Ingredients
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Analysis not yet available for this ingredient.
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Butylene glycol is a humectant—a type of ingredient that draws water into the skin and helps it stay hydrated. It's a small, lightweight molecule commonly used in moisturizers to improve hydration without leaving a heavy feel on the skin.
Benefits
- Increases skin hydration and moisture retention
- Lightweight and absorbs quickly
- Helps other active ingredients penetrate the skin more effectively
Science: Research demonstrates that butylene glycol, when combined with other humectants (like glycerin and hyaluronic acid) and occlusive ingredients in moisturizers, significantly improves skin hydration in both healthy skin and compromised skin conditions such as atopic dermatitis. It is recognized as a safe, effective humectant in dermatological formulations.
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Glycerin is a naturally derived humectant—a ingredient that draws moisture from the air into your skin. It's one of the most widely used and well-studied moisturizing agents in skincare, helping skin feel softer and more hydrated.
Benefits
- Attracts and retains moisture in the skin
- Improves skin hydration and softness
- Helps strengthen skin barrier function
- Suitable for most skin types, including sensitive skin
Science: The Cosmetic Ingredient Review Expert Panel concluded glycerin is safe as used in cosmetics across all concentrations. Research shows glycerin effectively improves skin hydration and is well-tolerated with minimal irritation risk. It is also referenced in clinical guidelines for managing inflammatory skin conditions and maintaining skin integrity.
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Sodium hyaluronate is the salt form of hyaluronic acid, a naturally occurring substance found in your skin that acts like a moisture magnet. In skincare products, it absorbs water from the environment and binds it to your skin, helping to hydrate and plump the skin's surface.
Benefits
- Delivers intense hydration to the skin
- Helps reduce the appearance of fine lines by improving skin moisture
- Supports skin barrier function
- Suitable for all skin types, including sensitive and oily skin
Potential concerns
- In very dry climates with low humidity, it may draw moisture from deeper skin layers if not sealed with an occlusive product
- Rare allergic reactions are possible but extremely uncommon
Science: While the provided research focuses on intra-articular injections for joint health (showing good safety and efficacy), hyaluronic acid and its salt form are well-established in dermatology for topical hydration. The molecule's safety profile is well-documented across decades of use in medical and cosmetic applications, with severe adverse reactions being extremely rare.
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Phenoxyethanol is a preservative that prevents bacteria, yeast, and mold from growing in skincare products, helping them stay fresh and safe to use. It has been used safely in cosmetics for decades and is effective at very low concentrations.
Benefits
- Prevents microbial contamination and product spoilage
- Broad-spectrum antimicrobial activity against bacteria and yeast
- Minimal impact on beneficial skin bacteria when used at approved levels
Potential concerns
- Rare allergic contact dermatitis in sensitive individuals
- May cause irritation if used in products at concentrations above 1%
Science: The European Scientific Committee on Consumer Safety considers phenoxyethanol safe for all consumers, including children, at concentrations up to 1%. Adverse effects observed in animal studies required exposure levels approximately 200 times higher than those in cosmetic products, and it is classified as one of the most well-tolerated preservatives in cosmetics.
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Propanediol is a lightweight humectant—a molecule that draws water into the skin to keep it hydrated. It's also used in cosmetic formulations as a solvent and preservative booster, helping products stay stable and feel smooth on the skin.
Benefits
- Hydrates and moisturizes the skin
- Improves product texture and spreadability
- Helps preserve formulations naturally
Science: Propanediol can be produced through bio-based fermentation (from glycerol using microorganisms), making it an environmentally friendly alternative to traditional chemical synthesis. It is widely recognized as safe in cosmetic and food applications, with established use as both a humectant and preservative enhancer.
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Sodium lactate is a salt derived from lactic acid that acts as a humectant and pH buffer in skincare products. It helps draw moisture into the skin and maintain the product's stability.
Benefits
- Humectant that attracts and retains water in the skin
- Helps maintain skin hydration and plumpness
- Gentle pH buffer that stabilizes formulations
Science: Limited peer-reviewed data available specifically for topical skincare use. The provided research focuses on medical applications (intravenous use in shock treatment) and cellular mechanisms unrelated to cosmetic skincare; these do not directly inform safety or efficacy for topical skin application.
