 56 cm
Quantity

1 Vial, 1 Kit (10 Vials)

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