Ingredients – Sweet Chemistry, Inc.

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Matriyknes®

Our proprietary, clinically studied ECM-extracted polypeptides to help increase collagen and elastin density.

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Squalane

Reduces moisture loss and helps restore your skin's protective barrier.

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THD Ascorbate

A stable, oil-soluble form of vitamin C that brightens & increases collagen synthesis.

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Ceramides

Emollient that enhances and restores skin barrier.

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Seaweed Glycan

For intense bounce and to soothe irritation.

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Our ingredients

What Goes Into Our Formulas

Our formulas are built on thoughtful, purposeful ingredients selected for clinical evidence of efficacy and low potential to cause allergic contact dermatitis or sensitization.

Always at functional concentrations, never marketing levels.

A short-chain diol with dual functionality as a solvent and antimicrobial preservation booster, supporting formula safety and stability while maintaining a well-tolerated profile across all skin types. [Learn more about 1,2-Hexanediol](/content/blogs/ingredients/1-2-hexanediol "https://sweetchemistry.com/blogs/ingredients/1-2-hexanediol"/index.html).

A sustainably derived corn-sugar glycol with dual functionality: it attracts and retains water as a humectant while improving the solubility and skin penetration of the active ingredients surrounding it. One of the few multifunctional base ingredients that directly supports the delivery efficacy of every active it is paired with. [Learn more about 1,3-propanediol](/content/blogs/ingredients/1-3-propanediol "https://sweetchemistry.com/blogs/ingredients/1-3-propanediol"/index.html).

A non-essential amino acid and key component of the skin's natural moisturizing factor, contributing to the moisture balance and smooth surface texture that healthy skin maintains from within. [Learn more about Alanine](/content/blogs/ingredients/alanine "https://sweetchemistry.com/blogs/ingredients/alanine"/index.html).

A naturally occurring compound found in comfrey root that accelerates cellular renewal, soothes inflammation, and promotes a smooth, uniform skin texture without disrupting the barrier. [Learn more about allantoin](/content/blogs/ingredients/allantoin "https://sweetchemistry.com/blogs/ingredients/allantoin"/index.html).

A conditionally essential amino acid that plays a central role in collagen biosynthesis and the skin's natural wound-healing response, supporting the formation of new connective tissue at the dermal level. [Learn more about Arginine](/content/blogs/ingredients/arginine "https://sweetchemistry.com/blogs/ingredients/arginine"/index.html).

A naturally occurring amino acid and component of the skin's natural moisturizing factor, supporting the metabolic and structural pathways that maintain skin density, resilience, and long-term hydration. [Learn more about aspartic acid](/content/blogs/ingredients/aspartic-acid "https://sweetchemistry.com/blogs/ingredients/aspartic-acid"/index.html).

A clinically studied polysaccharide that delivers intense surface hydration, activates skin's collagen-producing fibroblasts, and modulates the immune response to calm chronic low-grade inflammation. [Learn more about beta-glucan](/content/blogs/ingredients/beta-glucan "https://sweetchemistry.com/blogs/ingredients/beta-glucan"/index.html).

Produced through sorbitol fermentation and engineered to closely mimic the oligosaccharides in the skin's own extracellular matrix, giving it a uniquely strong affinity for skin proteins. It forms a protective, moisture-retaining film at the surface while providing documented soothing and anti-irritation activity. [Learn more about biosaccharide gum-1](/content/blogs/ingredients/biosaccharide-gum-1 "https://sweetchemistry.com/blogs/ingredients/biosaccharide-gum-1"/index.html).

A naturally occurring monocyclic sesquiterpene alcohol derived from chamomile, recognized for its skin-calming, anti-inflammatory properties and its ability to improve the penetration of surrounding active ingredients. [Learn more about bisabolol](/content/blogs/ingredients/bisabolol "https://sweetchemistry.com/blogs/ingredients/bisabolol"/index.html).

