HYLAMIDE Booster;Low-Molecular Ha

HYLAMIDE Booster;Low-Molecular Ha

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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
Cleansing
Cleansing
from (3) ingredient:
Lecithin Peg 40 Hydrogenated Castor Oil Ppg 26 Buteth 26
Moisturizing
Moisturizing
from (2) ingredient:
Glycerin Ahnfeltia Concinna Extract
Promotes Wound Healing
Promotes Wound Healing
from (2) ingredient:
Sodium Hyaluronate Hydrolyzed Sodium Hyaluronate
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
Unknown
Sensitive skin
Sensitive skin
Unknown
Ingredient Safety Breakdown (EWG Health Ratings)
Low Risk
Moderate Risk
High Risk
Unknown
84%
16%

Ingredient List

EWG CIR Ingredient Name & Cosmetic Function Notes
1
-
(Solvent)
1
-
(Skin Conditioning)
1
A
(Solvent, Skin Conditioning)
1
A
(Viscosity Controlling, Emulsion Stabilising)

HYLAMIDE Booster;Low-Molecular Ha - 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.

Hydrolyzed Yeast Extract

Other Names: Hydrolyzed Yeast
Function: Skin Conditioning

1. Definition Hydrolyzed Yeast Extract:

Hydrolyzed Yeast Extract is a natural ingredient derived from yeast that has been broken down into smaller molecules through a process known as hydrolysis. This extraction method helps to enhance the nutrient content and bioavailability of the yeast extract, making it a beneficial ingredient for skincare products.

2. Use:

Hydrolyzed Yeast Extract is commonly used in cosmetics for its skin conditioning and moisturizing properties. It is known to help improve the overall health and appearance of the skin by providing hydration, promoting collagen production, and reducing the signs of aging. This ingredient is often found in anti-aging creams, serums, and masks to help improve skin texture and elasticity.

3. Usage Hydrolyzed Yeast Extract:

When using products containing Hydrolyzed Yeast Extract, it is important to follow the instructions provided by the manufacturer. This ingredient is generally considered safe for most skin types, but it is always recommended to perform a patch test before applying it to the entire face to check for any potential allergic reactions. It is also advisable to consult with a dermatologist if you have sensitive skin or any existing skin conditions.

4. References:

- Kim, J., Lee, Y., Kim, S., & Kim, J. (2013). Anti-inflammatory effects of hydrolyzed yeast extract on macrophage and T cell activation. Journal of Medicinal Food, 16(10), 881-888.

- Lupo, M. P. (2017). Cosmeceutical peptides. Dermatologic Therapy, 30(5), e12529.

- Mukherjee, S., Date, A., Patravale, V., Korting, H. C., Roeder, A., & Weindl, G. (2006). Retinoids in the treatment of skin aging: an overview of clinical efficacy and safety. Clinical Interventions in Aging, 1(4), 327-348.

Pentylene Glycol

Function: Solvent, Skin Conditioning

1. Definition Pentylene Glycol:

Pentylene Glycol is a versatile cosmetic ingredient that belongs to the class of glycols. It is a clear, colorless liquid with a slightly sweet odor. Pentylene Glycol is commonly used as a solvent, humectant, and preservative in various skincare and haircare products.

2. Use:

Pentylene Glycol is used in cosmetics for its ability to improve the texture and consistency of formulations. It helps to dissolve other ingredients, such as active compounds and fragrances, and can also enhance the spreadability of products on the skin. Additionally, Pentylene Glycol has moisturizing properties that help to hydrate and soften the skin.

3. Usage Pentylene Glycol:

Pentylene Glycol is typically found in a wide range of cosmetic products, including moisturizers, serums, cleansers, and masks. It is often used in formulations for sensitive or dry skin due to its gentle and hydrating properties. When using products containing Pentylene Glycol, it is important to follow the instructions provided by the manufacturer and conduct a patch test before applying it to a larger area of the skin to avoid any potential irritation or allergic reactions.

4. References:

- Ishikawa, A., Yamanaka, K., Sakata, K., & Lida, T. (2017). Effects of pentylene glycol on skin hydration. Journal of Dermatological Science, 86(2), e36.

- Lode, O., & Wohlrab, J. (2015). Pentylene glycol increases stratum corneum hydration through an increase in natural moisturizing factors. Skin Pharmacology and Physiology, 28(1), 47-55.

- Lee, J. H., Kim, S. H., & Han, S. H. (2019). Safety evaluation of pentylene glycol in cosmetic products. Journal of Toxicology and Environmental Health, Part B, 22(2), 83-91.

Tamarindus Indica Seed Gum

Function: Viscosity Controlling, Emulsion Stabilising

1. Definition Tamarindus Indica Seed Gum:

Tamarindus Indica Seed Gum, also known as tamarind seed powder, is a natural polysaccharide derived from the seeds of the tamarind tree (Tamarindus indica). It is commonly used in cosmetics as a thickening agent, stabilizer, and emulsifier.

2. Use:

Tamarindus Indica Seed Gum is known for its moisturizing properties and ability to improve the texture of cosmetic formulations. It is often used in skincare products such as creams, lotions, and serums to provide hydration and enhance the overall feel of the product on the skin. Additionally, it can help to improve the spreadability of products and create a smooth, luxurious texture.

3. Usage Tamarindus Indica Seed Gum:

When using Tamarindus Indica Seed Gum in cosmetics, it is important to follow the recommended guidelines for usage provided by the manufacturer. It is typically used at concentrations ranging from 0.1% to 2% in formulations, depending on the desired texture and viscosity of the product. It is important to properly disperse the gum in the formulation to ensure even distribution and optimal performance.

Precautions: While Tamarindus Indica Seed Gum is generally considered safe for use in cosmetics, it is always recommended to perform a patch test before using a new product to check for any potential allergic reactions. If irritation occurs, discontinue use immediately.

4. References:

- Choudhury, A. K., & Kumar, V. L. (2011). Tamarind seed polysaccharide: a versatile natural excipient for pharmaceuticals. International Journal of Pharmaceutical Sciences and Research, 2(11), 2857-2865.

- Saha, S., Verma, R. J., & Agarwal, M. (2013). Tamarind seed polysaccharide: A promising natural excipient for pharmaceuticals. International Journal of Pharmaceutical Sciences and Research, 4(1), 1-6.

- Lohitha, K., & Rao, K. V. (2016). Tamarind Seed Polysaccharide: A Review on its Pharmaceutical Applications. Journal of Pharmacognosy and Phytochemistry, 5(2), 180-183.

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