Ingredient or product comparison
The Ordinary Natural Moisturizing Factors + HA Versus Dermatica Nourishing Ceramide + Peptide Moisturizer
The Ordinary Natural Moisturizing Factors + HA Versus Dermatica Nourishing Ceramide + Peptide Moisturizer Detailed comparison of The Ordinary Natural Moisturizing Factors + HA versus Dermatica Nourishing Ceramide + Peptide Moisturizer. This barrier-repair mois
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The Ordinary Natural Moisturizing Factors + HA Versus Dermatica Nourishing Ceramide + Peptide Moisturizer Detailed comparison of The Ordinary Natural Moisturizing Factors + HA versus Dermatica Nourishing Ceramide + Peptide Moisturizer. This barrier-repair moisturizer is formulated around Sodium Hyaluronate and Arginine to strengthen the skin barrier and hydrate skin. This barrier-repair moisturizer is formulated around Niacinamide and Ceramide NP to strengthen the skin barrier and soften the look of wrinkles. Water Caprylic/Capric Triglyceride Cetyl Alcohol Propanediol Stearyl Alcohol Glycerin Sodium Hyaluronate Arginine Aspartic Acid Glycine Alanine Serine Valine Isoleucine Proline Threonine Histidine Phenylalanine Glucose Maltose Fructose Trehalose Sodium PCA PCA Sodium Lactate Urea Allantoin Linoleic Acid Oleic Acid Phytosteryl Canola Glycerides Palmitic Acid Stearic Acid Lecithin Triolein Tocopherol Carbomer Isoceteth-20 Polysorbate 60 Sodium Chloride Citric Acid Trisodium Ethylenediamine Disuccinate Pentylene Glycol Triethanolamine Sodium Hydroxide Phenoxyethanol Chlorphenesin Water, Caprylic/Capric Triglyceride, Cetyl Alcohol, Propanediol, Stearyl Alcohol, Glycerin, Sodium Hyaluronate, Arginine, Aspartic Acid, Glycine, Alanine, Serine, Valine, Isoleucine, Proline, Threonine, Histidine, Phenylalanine, Glucose, Maltose, Fructose, Trehalose, Sodium PCA, PCA, Sodium Lactate, Urea, Allantoin, Linoleic Acid, Oleic Acid, Phytosteryl Canola Glycerides, Palmitic Acid, Stearic Acid, Lecithin, Triolein, Tocopherol, Carbomer, Isoceteth-20, Polysorbate 60, Sodium Chloride, Citric Acid, Trisodium Ethylenediamine Disuccinate, Pentylene Glycol, Triethanolamine, Sodium Hydroxide, Phenoxyethanol, Chlorphenesin Cetearyl Alcohol Butyrospermum Parkii Butter C12-15 Alkyl Benzoate Niacinamide Vitis Vinifera Oil Dimethicone Panthenol Sorbitan Stearate Squalane Tocopheryl Acetate Butylene Glycol Polyacrylate Crosspolymer-6 Sodium Lauroyl Lactylate Centella Asiatica Extract Ethylhexylglycerin Ceramide NP Ceramide AP Phytosphingosine Cholesterol Polysorbate 20 Xanthan Gum Palmitoyl Tripeptide-1 Palmitoyl Tetrapeptide-7 Ceramide EOP Water, Cetearyl Alcohol, Glycerin, Butyrospermum Parkii Butter, C12-15 Alkyl Benzoate, Niacinamide, Vitis Vinifera Oil, Dimethicone, Panthenol, Sorbitan Stearate, Squalane, Tocopheryl Acetate, Phenoxyethanol, Butylene Glycol, Polyacrylate Crosspolymer-6, Sodium Lauroyl Lactylate, Centella Asiatica Extract, Ethylhexylglycerin, Sodium Hyaluronate, Trisodium Ethylenediamine Disuccinate, Citric Acid, Carbomer, Ceramide NP, Ceramide AP, Phytosphingosine, Cholesterol, Polysorbate 20, Xanthan Gum, Palmitoyl Tripeptide-1, Palmitoyl Tetrapeptide-7, Ceramide EOP These ingredients are found in both products. Ingredients higher up in an ingredient list are typically present in a larger amount. Carbomer is a synthetic thickening and gelling agent. It's basically the ingredient that gives a lot of serums, gels, creams, and sunscreens their smooth, non-sticky texture. Although legally permitted at very high levels, carbomers are normally used at concentrations below 1%. It also needs to be neutralized to actually thicken, and because it is a large molecule, it doesn't really penetrate the skin barrier. Allergy-wise, the risk is very low. Clinical studies show carbomers have low potential for skin irritation/sensitization even at concentrations up to 100%. A 2024 UK study patch-tested 1,302 patients and found true allergy to the parent group of carbomer to be rare with no confirmed relevant reactions. Citric Acid is an alpha hydroxy acid (AHA) naturally found in citrus fruits like oranges, lemons, and limes. Like other AHAs, citric acid can exfoliate skin by breaking down the bonds that hold dead skin cells together. This helps reveal smoother and brighter skin underneath. However, this exfoliating effect only happens at high concentrations (20%) which can be hard to find in cosmetic products. Due to this, citric acid is usually included in small amounts as a pH adjuster. This helps keep products slightly more acidic and compatible with skin's natural pH. In skincare formulas, citric acid can: While it can provide some skin benefits, research shows lactic acid and glycolic acid are generally more effective and less irritating exfoliants. Most citric acid used in skincare today is made by fermenting sugars (usually from molasses). This synthetic version is identical to the natural citrus form but easier to stabilize and use in formulations. Rosacea skin has a lower threshold for acids generally, with 62.5% of rosacea subjects in one study reacting to lactic acid in a sting test. This is why we mark citric acid as a potential rosacea trigger. However, this ingredient shows up as a pH adjuster or chelator at roughly 0.1-1% in many products. These low levels are unlikely to be an issue for rosacea skin and becomes a potential trigger at exfoliating concentrations (20%). Because everybody's skin is unique, we recommend a patch test if you are unsure. Glycerin (or glycerol) is a compound naturally found in your skin. It's a powerhouse humectant that pulls water into the stratum corneum. Topically, glycerin does several things at once: Your skin makes glycerin on its own (mostly from sebaceous oil breakdown) and shuttles it to your outermost layer of skin, or your epidermis, via aquaporin-3. Aquaporin-3 is a transporter that is essential for normal skin hydration, elasticity, and repair. Interestingly, mice lacking in AQP3 have dry and less elastic skin that can be fully corrected with glycerin. This ingredient is non-irritating, plays well with almost every ingredient, and works across all skin types. Typical use is