One of the most effective natural emollients for dry skin, providing a rich source of oleic and stearic fatty acids alongside triterpene alcohols with documented anti-inflammatory and barrier-repair activity. [Learn more about Shea Butter](/content/blogs/ingredients/shea-butter "https://sweetchemistry.com/blogs/ingredients/shea-butter"/index.html).

A lightweight synthetic ester that improves spreadability, enhances skin feel, and aids in the even dispersion of actives, contributing to the clean, non-greasy finish that allows high active concentrations to absorb completely. [Learn more about C12-15 alkyl benzoate](/content/blogs/ingredients/c12-15-alkyl-benzoate "https://sweetchemistry.com/blogs/ingredients/c12-15-alkyl-benzoate"/index.html).

One of the most research-supported plant antioxidants in skincare, exceptionally rich in EGCG and polyphenolic catechins that neutralize free radicals and calm inflammation at the skin's surface. [Learn more about camellia sinensis leaf extract](/content/blogs/ingredients/green-tea-camellia-sinensis-leaf-extract "https://sweetchemistry.com/blogs/ingredients/green-tea-camellia-sinensis-leaf-extract"/index.html).

A lightweight, highly refined ester derived from coconut oil and glycerin that absorbs rapidly and enhances the delivery of fat-soluble actives without heaviness, residue, or comedogenic risk. [Learn more about Caprylic/Capric Triglyceride](/content/blogs/ingredients/caprylic-capric-triglyceride "https://sweetchemistry.com/blogs/ingredients/caprylic-capric-triglyceride"/index.html).

A naturally derived 1,2-diol with dual functionality as a skin-conditioning emollient and a broad-spectrum antimicrobial agent, contributing to formula safety while leaving skin feeling soft and comfortable. [Learn more about caprylyl glycol](/content/blogs/ingredients/caprylyl-glycol "https://sweetchemistry.com/blogs/ingredients/caprylyl-glycol"/index.html).

A synthetic polymer network that maintains ingredient suspension and controls viscosity, ensuring that an exceptionally high active concentration remains evenly distributed and consistently deliverable with every use. [Learn more about carbomer](/content/blogs/ingredients/carbomer "https://sweetchemistry.com/blogs/ingredients/carbomer"/index.html).

A key ceramide subtype found naturally within keratinocyte secretions, contributing to the lamellar bilayer architecture that controls barrier permeability and long-term water retention. [Learn more about Ceramide AP](/content/blogs/ingredients/ceramide-ap "https://sweetchemistry.com/blogs/ingredients/ceramide-ap"/index.html).

A specialized long-chain ceramide subtype that plays a unique structural role in the cornified lipid envelope, anchoring the lamellar lipid bilayers in place and regulating permeability at the skin's outermost surface. [Learn more about Ceramide EOP](/content/blogs/ingredients/ceramide-eop "https://sweetchemistry.com/blogs/ingredients/ceramide-eop"/index.html).

A dihydroceramide subtype that integrates into the lamellar bilayer architecture of the stratum corneum, contributing to barrier cohesion where the barrier is chronically depleted or disrupted. Extends the breadth of ceramide coverage in waterless formulations beyond what standard ceramide combinations provide. [Learn more about Ceramide NG](/content/blogs/ingredients/ceramide-ng "https://sweetchemistry.com/blogs/ingredients/ceramide-ng"/index.html).

The most prevalent ceramide subtype found in the stratum corneum, forming the critical lamellar bilayer structure that controls trans-epidermal water loss and acts as the skin's primary physical barrier. [Learn more about Ceramide NP](/content/blogs/ingredients/ceramide-np "https://sweetchemistry.com/blogs/ingredients/ceramide-np"/index.html).

