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Acetyl Decapeptide-3

is a synthetic peptide recognized for its skin-rejuvenating and anti-aging properties. It is primarily utilized in cosmetic formulations to enhance skin health and reduce the appearance of wrinkles and fine lines.

The chemical formula for Acetyl Decapeptide-3 is C₆₃H₁₁₁N₉O₉S, with a molecular weight of approximately 1,159.3 Da (Daltons). This peptide consists of a chain of ten amino acids with an acetyl group, which contributes to its stability and efficacy in skincare applications.

Acetyl Decapeptide-3 functions by promoting collagen synthesis and improving skin elasticity. It helps to strengthen the skin’s barrier, providing enhanced hydration and reducing the appearance of age-related skin changes. Additionally, it may have a muscle-relaxing effect, similar to other peptides in its class, which aids in diminishing the visibility of expression lines.

In dermatology and skincare, Acetyl Decapeptide-3 is commonly included in anti-aging products aimed at improving skin #0F4D0F and tone. It is often formulated into serums, creams, and lotions designed to provide long-term hydration and a smoother appearance. The peptide is particularly beneficial for mature or dry skin types.

For topical application, Acetyl Decapeptide-3 is typically used at concentrations ranging from 1% to 5% in various skincare formulations. A small amount should be applied to the targeted area or as directed by product instructions, with daily use generally recommended for optimal results.

Acetyl Decapeptide-3 is generally well-tolerated, with a low risk of irritation. However, some individuals may experience mild redness or sensitivity. It is advisable to conduct a patch test before extensive use to check for any adverse reactions, particularly for those with sensitive skin.

Current research is focused on validating the effectiveness of Acetyl Decapeptide-3 in clinical settings, particularly regarding its long-term benefits for skin aging and its potential role in enhancing skin resilience. The increasing demand for effective anti-aging solutions has led to its growing presence in the cosmetic market.

In conclusion, Acetyl Decapeptide-3 is a promising ingredient in skincare and cosmetic formulations, known for its ability to reduce the appearance of fine lines and improve overall skin #0F4D0F. Its hydration and collagen-boosting properties make it a valuable component in anti-aging products. Ongoing research continues to explore its full potential and expand its applications in the beauty industry.

For more detailed information on research findings or specific products containing Acetyl Decapeptide-3, consult scientific literature and product resources.

Properties of Acetyl Decapeptide-3

CAS Number
935288-50-9

Vial Size
3 ml

Vial Contents
Lyophilized powder with high purity (>99%)

Structure

Product Quantities:

Standard Quantities: We provide research peptides in quantities tailored to typical research needs, ranging from milligram to gram amounts. These quantities are ideal for initial experiments or smaller-scale studies.

Bulk Quantities: For larger-scale projects or ongoing research, we offer bulk peptides starting at 500 mg, with options to purchase up to 1 kg or more. Bulk orders are ideal for extensive research programs or institutional needs.

Product Form:

Lyophilized Powder: Our research peptides are provided in lyophilized (freeze-dried) powder form. This method preserves peptide stability and extends shelf life, ensuring the integrity and effectiveness of the peptides for your research needs. The lyophilization process also makes the peptides easier to store and handle.

Product Packaging:

Vial: Our research peptides are packaged in 3 ml clear A/S Type 1 glass serum vials. The clear borosilicate glass allows the vials to withstand a wide variety of contents, including acids, pharmaceuticals, alkalis, and essential oils, ensuring compatibility with a broad range of research applications. Stoppers: Each vial is sealed with a rubber butyl stopper, which provides an effective barrier against contamination and maintains the integrity of the peptides. Caps: The vials are topped with 13 mm aluminum caps with blue color coding for easy identification. This combination of materials ensures a secure seal and protects the contents during storage and transportation.

Product Handling:

Storage: Store the lyophilized peptide powders in a cool, dry place away from direct sunlight. Ideal storage temperatures are typically between 2°C and 8°C (36°F and 46°F). For longer-term storage, consider keeping them in a freezer to maintain stability. Reconstitution: When ready to use, reconstitute the lyophilized powder with an appropriate solvent as specified in the provided instructions. Ensure that all equipment used for reconstitution is sterile to avoid contamination. Note: Refrigerate Reconstituted Peptide. Handling: Handle vials with clean, dry hands or gloves to prevent contamination. Use aseptic techniques when opening and closing vials. Avoid direct contact with the powder to maintain its integrity. Use of Sterile Equipment: When withdrawing the peptide solution from the vial, always use sterile syringes and needles. This prevents contamination of the peptide solution, which is crucial for maintaining the integrity and accuracy of your research results. Sterilized equipment minimizes the risk of introducing microorganisms or other contaminants that could alter the peptide’s properties or interfere with experimental outcomes. Expiration: Adhere to the expiration dates provided on the certificates of analysis. Do not use peptides past their expiration date as their stability and efficacy cannot be guaranteed. Disposal: Dispose of any unused or expired peptides and vials according to local regulations and institutional guidelines for hazardous materials. Ensure that all disposal practices are compliant with safety and environmental regulations.
Research and Applications Biological Research: Peptides are used to understand physiological processes, such as hormone regulation, immune responses, and cell signaling. Pharmacological Research: They help in developing new drugs or therapies by investigating how peptides interact with various biological targets. Synthetic Biology: Peptides are used in the creation of synthetic pathways or in the modification of biological systems.
Safety and Regulations Not for Human Consumption: Research peptides are not approved for use in humans and should not be used outside of a research setting. Regulations: The legal status of research peptides varies by country. In many places, they are regulated as research chemicals rather than drugs.
Ethical Considerations Research Ethics: Researchers must adhere to ethical guidelines, ensuring that their work with peptides does not involve any harm to humans or animals unless it is part of a regulated study.
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