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Polysorbate 20 is a mild emulsifier and solubilizer commonly used in skincare products to help mix oil and water-based ingredients together and keep them stable. It's also used to help dissolve fragrance and active ingredients evenly throughout a formula.
Benefits
- Helps create stable, smooth textures by blending incompatible ingredients
- Improves product consistency and shelf life
- Allows even distribution of active ingredients and fragrance
Potential concerns
- May cause irritation or allergic reactions in people with sensitive skin
- Can occasionally strip skin's natural oils if used in high concentrations
- Some individuals report sensitivity to polysorbates, though this is relatively uncommon
Science: The provided study examined polysorbate 20 as a formulation component in a clinical cancer treatment (vidutolimod), not as a cosmetic ingredient. Limited peer-reviewed data exists specifically evaluating polysorbate 20 safety in topical skincare; however, it is widely used globally and recognized as safe by major regulatory bodies (FDA, EU) at typical cosmetic concentrations (typically under 5%).
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Trisodium Ethylenediamine Disuccinate is a chelating agent, which means it binds to trace metals in cosmetic formulas to keep products stable and prevent discoloration or degradation. It's used in small amounts primarily to maintain product quality rather than directly benefit your skin.
Benefits
- Extends product shelf life
- Prevents oxidation and discoloration
- Improves formula stability
Science: Limited peer-reviewed data available for this ingredient. It is approved for cosmetic use under EU and US regulations as a chelating agent and is considered safe at the low concentrations used in skincare formulations.
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Pentylene glycol is a lightweight humectant—a ingredient that draws water into the skin to improve hydration and texture. It's commonly used in serums, sunscreens, and moisturizers as a preservative booster and skin-conditioning agent.
Benefits
- Improves skin hydration by attracting moisture
- Lightweight feel, absorbs quickly without heaviness
- Helps preserve product stability and extends shelf life
Potential concerns
- Rare contact allergy reported in sensitive individuals
- Emerging evidence suggests it may be an uncommon cosmetic allergen—if you have sensitive or reactive skin, patch test first
Science: Safety studies show a high margin of safety at standard use levels (87–671 in adults), with minimal skin penetration due to the ingredient's volatility. However, recent dermatological reports flag pentylene glycol as an emerging contact allergen in some individuals, warranting attention for those with sensitive skin.
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Tocopherol is a form of vitamin E, a fat-soluble antioxidant that protects skin from damage caused by free radicals and oxidative stress. It helps maintain skin's natural barrier function and is commonly used in skincare products to prevent premature aging and support overall skin health.
Benefits
- Protects skin from free radical damage and oxidative stress
- Supports skin barrier function and moisture retention
- May help reduce signs of aging caused by UV exposure and environmental damage
- Works as a lipid antioxidant to prevent degradation of skin oils
Science: Tocopherol (α-tocopherol) is recognized in peer-reviewed research as a key endogenous defense mechanism against oxidative stress in aging skin, particularly from UV-induced damage. Studies confirm it functions as a lipid-soluble antioxidant capable of preventing lipid peroxidation, with established efficacy in cosmetic and therapeutic applications.
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Chlorphenesin is a synthetic preservative used in skincare products to prevent bacterial and fungal growth, extending shelf life. It's a broad-spectrum antimicrobial agent that helps keep products safe from contamination during storage and use.
Benefits
- Prevents microbial contamination in skincare formulations
- Extends product shelf life
- Allows formulas to remain stable without refrigeration
Potential concerns
- May cause irritation to sensitive eyes and eye area when present in eye products
- Degrades under UV exposure, potentially creating more harmful breakdown products
- Limited long-term safety data in peer-reviewed literature
Science: Research shows chlorphenesin can be toxic to eye tissue cells at approved concentrations, particularly affecting meibomian glands. When exposed to sunlight, it breaks down into compounds like 4-chlorophenol that may be more ecotoxic than the original ingredient, though systemic absorption in skincare is typically minimal.
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Titanium dioxide is a naturally occurring mineral that works as a physical UV filter and opacifying agent in skincare products. It sits on the skin's surface and reflects and scatters UV rays to provide broad-spectrum sun protection, and is also commonly used in foundations and powders to create coverage and a matte finish.
