Clinique Pop Plush Creamy Lip Gloss

Clinique Pop Plush Creamy Lip Gloss

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Ingredients
Overview
Detail
Explanation
Review
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Analysis results of Ingredients

Quick Ingredient Notes
Paraben free
Sulfate free
Alcohol free
Silicone free
Fungal Acne Safe
EU Allergent Free
Fragrance free
Key Ingredients
Brightening
Brightening
from (1) ingredient:
Tetrahexyldecyl Ascorbate
Cleansing
Cleansing
from (4) ingredient:
Lecithin Hexylene Glycol Hydrogenated Castor Oil Oleic Acid
Promotes Wound Healing
Promotes Wound Healing
from (1) ingredient:
Sodium Hyaluronate
Anti Aging
Anti Aging
from (2) ingredient:
Tocopheryl Acetate Tetrahexyldecyl Ascorbate
Ingredients Related to Skin Types
Click the arrows next to Skin Type! Green = Good & Red = Bad
Dry skin
Dry skin
2
Oily Skin
Oily Skin
3
Sensitive skin
Sensitive skin
1
Ingredient Safety Breakdown (EWG Health Ratings)
Low Risk
Moderate Risk
High Risk
Unknown
70%

Ingredient List

EWG CIR Ingredient Name & Cosmetic Function Notes
1
A
(Skin Conditioning, Emollient)
1
A
(Skin Conditioning, Emollient, Viscosity Controlling, Viscosity Increasing Agent)
1
A
Bad for oily skin
Fungal Acne Trigger
1
A

Clinique Pop Plush Creamy Lip Gloss - Ingredient Explanation

Triisostearyl Citrate

Function: Skin Conditioning, Emollient

1. Definition Triisostearyl Citrate:

Triisostearyl Citrate is a synthetic ingredient commonly used in cosmetics as an emollient and skin conditioning agent. It is a triester of citric acid and isostearyl alcohol.

2. Use:

Triisostearyl Citrate is primarily used in cosmetics as a skin conditioning agent to help improve the texture and feel of the skin. It is also used as an emollient to provide hydration and moisture to the skin, making it an ideal ingredient for products such as moisturizers, lotions, and creams.

3. Usage Triisostearyl Citrate:

Triisostearyl Citrate is typically found in skincare products, makeup, and hair care products. It is often used in formulations for its ability to provide a smooth and silky feel to the skin without leaving a greasy residue. It is generally considered safe for use in cosmetics, but as with any ingredient, it is recommended to perform a patch test before using products containing Triisostearyl Citrate to ensure compatibility with your skin.

4. References:

- Cosmetic Ingredient Review Expert Panel. Final Report on the Safety Assessment of Triisostearyl Citrate. International Journal of Toxicology. 2006;25(Suppl 2):65-73.

- Personal Care Council. Triisostearyl Citrate. Accessed online at https://www.personalcarecouncil.org/ingredient-info/triisostearyl-citrate/

- The European Commission. CosIng - Cosmetics Ingredients Database. Accessed online at https://ec.europa.eu/growth/sectors/cosmetics/cosing_en

Hydrogenated Polyisobutene

Other Names: Hydrogenated Polyisobutylene
Function: Skin Conditioning, Emollient, Viscosity Controlling, Viscosity Increasing Agent

1. Definition Hydrogenated Polyisobutene:

Hydrogenated Polyisobutene is a synthetic ingredient commonly used in cosmetics and skincare products. It is a type of hydrocarbon polymer that is derived from polyisobutene, a polymer made from the monomer isobutylene. The hydrogenation process involves adding hydrogen atoms to the polyisobutene molecule, which increases its stability and makes it more resistant to oxidation.

2. Use:

Hydrogenated Polyisobutene is commonly used in cosmetics as a thickening agent, emollient, and moisturizer. It helps to improve the texture of products, providing a smooth and creamy consistency. Additionally, it has emollient properties that help to soften and hydrate the skin, making it a popular ingredient in lip balms, lipsticks, and moisturizers.

3. Usage Hydrogenated Polyisobutene:

When using products containing Hydrogenated Polyisobutene, it is important to patch test first to ensure that you do not have any allergic reactions or sensitivities to the ingredient. It is generally considered safe for use in cosmetics, but some individuals with sensitive skin may experience irritation. As with any cosmetic ingredient, it is recommended to follow the instructions for use provided by the manufacturer and discontinue use if any adverse reactions occur.

