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Comprehensive Cosmetic Industry Ingredient Guide

THIS IS A UNIVERSAL REFERENCE GUIDE FOR EDUCATIONAL PURPOSES

THE INGRIDIENT BELOW IS NOT USED IN MITOSKIN FORMULATION UNLESS STATED OTHERWISE

Ingredient
ACRYLIC ACID PHOSPHORYLCHOLINE GLYCOL ACRYLATE CROSSPOLYMER

ACRYLIC ACID/PHOSPHORYLCHOLINE GLYCOL ACRYLATE CROSSPOLYMER

Summary

ACRYLIC ACID/PHOSPHORYLCHOLINE GLYCOL ACRYLATE CROSSPOLYMER is a versatile cosmetic ingredient that functions as a thickener, stabilizer, and emulsifier. It is commonly used in skincare and personal care products due to its ability to improve texture, enhance product performance, and provide a smooth, silky feel. This ingredient is also known for its ability to absorb excess oil and moisture, making it an ideal choice for products designed for oily or combination skin types. With its unique properties and benefits, ACRYLIC ACID/PHOSPHORYLCHOLINE GLYCOL ACRYLATE CROSSPOLYMER is a valuable addition to any cosmetic formulation.

INCI Name and Common References

INCI Name: Acrylic Acid/Phosphorylcholine Glycol Acrylate Crosspolymer Common Terms: Acrylic Crosspolymer, Carbomer, Thickener Nicknames: ACPC, AA/PGAA Crosspolymer

Function

ACRYLIC ACID PHOSPHORYLCHOLINE GLYCOL ACRYLATE CROSSPOLYMER is a thickening agent and stabilizer commonly used in cosmetic formulations. It helps to improve the texture and consistency of the product, while also providing a smooth and even application. Additionally, it can help to enhance the efficacy of other active ingredients in the formulation.

Science

ACRYLIC ACID PHOSPHORYLCHOLINE GLYCOL ACRYLATE CROSSPOLYMER is a polymer that works as a thickening agent and emulsifier in cosmetic and personal care products. Its physical properties include a high molecular weight and a crosslinked structure, which allows it to form a three-dimensional network that can hold water and other ingredients in place. This helps to improve the texture and stability of the product, as well as enhance its moisturizing and conditioning properties. Additionally, the phosphorylcholine group in the polymer can interact with the skin's natural phospholipids, which may help to improve the absorption and efficacy of other active ingredients in the product.

Benefits

- Helps to improve skin hydration and moisture retention - Can enhance the effectiveness of other skincare ingredients - May help to reduce the appearance of fine lines and wrinkles - Can provide a smooth and silky texture to skincare products - May have soothing and calming properties for sensitive skin types

Negatives

Acrylic acid phosphorylcholine glycol acrylate crosspolymer is a commonly used ingredient in skincare and cosmetic products. While it is generally considered safe for use, there are some potential side effects, sensitivities, and interactions that should be taken into consideration. One possible side effect of using products containing this ingredient is skin irritation. Some people may experience redness, itching, or a burning sensation when using products that contain acrylic acid phosphorylcholine glycol acrylate crosspolymer. If you experience any of these symptoms, it is important to discontinue use of the product and consult with a healthcare professional. Another potential sensitivity to this ingredient is an allergic reaction. Some people may be allergic to acrylic acid phosphorylcholine glycol acrylate crosspolymer, which can cause symptoms such as hives, swelling, and difficulty breathing. If you experience any of these symptoms after using a product containing this ingredient, seek medical attention immediately. It is also important to note that acrylic acid phosphorylcholine glycol acrylate crosspolymer may interact with other ingredients in skincare and cosmetic products. For example, it may not be compatible with certain preservatives or other active ingredients. It is important to read product labels carefully and consult with a healthcare professional if you have any concerns about potential interactions. Overall, while acrylic acid phosphorylcholine glycol acrylate crosspolymer is generally considered safe for use, it is important to be aware of potential side effects, sensitivities, and interactions. If you experience any adverse reactions after using a product containing this ingredient, discontinue use and seek medical attention if necessary.

Source

The ingredient ACRYLIC ACID/PHOSPHORYLCHOLINE GLYCOL ACRYLATE CROSSPOLYMER is a synthetic polymer that is derived from acrylic acid and phosphorylcholine glycol acrylate. It is commonly used in skincare and cosmetic products as a thickening agent and emulsifier. Acrylic acid is a synthetic compound that is derived from propylene, a byproduct of petroleum refining. Phosphorylcholine glycol acrylate is a synthetic compound that is derived from choline, a natural nutrient found in foods like eggs and liver. The processing pathway for ACRYLIC ACID/PHOSPHORYLCHOLINE GLYCOL ACRYLATE CROSSPOLYMER involves the polymerization of acrylic acid and phosphorylcholine glycol acrylate. This process involves the use of chemical catalysts and high temperatures to create a crosslinked polymer structure. The resulting polymer is then purified and processed into a powder or liquid form that can be used in skincare and cosmetic products.

Safety

According to the EWG Skin Deep database, Acrylic Acid/Phosphorylcholine Glycol Acrylate Crosspolymer has a safety rating of 1-2, which is considered low to moderate hazard. This rating is based on the ingredient's potential for skin irritation and allergic reactions. Other sources also indicate that this ingredient is generally safe for use in cosmetics and personal care products. However, as with any ingredient, it is important to use products containing Acrylic Acid/Phosphorylcholine Glycol Acrylate Crosspolymer as directed and to discontinue use if any adverse reactions occur.

Sustainability

Acrylic acid/phosphorylcholine glycol acrylate crosspolymer is a synthetic polymer that is commonly used in cosmetics and personal care products as a thickening agent, emulsifier, and stabilizer. While there is no direct environmental impact associated with this ingredient, the production of acrylic acid and its derivatives can have negative environmental consequences. Acrylic acid is typically produced from propylene, a petroleum-derived chemical. The production of propylene involves the use of fossil fuels and can contribute to greenhouse gas emissions and air pollution. Additionally, the production of acrylic acid can generate hazardous waste and require significant amounts of water and energy. In terms of ethical sourcing practices, it is important to note that acrylic acid/phosphorylcholine glycol acrylate crosspolymer is a synthetic ingredient and therefore does not have a direct impact on communities or workers involved in its production. However, it is still important for companies to ensure that the raw materials used to produce this ingredient are sourced responsibly and in compliance with relevant regulations and standards. This may include ensuring that suppliers are not engaging in unethical practices such as forced labor or environmental degradation.

Conclusion

In conclusion, Acrylic Acid/Phosphorylcholine Glycol Acrylate Crosspolymer is a versatile ingredient commonly used in skincare products due to its ability to provide a smooth and silky texture while also improving the skin's hydration levels. The science behind this ingredient shows that it works by forming a protective barrier on the skin's surface, preventing moisture loss and improving the skin's overall appearance. While there are no significant negative effects associated with this ingredient, it is important to note that it may cause skin irritation in some individuals. Acrylic Acid/Phosphorylcholine Glycol Acrylate Crosspolymer can be sourced from various manufacturers and is considered safe for use in cosmetics. However, its sustainability is questionable as it is a synthetic ingredient that requires a significant amount of energy and resources to produce. Overall, Acrylic Acid/Phosphorylcholine Glycol Acrylate Crosspolymer is a beneficial ingredient that can improve the texture and hydration of the skin, but its sustainability should be taken into consideration.

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