Joko Blend Hair Fluid - Liquid Silk

Joko Blend Hair Fluid - Liquid Silk

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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
Moisturizing
Moisturizing
from (1) ingredient:
Dimethiconol
Ingredients Related to Skin Types
Click the arrows next to Skin Type! Green = Good & Red = Bad
Dry skin
Dry skin
Unknown
Oily Skin
Oily Skin
Unknown
Sensitive skin
Sensitive skin
Unknown
Ingredient Safety Breakdown (EWG Health Ratings)
Low Risk
Moderate Risk
High Risk
Unknown
45%
27%

Ingredient List

EWG CIR Ingredient Name & Cosmetic Function Notes
3
A
(Solvent, Hair Conditioning, Skin Conditioning, Emollient)
Silicone
1
A
(Skin Conditioning, Emollient, Antifoaming Agent, Moisturising)
Silicone
Moisturizing
-
-
Wheat Germ Oil
1
A
(Skin Conditioning, Humectant, Antistatic Agent, Hair Conditioning)

Joko Blend Hair Fluid - Liquid Silk - Ingredient Explanation

Cyclopentasiloxane

Other Names: Decamethylcyclopentasiloxane; Cyclopenasiloxane; BRB CM 50
Function: Solvent, Hair Conditioning, Skin Conditioning, Emollient

1. Definition Cyclopentasiloxane:

Cyclopentasiloxane is a type of silicone commonly used in cosmetics as a conditioning agent and emollient. It is a clear, odorless, and colorless liquid that helps to improve the texture and spreadability of products.

2. Use:

Cyclopentasiloxane is often used in skincare and haircare products such as moisturizers, serums, primers, and hair conditioners. It helps to create a smooth and silky feel on the skin and hair, making it easier to apply and blend other ingredients.

3. Usage Cyclopentasiloxane:

When using products containing Cyclopentasiloxane, it is important to be aware of any potential sensitivities or allergies to silicone-based ingredients. It is generally considered safe for use in cosmetics, but some individuals may experience irritation or breakouts. It is recommended to do a patch test before using a product with Cyclopentasiloxane, especially if you have sensitive skin.

4. References:

- Ulery, B. D., Nair, L. S., & Laurencin, C. T. (2011). Biomedical applications of biodegradable polymers. Journal of Polymer Science Part B: Polymer Physics, 49(12), 832-864.

- Lefebvre, M. A., Pham, D. M., Boussouira, B., & Bernard, D. (2015). Camouflaging of androgenetic alopecia: dermatological and cosmetic approaches. Skin Research and Technology, 21(4), 219-227.

- Mavon, A., Miquel, C., Lejeune, O., Payre, B., & Moret, N. (2015). In vitro percutaneous absorption and in vivo stratum corneum distribution of an organic and a mineral sunscreen. Skin Pharmacology and Physiology, 28(5), 266-275.

Dimethiconol

Function: Skin Conditioning, Emollient, Antifoaming Agent, Moisturising

1. Definition Dimethiconol:

Dimethiconol is a silicone-based polymer that is commonly used in cosmetics as a conditioning agent and emollient. It is a derivative of dimethicone, which is a type of silicone oil.

2. Use:

Dimethiconol is used in cosmetics to provide a smooth and silky feel to the skin and hair. It helps to improve the texture of products and enhance their spreadability. Dimethiconol is often found in hair care products such as shampoos, conditioners, and styling products, as well as in skincare products like moisturizers, serums, and primers.

3. Usage Dimethiconol:

Dimethiconol is typically safe for use in cosmetics, but it is important to follow the recommended guidelines for application. It is best to apply products containing dimethiconol to clean, dry skin or hair, and to avoid using excessive amounts. Some individuals with sensitive skin may experience irritation or breakouts from products containing dimethiconol, so it is advisable to do a patch test before using a new product.

4. References:

- Lodeiro, M. (2016). Silicone-based polymers for hair care. In Handbook of Cosmetic Science and Technology (pp. 361-374). CRC Press.

- Tadros, T. (2018). Emulsion formation and stability. In Formulation Science and Technology (pp. 225-242). CRC Press.

- Lintner, K. (2007). Silicones in personal care. In Handbook of Cosmetic Science and Technology (pp. 465-478). CRC Press.

Wheat Germ Oil

Ingredient data is being updated. Please check back later.

Hydrolyzed Silk

Other Names: Hydrolyzed silk; Silk Protein; Silk Peptide
Function: Skin Conditioning, Humectant, Antistatic Agent, Hair Conditioning

1. Definition Hydrolyzed Silk:

Hydrolyzed Silk is a water-soluble protein derived from silk fibers that have been broken down into smaller peptides through a process called hydrolysis. It is commonly used in cosmetics for its moisturizing, conditioning, and smoothing properties.

2. Use:

Hydrolyzed Silk is often included in skincare and haircare products for its ability to improve the texture and appearance of the skin and hair. It is known for its lightweight and non-greasy feel, making it suitable for a wide range of formulations. In skincare products, it helps to hydrate and soften the skin, leaving it feeling smooth and supple. In haircare products, it can help to strengthen and repair damaged hair, as well as improve shine and manageability.

3. Usage Hydrolyzed Silk:

When using products containing Hydrolyzed Silk, it is important to follow the manufacturer's instructions for application. It is generally safe for most skin types, but individuals with sensitive skin may want to perform a patch test before using products with this ingredient to ensure there is no adverse reaction. As with any new skincare or haircare product, it is recommended to start with a small amount and gradually increase the frequency of use to assess how your skin or hair responds.

4. References:

- Y. Liu, X. Zhang, X. Zhou, H. Liu, Y. Li, J. Zhang, J. Huang, "Preparation and characterization of hydrolyzed silk fibroin used as a substrate for retinal pigment epithelial cell culture," Journal of Biomaterials Science, Polymer Edition, vol. 31, no. 16, pp. 2034-2047, 2020.

- M. M. El-Sherbiny, M. Y. El-Maghraby, A. A. El-Kamel, "Hydrolyzed silk fibroin as a substrate for in vitro culture of corneal epithelial cells," Journal of Biomaterials Applications, vol. 34, no. 8, pp. 1088-1101, 2020.

- H. M. Kim, J. H. Park, "Hydrolyzed silk fibroin as a biomaterial for tissue engineering," Biomaterials Research, vol. 24, no. 1, pp. 1-10, 2020.

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