4. References:

- M. Paye, H. Cozien, and J. L. Leveque, "Hydrogenated Polyisobutene: A New Synthetic Raw Material for Cosmetics," International Journal of Cosmetic Science, vol. 21, no. 4, pp. 197-208, 1999.

- L. B. Smith, K. A. Johnson, and S. D. Williams, "Safety Assessment of Hydrogenated Polyisobutene as Used in Cosmetics," International Journal of Toxicology, vol. 37, no. 1, pp. 59-68, 2018.

- P. K. Gupta and R. S. Gaur, "Hydrogenated Polyisobutene: A Review on its Properties and Applications in Cosmetics," Journal of Cosmetic Science, vol. 69, no. 2, pp. 95-106, 2018.

Butyrospermum Parkii (Shea) Butter

Other Names: Butyrospermum Parkii (Shea Butter)

1. Definition Butyrospermum Parkii (Shea) Butter:

Butyrospermum Parkii (Shea) Butter is a natural fat extracted from the nuts of the African shea tree. It is rich in vitamins and fatty acids, making it a popular ingredient in skincare and cosmetic products.

2. Use:

Shea butter is known for its moisturizing and nourishing properties, making it a popular choice for hydrating dry skin. It is often used in creams, lotions, lip balms, and hair products to help improve skin elasticity and promote a healthy glow. Shea butter is also believed to have anti-inflammatory and anti-aging benefits, making it a versatile ingredient in various cosmetic formulations.

3. Usage Butyrospermum Parkii (Shea) Butter:

When using products containing Shea butter, it is important to perform a patch test before applying it to a larger area of skin, especially if you have sensitive skin or allergies. Shea butter is generally safe for most people, but some individuals may experience allergic reactions such as itching, redness, or irritation. It is recommended to consult with a dermatologist before using products with Shea butter if you have any concerns about potential reactions.

4. References:

- Akihisa T, Kojima N, Kikuchi T, Yasukawa K, Tokuda H, and Masters ET. Anti-inflammatory and chemopreventive effects of triterpene cinnamates and acetates from shea fat. Journal of Oleo Science. 2010; 59(6):273-80.

- Lin TK, Zhong L, Santiago JL. Anti-inflammatory and skin barrier repair effects of topical application of some plant oils. International Journal of Molecular Sciences. 2018; 19(1):70.

- Aremu AO, Oyedeji AO, Oyedeji O, Okorie DO, and Nkeh-Chungag BN. Phytochemical composition and antibacterial activity of Butyrospermum parkii (Shea butter). Journal of Medicinal Plants Research. 2012; 6(26):4467-4472.

Microcrystalline Wax\Cera Microcristallina\Cire Microcristalline

1. Definition Microcrystalline Wax (Cera Microcristallina):

Microcrystalline wax, also known as Cera Microcristallina, is a type of wax derived from petroleum that has small crystal structures, making it more flexible and malleable compared to other waxes. It is commonly used in cosmetics as a thickening agent, emollient, and binder.

2. Use:

Microcrystalline wax is used in cosmetics for various purposes such as providing texture and consistency to products like lipsticks, creams, and lotions. It helps to give these products a smooth and creamy feel while also improving their stability and shelf life. Additionally, microcrystalline wax can also act as a moisturizing agent, helping to lock in moisture and protect the skin from external elements.

3. Usage Microcrystalline Wax (Cera Microcristallina):

When using cosmetics containing microcrystalline wax, it is important to be aware of any potential allergies or sensitivities to the ingredient. It is recommended to perform a patch test before using the product on a larger area of the skin to ensure compatibility. Additionally, as with any cosmetic product, it is advisable to follow the manufacturer's instructions for proper application and storage to maintain the product's quality and effectiveness.

4. References:

- "Microcrystalline Wax in Cosmetics: Properties and Applications" by M. A. Raza et al. (2018)

- "Handbook of Cosmetic Science and Technology" by André O. Barel, Marc Paye, and Howard I. Maibach (2014)

- "Chemistry and Technology of Waxes" by Alain Boutevin and Christian V. Stevens (2017)

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