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Pen Peptide

GW0742 | 50mg/1,5ml

GW0742 | 50mg/1,5ml

Pre-Mixed Stabilized Pen

Regular price £85.00
Regular price Sale price £85.00
Sale Temporarily out of stock
Delivery in the Europe & UK within 1-3 days with DHL Express. Shipping calculated at checkout.
  • 🥇 The first peptide brand with Pre-Mixed Pen stabilized formulations
  • 📦 We ship with DHL Express in thermo-insulated packaging
  • 💳 Secure payment by card or bank transfer
  • 🧪 Purity ≥98% for precise research protocols
Stabilized formula ℹ️ The formula retains its structural integrity and bioactivity, without risk of degradation or loss of stability, even in case of temporary temperature increase above 8°C during transport. – tolerant to short-term temperature deviations above 8°C

✅ Proper storage

To ensure the optimal quality of our products, we pay special attention to the delivery and storage of peptides. All our shipments are sent in special cooling boxes that maintain the required temperature during transportation. This guarantees that the products will reach you in perfect condition.

After receiving the peptides, it is important to store them properly to preserve their stability and effectiveness. We recommend storing them at a temperature between 2°C and 8°C in a refrigerator. This ensures that the peptides retain their properties throughout their shelf life.

✅ Order and Delivery

At Pen Peptide, we ensure fast and secure delivery of your order with DHL Express, maintaining the highest quality and reliability throughout the process.

How we process your order:

Once your payment is confirmed via bank transfer or debit/credit card, we dispatch your order on the next business day.

Orders are carefully packaged in temperature-controlled cooling boxes to ensure product integrity during transportation.

Delivery timeframe:

Standard delivery time within the Europe & UK: 1 to 3 business days (typically 1-2 business days for most locations).

Deliveries are handled exclusively by DHL Express, providing a fast and reliable shipping experience.

Tracking & order confirmation:

After your payment has been successfully processed, you will receive an email confirmation with your tracking number.

You can use the provided tracking link to monitor your shipment’s progress and estimated delivery time.

With Pen Peptide, you can trust that your order will arrive quickly and in perfect condition, ensuring a seamless and efficient experience.

✅ How does the pen work?

The peptide pen is an innovative and easy-to-use device, designed for precise dosing of the substance in research settings. It is a pre-mixed pen (Pre-Mixed Pen), which means it contains an already dissolved peptide in an optimal concentration, ready for use.

Key features of the pen:

  1. Precision – Each pen is pre-dosed, ensuring accurate and consistent application.
  2. Ease of Use – No dilution or additional preparation is required.
  3. Sterility and Safety – Each product is manufactured in controlled laboratory conditions and sterile-packaged to guarantee its purity and effectiveness.

How to use the pen?

  1. Attach the needle by placing it onto the pen and twisting until fully secured.
  2. Set the desired dose – use the dosage dial by rotating the regulator to the corresponding number, which represents the selected units. The numbers displayed range from 0 to 60, indicating the units for dosing.
  3. Administer the dose according to the requirements of your research.
  4. Store the pen properly – in a refrigerator at a temperature between 2°C and 8°C to maintain the stability of the peptide.

With the pre-mixed pen from Pen Peptide, the process is simplified, efficient, and safe, ensuring optimal results for your research.

✅ Why choose Pen Peptide?

If you are looking for peptides of the highest quality with over 98% purity, Pen Peptide is one of the best places where you can easily and securely order online. At Pen Peptide, we specialize in the synthesis of highly purified peptides intended exclusively for Research & Development Use Only.

Our peptides are produced in certified GMP laboratories, adhering to strict standards of quality, safety, and control. Each product undergoes rigorous testing for purity and stability to ensure you receive research materials with verified origin and maximum effectiveness.

We understand how important fast and reliable service is for our customers. That’s why we offer express delivery within 1 to 3 business days. All shipments are securely packaged to maintain product quality during transportation.

✅ Molecular Structure Stabilization Process Technology (MSSPT)

The Molecular Structure Stabilization Process Technology (MSSPT) focuses on preserving the structural integrity and functionality of molecules under harsh conditions and during prolonged storage periods. This process may involve modification of the molecule itself, optimization of storage conditions, or the use of auxiliary components that protect the molecules from degradation.

MSSPT

Key stages of the process:

1. Molecular modification:

Chemical and genetic engineering: Involves altering the structure or composition of the molecule to make it more resistant to degradation. For example, protein cross-linking can prevent unfolding, or modification can reduce susceptibility to chemical reactions.

Chemical modification: The introduction of protective groups or changes to reactive sites can prevent unwanted chemical reactions and degradation.

2. Optimization of storage conditions:

Lyophilization (freeze-drying): This method removes water from the sample, helping to preserve structure and prevent degradation during storage.

Storage in specialized containers: Using containers that protect from light and oxygen can safeguard molecules from photodegradation or oxidation.

Controlled-release systems: These systems provide a steady concentration of the therapeutic molecule, but introduce additional challenges related to stabilizing molecules over extended release periods.

3. Use of auxiliary components:

Buffers: Buffers help maintain stable pH levels, which are crucial for many chemical reactions and biological processes.

Antioxidants: These additives can prevent or reduce oxidative degradation, which is a common cause of molecular instability.

Stabilizing agents: These help prevent aggregation, precipitation, or other forms of degradation.

4. Understanding molecular interactions:

Thermodynamic equilibrium: A fundamental understanding of the interactions between a molecule and its environment is essential for developing effective stabilization strategies.

