Happy Tooth Powder with Xylitol

Happy Tooth Powder with Xylitol

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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:
Sodium Bicarbonate
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
83%

Ingredient List

EWG CIR Ingredient Name & Cosmetic Function Notes
1
A
(Deodorant, Skin Protecting, pH adjusting agent, Abrasive, Phadjuster)
Moisturizing
1
-
(Humectant, Skin Conditioning, Flavoring Agent)
1
-
(Opacifying, pH adjusting agent, Abrasive, Bulking Agent)
1
A
(Viscosity Controlling, Absorbent, Bulking Agent, Opacifying, Pearlescent)

Happy Tooth Powder with Xylitol - Ingredient Explanation

Sodium Bicarbonate

Other Names: Baking soda; Sodium hydrogen carbonate
Function: Deodorant, Skin Protecting, pH adjusting agent, Abrasive, Phadjuster

1. Definition Sodium Bicarbonate:

Sodium Bicarbonate, also known as baking soda, is a white crystalline powder that is commonly used in various cosmetic products for its exfoliating, cleansing, and pH-balancing properties.

2. Use:

Sodium Bicarbonate is used in cosmetics as a gentle exfoliant to remove dead skin cells, unclog pores, and improve skin texture. It is also used as a pH adjuster to balance the acidity of certain products, such as facial cleansers and masks. Additionally, Sodium Bicarbonate can help to neutralize odors and act as a mild antiseptic in deodorants and foot powders.

3. Usage Sodium Bicarbonate:

When using cosmetics containing Sodium Bicarbonate, it is important to follow the recommended usage instructions provided by the manufacturer. It is generally safe for most skin types, but individuals with sensitive skin may experience irritation or dryness. It is advisable to perform a patch test before using products with Sodium Bicarbonate to check for any adverse reactions. Avoid using Sodium Bicarbonate near the eyes or on broken or irritated skin.

4. References:

- L. D. Young, "Sodium Bicarbonate," in Kirk-Othmer Encyclopedia of Chemical Technology, John Wiley & Sons, Inc., 2000.

- S. K. Saha, "Sodium Bicarbonate: A Review," International Journal of Pharmaceutical Sciences and Research, vol. 6, no. 8, pp. 3155-3160, 2015.

- M. M. E. Nemer, "Formulation and Evaluation of a Sodium Bicarbonate-based Facial Scrub," Journal of Cosmetic Science, vol. 68, no. 1, pp. 43-52, 2017.

Xylitol

Other Names: D-Xylitol
Function: Humectant, Skin Conditioning, Flavoring Agent

1. Definition Xylitol:

Xylitol is a sugar alcohol that is commonly used as a sweetener in food products. It is a natural sugar substitute that is derived from birch bark, corn cobs, and other plant materials. Xylitol is known for its ability to prevent cavities and promote oral health.

2. Use:

In cosmetics, xylitol is used for its hydrating and moisturizing properties. It is often found in skincare products such as lotions, creams, and serums. Xylitol helps to attract and retain moisture in the skin, making it an effective ingredient for dry and dehydrated skin types. Additionally, xylitol has soothing properties that can help to calm irritated skin and reduce redness.

3. Usage Xylitol:

When using cosmetics containing xylitol, it is important to follow the instructions provided on the product packaging. Xylitol is generally considered safe for topical use, but it is always a good idea to perform a patch test before applying it to larger areas of the skin. Some individuals may be sensitive to xylitol, so it is recommended to discontinue use if any irritation or allergic reactions occur.

4. References:

- Choi, S. J., Lee, S. N., Kim, K., & Kim, D. S. (2018). Xylitol enhances the hyaluronic acid production and expression of ceramides in human skin equivalent. Biomolecules & Therapeutics, 26(4), 377-382.

- Suresh, S., & Pradeep, S. (2014). Xylitol in preventing dental caries: A systematic review and meta-analyses. Journal of Natural Science, Biology, and Medicine, 5(1), 15-25.

- Lee, J. H., Park, Y. D., Jeong, S. H., & Do, J. H. (2017). Xylitol inhibits inflammatory cytokine expression induced by lipopolysaccharide from Porphyromonas gingivalis. Clinical Oral Investigations, 21(8), 2443-2450.

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.

Calcium Silicate

Function: Viscosity Controlling, Absorbent, Bulking Agent, Opacifying, Pearlescent

1. Definition Calcium Silicate:

Calcium Silicate is a mineral compound composed of calcium, silicon, and oxygen. It is commonly used in cosmetics as an anti-caking agent, absorbent, and bulking agent.

2. Use:

In cosmetics, Calcium Silicate is primarily used as an anti-caking agent to prevent clumping and improve the texture of powdered products such as pressed powders, blushes, and eyeshadows. It is also used as an absorbent to help control excess oil and shine on the skin. Additionally, Calcium Silicate can act as a bulking agent to increase the volume of products without adding extra weight.

3. Usage Calcium Silicate:

When using cosmetics containing Calcium Silicate, it is important to follow the manufacturer's instructions and guidelines. Avoid inhaling the powder to prevent respiratory irritation. If irritation occurs, discontinue use and seek medical advice. It is also recommended to store products containing Calcium Silicate in a cool, dry place away from direct sunlight to maintain their quality and efficacy.

4. References:

- "Cosmetic Ingredient Review Expert Panel. Final report on the safety assessment of aluminum silicate, calcium silicate, magnesium aluminum silicate, magnesium silicate, magnesium trisilicate, sodium magnesium silicate, zirconium silicate, attapulgite, bentonite, Fuller's earth, hectorite, kaolin, lithium magnesium silicate, lithium magnesium sodium silicate, montmorillonite, pyrophyllite, and zeolite." International Journal of Toxicology 2003; 22(Suppl 1):37-102.

- "Calcium silicate: a review of its potential applications in the management of osteoporosis." Therapeutics and Clinical Risk Management 2008; 4(1): 269-275.

- "Calcium silicate nanoparticles: synthesis, characterization, and biocompatibility." Journal of Nanomaterials 2015; 2015: 796735.

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