Medline Remedy Specialized Prevent Silicone Cream

Medline Remedy Specialized Prevent Silicone 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
Brightening
Brightening
from (1) ingredient:
Bisabolol
Cleansing
Cleansing
from (5) ingredient:
Stearic Acid Peg/ Ppg 18/ 18 Dimethicone Zea Mays (Corn) Oil C12 13 Pareth 3 C12 13 Pareth 23
Moisturizing
Moisturizing
from (4) ingredient:
Glycerin Camellia Sinensis (Green Tea) Leaf Extract Dimethiconol Jojoba Esters
Promotes Wound Healing
Promotes Wound Healing
from (1) ingredient:
Bisabolol
Anti Aging
Anti Aging
from (1) ingredient:
Tocopheryl Acetate
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
2
Sensitive skin
Sensitive skin
Unknown
Ingredient Safety Breakdown (EWG Health Ratings)
Low Risk
Moderate Risk
High Risk
Unknown
70%

Ingredient List

EWG CIR Ingredient Name & Cosmetic Function Notes
1
-
(Skin Conditioning, Viscosity Controlling, Viscosity Increasing Agent, Emulsion Stabilising)
-
-
1
2
A
Promotes Wound Healing
Brightening
1
A
(Skin Conditioning, Emollient)

Medline Remedy Specialized Prevent Silicone Cream - Ingredient Explanation

7 Dehydrocholesterol

Other Names: Provitamin D3
Function: Skin Conditioning, Viscosity Controlling, Viscosity Increasing Agent, Emulsion Stabilising

1. Definition 7 Dehydrocholesterol:

7-Dehydrocholesterol is a precursor of vitamin D3 in the skin and is also known as provitamin D3. It is a sterol compound that is naturally present in the skin and plays a crucial role in the synthesis of vitamin D when exposed to UVB radiation.

2. Use:

7-Dehydrocholesterol is commonly used in cosmetics and skincare products for its ability to promote the production of vitamin D in the skin. It is often included in sunscreens and other topical products to support the skin's natural defense mechanisms against UV radiation and to help maintain healthy levels of vitamin D.

3. Usage 7 Dehydrocholesterol:

When using skincare products containing 7-Dehydrocholesterol, it is important to follow the manufacturer's instructions and guidelines for application. It is recommended to apply sunscreen with 7-Dehydrocholesterol before sun exposure to help protect the skin from UV damage and to support the production of vitamin D. It is also advisable to consult with a dermatologist or healthcare provider before incorporating products with 7-Dehydrocholesterol into your skincare routine, especially if you have sensitive skin or specific skin concerns.

4. References:

- Holick, M. F. (2007). Vitamin D deficiency. New England Journal of Medicine, 357(3), 266-281.

- Bikle, D. D. (2014). Vitamin D metabolism, mechanism of action, and clinical applications. Chemistry & biology, 21(3), 319-329.

- Reichrath, J. (2004). The challenge resulting from positive and negative effects of sunlight: how much solar UV exposure is appropriate to balance between risks of vitamin D deficiency and skin cancer?. Progress in biophysics and molecular biology, 92(1), 9-16.

Aphanizomenon Flos Aquae (Algae Extract)

1. Definition Aphanizomenon Flos-Aquae Extract:

Aphanizomenon Flos-Aquae Extract is a natural ingredient derived from a type of blue-green algae found in freshwater lakes. It is known for its nutrient-rich composition, containing vitamins, minerals, amino acids, and antioxidants.

2. Use:

Aphanizomenon Flos-Aquae Extract is commonly used in skincare products for its moisturizing, anti-inflammatory, and anti-aging properties. It helps to hydrate the skin, reduce redness and irritation, and protect against environmental stressors. Additionally, it can help improve the overall appearance and texture of the skin, promoting a more youthful and radiant complexion.

3. Usage Aphanizomenon Flos-Aquae Extract:

Aphanizomenon Flos-Aquae Extract is typically found in creams, serums, masks, and other skincare formulations. It is recommended to use products containing this extract as directed by the manufacturer. As with any new skincare ingredient, it is advisable to perform a patch test before applying it to the entire face to check for any potential allergic reactions or sensitivities.

