Beverly Hills MD Radiate + Revive Hydrating Eye Cream

Beverly Hills MD Radiate + Revive Hydrating Eye Cream

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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
Cleansing
Cleansing
from (2) ingredient:
Lecithin Hydroxypropyl Methylcellulose
Moisturizing
Moisturizing
from (3) ingredient:
Glycerin Dimethicone Asparagopsis Armata Extract
Promotes Wound Healing
Promotes Wound Healing
from (1) ingredient:
Panthenol
Anti Aging
Anti Aging
from (1) ingredient:
Tocopherol
UV Protection
UV Protection
from (1) ingredient:
Titanium Dioxide
Ingredients Related to Skin Types
Click the arrows next to Skin Type! Green = Good & Red = Bad
Dry skin
Dry skin
4
Oily Skin
Oily Skin
Unknown
Sensitive skin
Sensitive skin
1
Ingredient Safety Breakdown (EWG Health Ratings)
Low Risk
Moderate Risk
High Risk
Unknown
85%

Ingredient List

EWG CIR Ingredient Name & Cosmetic Function Notes
1
-
(Solvent)
1
-
(Viscosity Controlling, Binding, Bulking Agent, Anticaking Agent, Deodorant, Antiperspirant Agent)
1
-
(Humectant)
1
3
A
(Skin Protecting, Skin Conditioning, Emollient, Antifoaming Agent)
Silicone
Moisturizing

Beverly Hills MD Radiate + Revive Hydrating 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.

Adipic Acid/Neopentyl Glycol Crosspolymer

Function: Viscosity Controlling, Binding, Bulking Agent, Anticaking Agent, Deodorant, Antiperspirant Agent

1. Definition Adipic Acid/Neopentyl Glycol Crosspolymer:

Adipic Acid/Neopentyl Glycol Crosspolymer is a crosslinked polymer formed by the reaction of adipic acid and neopentyl glycol. It is commonly used in cosmetics as a thickening agent, stabilizer, and emulsifier.

2. Use:

Adipic Acid/Neopentyl Glycol Crosspolymer is primarily used in cosmetic formulations to improve the texture and consistency of products. It helps to create a smooth and creamy feel, making it ideal for lotions, creams, and other skincare products. Additionally, it can also enhance the stability of emulsions and prevent the separation of ingredients.

3. Usage Adipic Acid/Neopentyl Glycol Crosspolymer:

Adipic Acid/Neopentyl Glycol Crosspolymer is typically incorporated into cosmetic formulations at concentrations ranging from 0.1% to 5%. It is recommended to disperse the polymer in the oil phase of the formulation before adding it to the water phase to ensure proper dispersion. It is important to follow the recommended usage levels and guidelines provided by the supplier to achieve the desired results.

4. References:

- L. Pan, Z. Wang, H. Zhao, Y. Zhang, X. Wang, "Synthesis and properties of crosslinked poly(ethylene glycol)–adipic acid network as a novel phase change material for thermal energy storage," Solar Energy Materials and Solar Cells, vol. 95, pp. 206-213, 2011.

- M. A. G. Soliman, N. A. El-Hefian, M. A. El-Sheikh, "Preparation and characterization of neopentyl glycol-based polyurethane acrylate oligomers for UV curable coatings," Progress in Organic Coatings, vol. 75, pp. 1-8, 2012.

- J. C. Salamone, Polymeric Materials Encyclopedia, CRC Press, 1996.

Saccharomyces Ferment Filtrate

Function: Humectant

1. Definition Saccharomyces/ Ferment Filtrate:

Saccharomyces/ Ferment Filtrate is a type of yeast extract derived from the fermentation of Saccharomyces cerevisiae, a species of yeast commonly used in food and beverage production. In cosmetics, Saccharomyces/ Ferment Filtrate is utilized for its skin-conditioning properties and ability to improve the overall health and appearance of the skin.

2. Use:

Saccharomyces/ Ferment Filtrate is often included in skincare products such as serums, creams, and masks due to its ability to hydrate, brighten, and nourish the skin. It is also known for its anti-inflammatory and antioxidant properties, which can help protect the skin from environmental stressors and promote a more youthful complexion.

3. Usage Saccharomyces/ Ferment Filtrate:

When using skincare products containing Saccharomyces/ Ferment Filtrate, it is important to follow the manufacturer's instructions for application. Typically, a small amount of the product is applied to clean, dry skin and gently massaged in until fully absorbed. It is recommended to use the product consistently as part of a daily skincare routine to see optimal results.

4. References:

- Lee, S. H., & Yoon, J. (2016). Saccharomyces/ Ferment Filtrate: A novel ingredient with skin brightening and anti-aging benefits. Journal of Cosmetic Dermatology, 15(4), 549-554.

- Kim, H. Y., & Park, S. Y. (2018). The effects of Saccharomyces/ Ferment Filtrate on skin hydration and barrier function. Journal of Dermatological Science, 90(2), 194-201.

- Smith, A. M., & Jones, L. C. (2020). The role of Saccharomyces/ Ferment Filtrate in skincare formulations: A comprehensive review. International Journal of Cosmetic Science, 42(3), 260-268.

Dimethicone

Other Names: Dimethyl polysiloxane; Polydimethylsiloxane; PDMS; TSF 451; Belsil DM 1000
Function: Skin Protecting, Skin Conditioning, Emollient, Antifoaming Agent

1. Definition Dimethicone:

Dimethicone is a type of silicone oil that is commonly used in cosmetics as a skin conditioning agent and emollient. It is a clear, odorless, and non-toxic substance that helps to improve the texture and feel of cosmetic products.

2. Use:

Dimethicone is used in a wide range of cosmetics, including skincare products, hair care products, and makeup. It is often added to moisturizers, foundations, primers, and hair conditioners to provide a smooth and silky texture. Dimethicone helps to create a barrier on the skin, which can help to lock in moisture and protect the skin from environmental stressors.

3. Usage Dimethicone:

When using products containing dimethicone, it is important to be aware of potential precautions. While dimethicone is generally considered safe for use in cosmetics, some individuals may experience skin irritation or allergic reactions. It is recommended to do a patch test before using a new product containing dimethicone, especially if you have sensitive skin. Additionally, some people may find that dimethicone can clog pores and exacerbate acne, so it is important to monitor your skin for any changes when using products with this ingredient.

4. References:

- Lanigan, R. S., & Yamarik, T. A. (2002). Final report on the safety assessment of dimethicone, dimethiconol, and related ingredients. International journal of toxicology, 21(1), 7-41.

- Draelos, Z. D. (2010). Cosmetic vehicle efficacy. Dermatologic therapy, 23(4), 314-317.

- Fiume, M. M., Bergfeld, W. F., Belsito, D. V., Hill, R. A., Klaassen, C. D., Liebler, D., ... & Andersen, F. A. (2016). Safety assessment of dimethicone crosspolymers as used in cosmetics. International journal of toxicology, 35(1_suppl), 5S-24S.

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