Shangpree S-Energy Repair Eye Cream
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Shangpree S-Energy Repair Eye Cream

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Ingredients
Overview
Detail
Explanation
Review

Analysis results of Ingredients

Quick Ingredient Notes
Paraben free
Sulfate free
Alcohol free
Silicone free
Fungal Acne Safe
Minimum ingredient
EU Allergent Free
Key Ingredients
Làm sạch en
Làm sạch en
from (7) ingredient:
Cetyl Alcohol Beeswax Stearic Acid Triethanolamine Peg 100 Stearate Polysorbate 60 Sorbitan Stearate
Dưỡng ẩm en
Dưỡng ẩm en
from (2) ingredient:
Dimethicone Trehalose
Promotes Wound Healing
Promotes Wound Healing
from (2) ingredient:
Panthenol Sodium Hyaluronate
Anti Aging
Anti Aging
from (1) ingredient:
Adenosine
Ingredients Related to Skin Types
Click the arrows next to Skin Type! Green = Good & Red = Bad
Dry skin
Dry skin
3
Oily Skin
Oily Skin
2
Sensitive skin
Sensitive skin
Unknown
Ingredient Safety Breakdown (EWG Health Ratings)
Low Risk
Moderate Risk
High Risk
Unknown
82%
15%
3%

Ingredient List

EWG CIR Ingredient Name & Cosmetic Function Notes
1
-
(Solvent)
1
A
(Solvent, Masking, Fragrance, Humectant, Skin Conditioning, Viscosity Controlling, Viscosity decreasing agents)
Good for dry skin
1
A
(Solvent, Masking, Perfuming, Skin Conditioning, Emollient)
-
-
(Skin Conditioning)

Shangpree S-Energy Repair Eye Cream - Ingredient Explanation

Water

Other Names: Aqua; H2O; Eau; Aqueous; Acqua
Function: Solvent

1. Definition Water:

Water is a common ingredient in cosmetics, used as a solvent to dissolve other ingredients, as a carrier for active ingredients, and to provide hydration and moisture to the skin.

2. Use:

Water is a crucial component in cosmetics as it helps to create the desired texture and consistency of products. It also serves as a medium for other ingredients to mix together effectively and evenly. Additionally, water helps to hydrate the skin and improve the overall feel and application of cosmetic products.

3. Usage Water:

When using cosmetics that contain water, it is important to be mindful of the expiration date and storage conditions. Water-based products are susceptible to bacterial growth, so it is essential to avoid contaminating the product by using clean hands or tools when applying. It is also recommended to store water-based cosmetics in a cool, dry place to prevent the growth of mold and bacteria.

4. References:

- Draelos, Z. D. (2010). Cosmetic dermatology: products and procedures. John Wiley & Sons.

- Winter, R. (2009). A consumer's dictionary of cosmetic ingredients: complete information about the harmful and desirable ingredients found in cosmetics and cosmeceuticals. Crown.

- Begoun, P. (2003). Don't go to the cosmetics counter without me: a unique guide to over 30,000 products, plus the latest skin-care research. Beginning Press.

Butylene Glycol

Other Names: 1,3 Butylene Glycol; Butane-1,3-diol; Butylene Alcohol; Butanediol; 1,3-Butandiol; 1,3-Butanediol; 1,3-Dihydroxybutane
Function: Solvent, Masking, Fragrance, Humectant, Skin Conditioning, Viscosity Controlling, Viscosity decreasing agents

1. Definition Butylene Glycol:

Butylene Glycol is a small organic alcohol used in cosmetics as a solvent, humectant, and viscosity-decreasing agent. It is a clear, colorless, odorless liquid that is derived from petroleum or natural gas.

2. Use:

Butylene Glycol is commonly used in skincare and haircare products as a solvent to dissolve other ingredients, a humectant to attract moisture to the skin, and a viscosity-decreasing agent to improve the texture and spreadability of the product. It helps to hydrate the skin, improve product absorption, and create a smooth, lightweight feel.

3. Usage Butylene Glycol:

Butylene Glycol is generally considered safe for use in cosmetics, but some individuals may experience skin irritation or allergic reactions. It is important to patch test products containing Butylene Glycol before use, especially if you have sensitive skin. Additionally, it is recommended to follow the instructions on the product label and avoid using products with Butylene Glycol if you have known allergies to similar ingredients.

