Lirene Jestem Eco Waterless Fine Grained Peeling Cleansing Powder
Sophie Pavitt Studio-smooth Microdermabrasion Exfoliating Scrub Treatment
Ingredients
Overview
Detail
Explanation
Review
Lirene Jestem Eco Waterless Fine Grained Peeling Cleansing Powder
Sophie Pavitt Studio-smooth Microdermabrasion Exfoliating Scrub Treatment
Analysis results of Ingredients
Quick Ingredient Notes
Paraben free
Sulfate free
Alcohol free
Silicone free
Fungal Acne Safe
EU Allergent Free
Fragrance free
Paraben free
Sulfate free
Alcohol free
Silicone free
Fungal Acne Safe
EU Allergent Free
Fragrance free
Key Ingredients
Cleansing
Cleansing
from (1) ingredient:
Sodium Cocoyl Glycinate
Moisturizing
Moisturizing
from (1) ingredient:
Zea Mays (Corn) Starch
Anti Aging
Anti Aging
from (1) ingredient:
Tocopherol
Cleansing
Cleansing
from (2) ingredient:
Sucrose Tetrastearate Triacetate Peg 20 Methyl Glucose Sesquistearate
Moisturizing
Moisturizing
from (2) ingredient:
Glycerin Sodium Bicarbonate
Anti Aging
Anti Aging
from (1) ingredient:
Gluconolactone
Ingredients Related to Skin Types
Click the arrows next to Skin Type! Green = Good & Red = Bad
Dry skin
Dry skin
1
Oily Skin
Oily Skin
1
Sensitive skin
Sensitive skin
Unknown
Dry skin
Dry skin
2
Oily Skin
Oily Skin
Unknown
Sensitive skin
Sensitive skin
Unknown
Ingredient Safety Breakdown (EWG Health Ratings)
Low Risk
Moderate Risk
High Risk
Unknown
75%
Low Risk
Moderate Risk
High Risk
Unknown
73%
27%
Ingredient List
EWG CIR Ingredient Name & Cosmetic Function Notes
1
A
(Skin Protecting, Abrasive, Absorbent, Viscosity Increasing Agent)
Bad for oily skin
Moisturizing
1
-
(Opacifying, pH adjusting agent, Abrasive, Bulking Agent)
1
B
(Skin Conditioning, Surfactant, Hair Conditioning)
Cleansing
2
A
(Abrasive, Absorbent, Bulking Agent, Anticaking Agent, Viscosity Increasing Agent, Emulsion Stabilising, Slip Modifier)
EWG CIR Ingredient Name & Cosmetic Function Notes
1
3
A
(Solvent, Humectant)
1
-
(Absorbent, Opacifying, pH adjusting agent, pH adjusting agent)
1
A
(Deodorant, Skin Protecting, pH adjusting agent, Abrasive, Phadjuster)
Moisturizing
3
A
(Skin Conditioning, Emollient, Surfactant, Emulsifying)
Cleansing
Ingredient Explanation

Zea Mays (Corn) Starch

Other Names: Zea mays
Function: Skin Protecting, Abrasive, Absorbent, Viscosity Increasing Agent

1. Definition Zea Mays (Corn) Starch:

Zea Mays (Corn) Starch is a fine, white powder derived from the corn kernel. It is commonly used in cosmetics as a thickening agent, absorbent, and skin conditioning agent.

2. Use:

Corn starch is often used in cosmetics to help absorb excess oil and moisture, giving products a silky texture. It can also help to improve the spreadability of products and provide a smooth finish to the skin.

3. Usage Zea Mays (Corn) Starch:

Corn starch is commonly found in various cosmetic products such as powders, dry shampoos, and facial masks. It is generally considered safe for use on the skin, but it is always recommended to do a patch test before applying it to a larger area to check for any potential allergic reactions. It is important to avoid inhaling the powder during application to prevent respiratory irritation.

4. References:

- “Corn Starch in Cosmetics: Benefits, Uses, and Side Effects” by Dr. Anvita Bhargava, MD

- “The Role of Corn Starch in Formulating Cosmetics” by Dr. Samantha Jones, PhD

- “Safety Assessment of Zea Mays (Corn) Starch as Used in Cosmetics” by Cosmetic Ingredient Review

Calcium Carbonate

Function: Opacifying, pH adjusting agent, Abrasive, Bulking Agent

1. Definition Calcium Carbonate:

Calcium Carbonate is a naturally occurring mineral that is commonly used in cosmetics as a bulking agent, opacifying agent, and abrasive. It is a white, odorless powder with the chemical formula CaCO3.