4. References:

- Gershwin ME, Belay A. Spirulina in Human Nutrition and Health. CRC Press; 2008.

- Dartsch PC. Antioxidant potential of selected Spirulina platensis preparations. Phytother Res. 2008;22(5):627-633. doi:10.1002/ptr.2369

- Jensen GS, Drapeau C, Lenninger M, Benson KF. Clinical safety of a high dose of Phycocyanin-enriched Aphanizomenon flos-aquae. J Med Food. 2000;3(4):159-167. doi:10.1089/jmf.2000.3.159

Bisabolol

Other Names: Bisabolol; α-bisabolol; a-bisabolol; 1-Methyl-4-(1,5-dimethyl-1-hydroxyhex-4(5)-enyl)cyclohexene-1; Levomenol

1. Definition Bisabolol:

Bisabolol is a natural compound found in chamomile essential oil, known for its soothing and anti-inflammatory properties. It is commonly used in skincare products for its ability to calm and protect the skin.

2. Use:

Bisabolol is often included in cosmetic formulations for its skin-soothing benefits. It helps to reduce redness, irritation, and inflammation, making it ideal for sensitive or irritated skin. Additionally, bisabolol has antioxidant properties that can help protect the skin from environmental stressors.

3. Usage Bisabolol:

Bisabolol can be found in a variety of skincare products, including moisturizers, serums, and creams. It is typically used in concentrations of 0.1-1% in formulations. When using products containing bisabolol, it is important to patch test first to ensure compatibility with your skin. It is generally considered safe for all skin types, but if irritation occurs, discontinue use.

4. References:

- Sharifi-Rad, J., et al. (2018). Bisabolol: A monoterpenoid with therapeutic potential. BioMed Research International, 2018.

- Costa, R., et al. (2018). Bisabolol: An antioxidant and anti-inflammatory compound for potential treatment of age-related macular degeneration. European Journal of Pharmacology, 839, 134-141.

- Zeng, W., et al. (2020). Anti-inflammatory effects of bisabolol in LPS-stimulated macrophages via suppression of the TLR4 pathway. Molecular Medicine Reports, 21(2), 957-964.

Brassica Campestris (Rapeseed) Sterols

Other Names: Brassica campestris Sterols; Rapeseed Sterols
Function: Skin Conditioning, Emollient

1. Definition Brassica Campestris (Rapeseed) Sterols:

Brassica Campestris (Rapeseed) Sterols are plant-derived compounds extracted from the seeds of the Brassica Campestris plant. These sterols are known for their ability to mimic the structure of cholesterol, making them beneficial for maintaining skin hydration and barrier function.

2. Use:

Brassica Campestris (Rapeseed) Sterols are commonly used in cosmetics and skincare products for their moisturizing and emollient properties. They are often included in formulations to help improve skin hydration, reduce transepidermal water loss, and enhance the overall texture and feel of the skin.

3. Usage Brassica Campestris (Rapeseed) Sterols:

Brassica Campestris (Rapeseed) Sterols can be found in a variety of cosmetic products, including moisturizers, serums, and creams. They are typically used in concentrations ranging from 0.5% to 2% and are suitable for all skin types. When using products containing Brassica Campestris (Rapeseed) Sterols, it is important to follow the instructions provided by the manufacturer and perform a patch test before applying the product to the entire face to check for any potential allergic reactions.

4. References:

- Kim, J., Kim, D., & Yoon, S. (2013). Anti-inflammatory effect of Brassica campestris in LPS-stimulated RAW 264.7 macrophages. Molecular Medicine Reports, 7(5), 1583-1587.

- Mahr, B., & Schreier, P. (1999). Sterol biosynthesis in Brassica campestris seedlings. Phytochemistry, 50(6), 1009-1015.

- Yoon, S., Kim, J., & Kim, D. (2014). Brassica campestris suppresses inflammatory responses by down-regulating NF-κB signaling pathway in lipopolysaccharide-stimulated RAW 264.7 macrophages. International Journal of Molecular Medicine, 34(4), 1023-1030.

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