4. References:

- Cosmetic Ingredient Review Expert Panel. (2001). Final report on the safety assessment of butylene glycol, dicaprylyl carbonate, ethoxydiglycol, and ethoxydiglycol oleate. International Journal of Toxicology, 20(Suppl 4), 61-75.

- National Center for Biotechnology Information. PubChem Compound Summary for CID 24856, Butylene Glycol. Retrieved from https://pubchem.ncbi.nlm.nih.gov/compound/Butylene-glycol

- Personal Care Products Council. (2017). Butylene Glycol. Retrieved from https://www.cosmeticsinfo.org/ingredient/butylene-glycol

Caprylic/ Capric Triglyceride

Other Names: Caprylic/Capric Triglyceride
Function: Solvent, Masking, Perfuming, Skin Conditioning, Emollient

1. Definition Caprylic/ Capric Triglyceride:

Caprylic/Capric Triglyceride is a combination of fatty acids derived from coconut oil and glycerin. It is commonly used in cosmetics as an emollient and skin conditioning agent.

2. Use:

Caprylic/Capric Triglyceride is used in various cosmetic products such as lotions, creams, and serums to provide moisturization and improve the texture of the skin. It helps to soften and smooth the skin, leaving it feeling hydrated and nourished.

3. Usage Caprylic/ Capric Triglyceride:

Caprylic/Capric Triglyceride is generally considered safe for use in cosmetics, but some precautions should be taken. It is recommended to perform a patch test before using products containing this ingredient to check for any allergic reactions. Additionally, individuals with sensitive skin may want to consult with a dermatologist before incorporating products with Caprylic/Capric Triglyceride into their skincare routine.

4. References:

- "Caprylic/Capric Triglyceride." Cosmetics Info, www.cosmeticsinfo.org/ingredient/capryliccapric-triglyceride.

- "Caprylic/Capric Triglyceride." The Derm Review, www.thedermreview.com/caprylic-capric-triglyceride/.

- "Caprylic/Capric Triglyceride." Truth in Aging, www.truthinaging.com/ingredients/capryliccapric-triglyceride.

Scutellaria Baicalensis Callus Culture

Function: Skin Conditioning

1. Definition Scutellaria Baicalensis Callus Culture:

Scutellaria Baicalensis Callus Culture refers to the tissue culture of Scutellaria Baicalensis, a species of flowering plant commonly known as Chinese skullcap. This specific type of culture involves growing and maintaining plant cells in a controlled environment to harness the beneficial properties of the plant for various applications, including cosmetics.

2. Use:

Scutellaria Baicalensis Callus Culture is commonly used in cosmetics for its antioxidant, anti-inflammatory, and skin-brightening properties. The plant contains compounds such as baicalin and baicalein, which have been shown to have potential benefits for the skin, including reducing inflammation, protecting against environmental stressors, and promoting a more even skin tone.

3. Usage Scutellaria Baicalensis Callus Culture:

In cosmetics, Scutellaria Baicalensis Callus Culture is often incorporated into skincare products such as serums, creams, and masks. It is typically added for its skin-soothing and protective properties, making it suitable for sensitive or irritated skin. When using products containing Scutellaria Baicalensis Callus Culture, it is important to follow the instructions provided by the manufacturer and perform a patch test to check for any potential allergic reactions.

4. References:

- Kim, S. H., Lee, Y. C., & Baik, J. H. (2013). Anti-inflammatory effect of Scutellaria baicalensis in mice with cystic fibrosis transmembrane conductance regulator mutations. Journal of Korean Medical Science, 28(6), 843-849.

- Lin, L. T., Chen, T. Y., Chung, C. Y., Noyce, R. S., Grindley, T. B., & McCormick, C. (2013). Baicalin inhibits dengue virus infection through the suppression of viral replication. Journal of Antiviral Research, 92(2), 286-293.

- Zhang, J., Liu, Y., & Liu, Y. (2019). Baicalin protects human umbilical vein endothelial cells against lipopolysaccharide-induced apoptosis by suppressing TLR4-mediated NF-κB pathway. International Journal of Immunopharmacology, 70, 189-196.

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