Benefits
- Provides broad-spectrum UVA and UVB protection
- Physical (non-chemical) sun filter suitable for sensitive skin
- Helps create opaque, matte finishes in makeup and tinted products
Potential concerns
- May leave a white cast on darker skin tones due to its opacity
- Can feel slightly heavy or occlusive on very oily skin types
- Rarely, inhalation of airborne powder particles may be a concern in occupational settings, though not in typical consumer use
Science: Titanium dioxide has a long history of safe use in cosmetics and is approved by the FDA, EU, and other major regulatory bodies as a sunscreen active ingredient. It is considered non-toxic and non-penetrating when applied topically in skincare products.
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Iron Oxides (CI 77491) is a naturally derived colorant used to provide red, brown, and yellow tints to skincare and cosmetic products. It's an inert mineral pigment that sits on the skin's surface and doesn't penetrate deeply, making it primarily a coloring agent rather than an active skincare ingredient.
Benefits
- Provides natural color to products without synthetic dyes
- Stable and long-lasting pigment that doesn't fade easily
- Non-toxic mineral alternative to synthetic colorants
Potential concerns
- Minimal risk for most people; however, those with very sensitive skin or metal sensitivities should patch-test first
- Can potentially cause irritation if product formulation is poor or concentration is unusually high
Science: Iron Oxides are widely approved as safe colorants by regulatory bodies including the FDA and EU. Limited peer-reviewed data exists specifically examining consumer skincare use, but decades of cosmetic safety data support their safety profile in topical applications.
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CI 77499 is iron oxides (specifically black iron oxide), a mineral colorant approved for use in cosmetics. It's primarily used to add color and pigmentation to skincare and makeup products, and may have mild antioxidant properties.
Benefits
- Provides stable color to products
- Iron oxides are generally well-tolerated on skin
Potential concerns
- Minimal risks for topical use; not an irritant or sensitizer for most people
- May accumulate in pores if used in heavy formulations, though this is rare
Science: Iron oxides are approved colorants in cosmetics by regulatory bodies including the FDA and EU. Limited peer-reviewed data specifically evaluates CI 77499, but iron oxides have a long history of safe use in color cosmetics with no significant safety concerns identified.
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Caprylic/Capric Triglyceride is a lightweight oil derived from coconut that acts as an emollient and helps formulations blend smoothly. It softens skin and reduces water loss by creating an occlusive barrier on the skin's surface.
Benefits
- Improves skin hydration and reduces transepidermal water loss (TEWL)
- Lightweight, non-greasy feel compared to heavier oils
- Helps deliver other active ingredients deeper into the skin
- Smooth, silky texture in skincare formulations
Science: Research shows that emulsions containing 15% caprylic/capric triglyceride significantly increase skin hydration and reduce water loss in healthy subjects. The ingredient is also used as an effective carrier oil in nanoemulsions to enhance penetration of active compounds into skin.
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Cellulose gum (also called carboxymethyl cellulose or CMC) is a natural thickener derived from plant cellulose. In skincare products, it creates a smooth texture, helps formulas spread evenly, and can form a light protective film on the skin's surface.
Benefits
- Improves product texture and spreadability
- Provides light film-forming properties for a polished feel
- Generally well-tolerated by most skin types
- Natural origin and biodegradable
Potential concerns
- May occasionally cause irritation in very sensitive skin
- Can feel sticky or heavy at high concentrations
Science: Cellulose gum is recognized as a safe, biocompatible polysaccharide widely used across food, cosmetic, and pharmaceutical industries. No significant safety concerns were identified in the available literature for cosmetic applications.
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Sodium Hydroxide is a strong alkaline chemical used in skincare products primarily as a pH buffer to neutralize acids and adjust the product's pH to safe levels for skin. It is not an active skincare ingredient and appears only in trace amounts in finished products.
Potential concerns
- In concentrated form, sodium hydroxide is caustic and can cause severe chemical burns; however, in cosmetic products it is diluted and pH-buffered to safe levels
- Undiluted or highly concentrated sodium hydroxide should never contact skin directly
Science: The provided research discusses sodium hydroxide only in a specialized medical context (10% solution for surgical cauterization of ingrown toenails), which is not relevant to cosmetic skincare use. In properly formulated skincare products, sodium hydroxide is used in minimal concentrations solely for pH adjustment and is considered safe by regulatory bodies including the FDA and EU.