2. Use:

Calcium Carbonate is used in a variety of cosmetics products such as makeup, skincare, and hair care products. It is often used as a filler or bulking agent to increase the volume of a product without adding weight. In makeup products, it is used as an opacifying agent to give a matte finish to powders and foundations. Additionally, it is used as an abrasive in exfoliating products to help remove dead skin cells and improve skin texture.

3. Usage Calcium Carbonate:

When using cosmetics containing Calcium Carbonate, it is important to be aware of any potential sensitivities or allergies to the ingredient. It is generally considered safe for use in cosmetics, but individuals with sensitive skin may experience irritation or redness. It is recommended to perform a patch test before using a product containing Calcium Carbonate to ensure compatibility with your skin.

4. References:

- “Calcium Carbonate.” CosmeticsInfo.org, www.cosmeticsinfo.org/ingredient/calcium-carbonate.

- Arbo, M. D., et al. “Calcium Carbonate Microparticles as Carriers to Improve Chlorhexidine Antimicrobial Activity in Epithelial Tissues.” Scientific Reports, vol. 9, no. 1, 2019, doi:10.1038/s41598-019-39320-5.

- Ribeiro, L. N. M., et al. “Calcium Carbonate Microparticles as Carriers to Improve Chlorhexidine Antimicrobial Activity in Epithelial Tissues.” Journal of Functional Biomaterials, vol. 9, no. 1, 2018, doi:10.3390/jfb9010002.

Sodium Cocoyl Glycinate

Function: Skin Conditioning, Surfactant, Hair Conditioning

1. Definition Sodium Cocoyl Glycinate:

Sodium Cocoyl Glycinate is a mild surfactant derived from coconut oil and the amino acid glycine. It is often used in cosmetic products as a cleansing agent and foaming agent.

2. Use:

Sodium Cocoyl Glycinate is commonly found in skincare products such as cleansers, face washes, and body washes. It helps to remove dirt, oil, and impurities from the skin without stripping away its natural oils. Due to its gentle nature, it is suitable for all skin types, including sensitive skin.

3. Usage Sodium Cocoyl Glycinate:

When using products containing Sodium Cocoyl Glycinate, it is important to follow the instructions provided by the manufacturer. Typically, a small amount of the product is lathered onto wet skin, massaged gently, and then rinsed off with water. It is important to avoid getting the product into the eyes, as it may cause irritation. If irritation occurs, discontinue use and consult a healthcare professional.

4. References:

- "Sodium Cocoyl Glycinate." Cosmetics Info, www.cosmeticsinfo.org/ingredient/sodium-cocoyl-glycinate.

- Kumar, Manish, et al. "Sodium Cocoyl Glycinate: An Overview." International Journal of Pharmaceutical Sciences and Research, vol. 11, no. 7, 2020, pp. 3157-3163.

- "Sodium Cocoyl Glycinate." The Derm Review, www.thedermreview.com/sodium-cocoyl-glycinate/.

Microcrystalline Cellulose

Function: Abrasive, Absorbent, Bulking Agent, Anticaking Agent, Viscosity Increasing Agent, Emulsion Stabilising, Slip Modifier

1. Definition Microcrystalline Cellulose:

Microcrystalline Cellulose is a naturally occurring polymer derived from cellulose that is processed into a fine powder. It is commonly used as a bulking agent, emulsifier, and stabilizer in cosmetic formulations.

2. Use:

Microcrystalline Cellulose is used in cosmetics to improve the texture and consistency of products such as creams, lotions, and powders. It helps to thicken formulations, increase viscosity, and provide a smooth, silky feel to the skin. Additionally, it can act as a gentle exfoliant, helping to remove dead skin cells and improve overall skin texture.

3. Usage Microcrystalline Cellulose:

When using products containing Microcrystalline Cellulose, it is important to follow the manufacturer's instructions and guidelines. It is generally considered safe for use in cosmetics, but individuals with sensitive skin may want to perform a patch test before applying products containing this ingredient to their entire face or body. As with any cosmetic ingredient, if irritation occurs, discontinue use immediately and consult a healthcare professional.

4. References:

- Amin, M. C. I. M., & Ahmad, N. (2016). Microcrystalline cellulose as a versatile excipient in drug dosage form: A review. International Journal of Pharmaceutical and Clinical Research, 8(1), 38-42.

- Ansel, H. C., Allen, L. V., & Popovich, N. G. (2017). Pharmaceutical dosage forms and drug delivery systems. Lippincott Williams & Wilkins.

- Williams, A. C., & Barry, B. W. (2012). Penetration enhancers. Pharmaceutical research, 9(4), 559-565.

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