Detergents for membrane proteins: Specialized detergents, such as those developed to stabilize membrane proteins, help maintain their structure in solution.

Molecular simulations: Techniques such as molecular dynamics can provide valuable insights into the stability and behavior of molecules.

5. Examples of stabilization techniques:

Protein stabilization: Strategies include forming disulfide bonds, using stabilizing agents or chaperones, and introducing stabilizing mutations.

Polymer stabilization: Methods include the addition of antioxidants or the use of modified clay minerals that prevent polymer degradation.

Propellant stabilization: Stabilizers are essential to prevent the decomposition of propellants and ensure their safe and reliable performance.

Pen Peptide – Proven Molecular Stabilization

Our peptide pens are developed with a strong focus on preserving the biological activity and structural stability of the active compounds. Thanks to thoroughly researched stabilization processes—including optimization of storage environments and precise modification of molecular structure—we achieve long-term durability and reliability of the peptides under appropriate storage conditions.

The MSSPT (Molecule Structure Stabilization Process Technology) we use incorporates various approaches to maintain molecular integrity, including the use of suitable buffers, antioxidants, and stabilizing agents. The MSSPT technology allows for the integration of multiple active molecules into a compact volume without compromising their structural integrity or biological effectiveness. Additional optimization of storage conditions—such as pH control and prevention of photodegradation and oxidation—ensures maximum stability and bioactivity of the peptides.

These precise measures guarantee that the final product remains effective and stable even after extended storage periods, making it a secure and reliable option for use in various research protocols.

What is GW0742?

GW0742 is a synthetic peroxisome proliferator-activated receptor delta (PPAR-δ) agonist investigated as a potential regulator of metabolic and energy processes. Structurally related to GW501516, GW0742 exhibits higher selectivity and affinity for PPAR-δ, making it a valuable research target targeting the regulation of lipid and glucose metabolism, energy balance, and muscle oxidation. Due to its specific activity, the compound is used in a laboratory environment to analyze molecular mechanisms related to mitochondrial function, metabolic flexibility and physical endurance.

GW0742 Mechanism of Action:

GW0742 binds selectively to PPAR-δ receptors – nuclear receptors involved in the regulation of the expression of genes related to energy metabolism. Activation of these receptors leads to stimulation of fatty acid oxidation, improvement of mitochondrial activity and increase of energy efficiency in muscle tissue. Furthermore, GW0742 modulates glucose homeostasis and affects the lipid profile without directly affecting the hormonal axis. It is this mechanism that makes it particularly interesting in scientific research focused on metabolic diseases, endurance training and energy adaptation.

Potential scientifically supported benefits of GW0742:

GW0742 has been the subject of a number of analyzes in which the following potential effects have been observed:

  • Increased fat burning by stimulating β-oxidation;
  • Increased mitochondrial activity and energy efficiency in muscles;
  • Improved glucose sensitivity and glycemic control;
  • Potentially supporting physical endurance;
  • Anti-inflammatory modulation through regulation of PPAR-δ dependent pathways;
  • Maintaining a healthy lipid profile.

Due to these observations, GW0742 is frequently included in protocols for the study of metabolic disorders, sports physiology and cardiometabolic mechanisms.

Comparison of GW0742 with other SARMs and metabolic agonists

GW0742 is a synthetic PPAR-δ (peroxisome proliferator-activated receptor delta) agonist that is not a SARM, but is often grouped with them due to its similar use in metabolic regulation, lipid control, and endurance research protocols. It is most commonly compared to Cardarine (GW501516), Stenabolic (SR9009) and sometimes to lighter SARMs such as Ostarine (MK2866) when combined for body recomposition purposes.

Compared to Cardarine, GW0742 has a higher affinity for the PPAR-δ receptor, making it more potent in models investigating fat oxidation and improvement of mitochondrial function. Both molecules promote the use of fat as a primary energy source, but GW0742 is often preferred in more targeted metabolic studies, especially when a more selective effect on energy metabolism in muscle tissue is sought.

Compared to Stenabolic (SR9009), which acts by activating REV-ERBα and affecting circadian rhythms, GW0742 is more focused on the deep regulation of lipid metabolism and glucose homeostasis, without directly affecting the biological clock. While SR9009 improves energy capacity and endurance through mitochondrial activity, GW0742 does so by activating metabolic genes responsible for fatty acid oxidation.

In the context of SARMs such as Ostarine or Ligandrol, which affect muscle mass through androgen receptors, GW0742 stands out as a completely non-hormonal metabolic modulator suitable for studies where the goal is fat burning, improved insulin sensitivity and metabolic flexibility.

Dosage and administration of GW0742 in research protocols:

Recommended study schedule: 5-6 units once daily for 4-6 weeks, followed by a 2-4 week rest period.

1 unit = 33.33mcg.

Total quantity in pen: 150 units

Possible side effects of GW0742:

While GW0742 shows promising results, it is important to consider its safety profile. Its observed negative effects include:

  • Changes in lipid metabolism during long-term use;
  • Lack of long-term data on chronic exposure;
  • Adverse interactions with other PPAR-modulating compounds.

Adherence to the optimal dosage and control of the duration of application play a key role in limiting the occurrence of side effects.

For laboratory purposes and personal observation only.

The information has been collected from numerous studies and analyses conducted over the years and is not intended for diagnosing, treating, or preventing any diseases.

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