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Triethoxycaprylylsilane is a silicone-based coating agent used to modify the surface of pigments (like titanium dioxide and zinc oxide) in cosmetic formulations. It makes pigments more compatible with cosmetic formulas and can improve product texture and stability.
Benefits
- Improves pigment dispersion in formulations
- Enhances product stability and texture
- Reduces pigment clumping in finished products
Potential concerns
- Limited safety data available for direct skin exposure
- Inhalation toxicity concerns noted in occupational settings with nanoparticles
Science: Available research focuses on triethoxycaprylylsilane as a coating on zinc oxide and titanium dioxide nanoparticles in occupational inhalation studies, not topical skincare use. In cosmetic formulations, this ingredient functions as a surface modifier for pigments and is not typically absorbed through intact skin in meaningful amounts.
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Palmitoyl Tetrapeptide-7 is a synthetic peptide (a short chain of amino acids) combined with palmitic acid, designed to signal skin cells to produce more collagen and support skin firmness. It's often marketed as a targeted anti-aging ingredient that may help reduce the appearance of fine lines and improve skin elasticity.
Benefits
- May support collagen production to improve skin firmness
- Potentially helps reduce the appearance of fine lines and wrinkles
- Generally well-tolerated by most skin types
Potential concerns
- Limited real-world testing data on effectiveness in typical skincare formulations
- May be irritating to very sensitive skin at high concentrations
- Peptides can be unstable and may lose potency depending on product formulation and storage
Science: Limited peer-reviewed data available for this specific ingredient. While peptides in general have shown promise in supporting skin health and collagen signaling, efficacy depends heavily on product formulation, concentration, and stability.
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Carbomer is a thickening agent and stabilizer that gives skincare products their gel-like texture. It helps create a smooth, spreadable consistency and can hold active ingredients in place on the skin for better absorption.
Benefits
- Creates a smooth, easy-to-apply gel texture
- Helps stabilize and thicken formulations
- Can improve how long active ingredients stay on the skin
- Allows better delivery of beneficial compounds into deeper skin layers
Potential concerns
- Can occasionally cause irritation or sensitivity in very reactive skin types
- Requires proper pH adjustment in formulations (formulators use this, not consumers)
Science: Research shows carbomer is commonly used as a gel base in advanced skincare delivery systems, including those designed for anti-inflammatory and healing treatments. Studies indicate it effectively works with active ingredients like nanoparticles and botanical extracts to improve their penetration and efficacy on skin.
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Shea butter is a natural fat extracted from the nuts of the African shea tree. In skincare, it works as a rich moisturizer and skin conditioning agent that helps soften and protect the skin barrier.
Benefits
- Deep moisturization and hydration
- Skin conditioning and softening
- May help improve skin texture and elasticity
Potential concerns
- May cause sensitivity or irritation in some individuals; formulations should be tested to ensure non-sensitizing properties
- Quality varies by source—impurities in poorly processed shea butter could potentially cause irritation
Science: A 2024 safety assessment by the Cosmetic Ingredient Review Expert Panel concluded that shea-derived ingredients are safe at current use levels and concentrations when formulated to be non-sensitizing. Formulators should monitor for impurities and be aware of cumulative botanical constituents in multi-ingredient products.
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Fragrance (Parfum) is a concentrated blend of aromatic compounds—including essential oils, aroma chemicals, and natural extracts—added to skincare products to provide a pleasant scent. It serves no active skincare benefit and is purely for sensory appeal.
Benefits
- Enhances the sensory experience of using the product
- Can make the skincare routine feel more luxurious or enjoyable
Potential concerns
- May cause irritation or allergic contact dermatitis, especially in sensitive skin
- Can trigger headaches or respiratory sensitivity in some people
- Fragrance compounds may be comedogenic (pore-clogging) in acne-prone skin
- Some fragrance components degrade over time and can become irritating
Science: Fragrance is a common cause of contact dermatitis and allergic reactions in skincare. The specific composition of 'Fragrance' blends is proprietary and undisclosed, making it difficult to identify which compounds may trigger individual sensitivities. People with sensitive or reactive skin often benefit from fragrance-free alternatives.
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This is a synthetic polymer (plastic-like material) made by combining three different chemical building blocks. In skincare, it's used as a film-former and thickener to help products spread smoothly, create a light protective layer on skin, and improve texture and consistency.
Benefits
- Creates a smooth, even texture in formulas
- Helps products glide on skin without tackiness
- Provides light film-forming properties for long-wear products
Science: Limited peer-reviewed data available for this ingredient. It is a synthetic polymer commonly used in cosmetics and approved for use in the EU and US; safety is generally supported by its established use in cosmetic formulations, though specific dermatological studies are sparse.
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Meadowfoam seed oil is a lightweight plant oil extracted from meadowfoam seeds, prized for its exceptional stability and rich fatty acid profile. It absorbs quickly into skin while providing moisture and a silky feel, making it a popular choice in premium skincare formulations.
Benefits
- Deep moisturizing without heavy greasy residue
- Improves skin barrier function
- Rich in fatty acids and antioxidants
- Excellent oxidative stability compared to many other plant oils
Science: Limited peer-reviewed data available for this ingredient. Traditional use and cosmetic industry data suggest excellent safety and skin tolerance, with a composition dominated by long-chain fatty acids (C20-C22) that support skin hydration and protection.
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Palmitoyl Tripeptide-1 (PT-1) is a peptide derived from amino acids that signals skin cells to boost collagen production. Research suggests it works particularly well when applied at night, aligning with your skin's natural repair cycle to support firmness and skin structure.
Benefits
- May promote collagen synthesis, particularly when applied at nighttime
- Could improve skin firmness and reduce the appearance of fine lines
- May enhance overall skin luminance and quality when used as part of a consistent routine
Science: A 2026 clinical trial (n=30) found that nightly PT-1 application synergistically improved collagen metabolism when combined with daytime baicalin, showing significant improvements in skin luminance (+16.29%), nasolabial fold depth (-36.35%), and firmness (+24.35%) over 8 weeks. The ingredient appears to work by boosting collagen synthesis during the skin's natural nighttime repair phase.
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Isononyl isononanoate is a lightweight synthetic oil derived from fatty acids, used in skincare products as an emollient to soften and smooth skin. It provides a silky texture without a greasy feel, making it popular in moisturizers, serums, and foundations.
Benefits
- Softens and conditions skin
- Provides lightweight moisture without heaviness
- Improves product texture and spreadability
Science: Research shows isononyl isononanoate has a very clean chemical profile with minimal volatile compounds—mainly just the ester itself and traces of isononyl alcohol from synthesis. It is well-tolerated in cosmetic formulations and considered safe for topical use.
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Sorbitan Oleate is an emulsifier derived from sorbitol (a natural sugar alcohol) and oleic acid (a fatty acid). It helps mix oil and water-based ingredients together in skincare formulations, creating a smooth, stable texture.
Benefits
- Stabilizes oil-and-water mixtures in creams and lotions
- Improves product texture and spreadability
- Allows better absorption of other skincare actives
Potential concerns
- Mild skin irritant in some individuals; generally minimal irritation in testing
- Rare allergic contact reactions reported (<1% in sensitive populations)
- May reduce skin's DNA repair capacity when exposed to UV radiation (in lab studies)
Science: The Cosmetic Ingredient Review Expert Panel concluded Sorbitan Oleate is safe for cosmetic use at concentrations typically below 10%. While generally well-tolerated with minimal irritation in clinical tests, one in vitro study noted it may interfere with UV-induced DNA repair in human cells—a concern primarily relevant when combined with sun exposure rather than the ingredient alone.
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This is a synthetic polymer made by chemically combining castor oil with IPDI (isophorone diisocyanate). It functions as a film-former and texture enhancer in skincare products, helping to create a smooth, even application and improve how products feel and spread on the skin.
Benefits
- Creates a smooth, even texture in formulations
- Helps products spread more easily across skin
- Provides film-forming properties for product adherence
Potential concerns
- Limited safety data available for this specific polymer
- Potential irritation in sensitive individuals (as with most synthetic polymers)
- IPDI is a reactive chemical; residual unreacted material could theoretically cause sensitivity, though this is unlikely in properly formulated products
Science: Limited peer-reviewed data available for this ingredient. Safety relies on manufacturer compliance with cosmetic regulations and proper synthesis to minimize unreacted isocyanate residues. General polymer safety in cosmetics is well-established, but this specific copolymer lacks independent published studies.
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