A plant-derived fatty alcohol that provides deeply conditioning emollience without the drying effects associated with short-chain alcohols, contributing structure, stability, and a nourishing skin feel to richer formulations. [Learn more about cetearyl alcohol](/content/blogs/ingredients/cetearyl-alcohol "https://sweetchemistry.com/blogs/ingredients/cetearyl-alcohol"/index.html).

An olive-derived emulsifier that creates stable, biocompatible emulsions with a nourishing skin feel, shown to structurally mimic the lamellar organization of the skin's own lipid barrier. [Learn more about cetearyl olivate](/content/blogs/ingredients/cetearyl-olivate "https://sweetchemistry.com/blogs/ingredients/cetearyl-olivate"/index.html).

A skin-identical lipid and essential building block of the barrier membrane, cholesterol works alongside ceramides and fatty acids to maintain the structural integrity that keeps moisture locked in. It is one of three lipids the skin requires in specific ratios to form a fully functional, protective barrier. [Learn more about Cholesterol](/content/blogs/ingredients/cholesterol "https://sweetchemistry.com/blogs/ingredients/cholesterol"/index.html).

A naturally derived alpha hydroxy acid that does double duty: it gently encourages cellular turnover at the skin's surface while keeping the formula's pH precisely where actives perform best. [Learn more about Citric Acid](/content/blogs/ingredients/citric-acid "https://sweetchemistry.com/blogs/ingredients/citric-acid"/index.html).

Finely milled oat grain recognized by the FDA as a skin protectant, containing a unique combination of beta-glucans, avenanthramides, and lipids that simultaneously calm inflammation and support barrier function. [Learn more about Colloidal Oatmeal](/content/blogs/ingredients/colloidal-oatmeal "https://sweetchemistry.com/blogs/ingredients/colloidal-oatmeal"/index.html).

A chelated complex of copper ions bound to lysine and proline, two of the most critical amino acids in collagen biosynthesis, designed to deliver bioavailable copper directly to the fibroblasts and enzymes that mature and crosslink collagen. It activates the enzymatic steps that convert newly synthesized pro-collagen into structurally stable, tensile collagen fibers. [Learn more about copper lysinate/prolinate](/content/blogs/ingredients/copper-lysinate-prolinate "https://sweetchemistry.com/blogs/ingredients/copper-lysinate-prolinate"/index.html).

A palmitoylated peptide chelated to copper ions, combining a collagen-stimulating signal with the enzymatic cofactor activity of copper required by lysyl oxidase to crosslink newly formed collagen and elastin. It adds a collagen maturation signal that works downstream from the synthesis signals delivered by other peptides in the formula. [Learn more about copper palmitoyl heptapeptide-14](/content/blogs/ingredients/copper-palmitoyl-heptapeptide-14 "https://sweetchemistry.com/blogs/ingredients/copper-palmitoyl-heptapeptide-14"/index.html).

Derived from the Indian gooseberry and recognized as one of the most vitamin C-dense botanical ingredients in existence. Its naturally occurring tannins stabilize the ascorbic acid content and extend antioxidant potency well beyond that of isolated vitamin C, making it a consistently high-performing protective active. [Learn more about amla extract](/content/blogs/ingredients/amla-extract-emblica-officinalis "https://sweetchemistry.com/blogs/ingredients/amla-extract-emblica-officinalis"/index.html).

A plant-derived oil rich in antioxidants, particularly vitamin C and polyphenols, known for helping to protect the skin from oxidative stress. It supports brighter, more even-looking skin while helping to nourish and strengthen the skin barrier.

A glyceryl ether derived from plant-based glycerin that functions simultaneously as a skin-conditioning agent and a preservation booster, reducing microbial load without disrupting the skin's natural microbiome. [Learn more about ethylhexylglycerin](/content/blogs/ingredients/ethylhexylglycerin "https://sweetchemistry.com/blogs/ingredients/ethylhexylglycerin"/index.html).

Derived from the Amazonian acai palm, this extract ranks among the most antioxidant-dense botanical ingredients available in skincare. Exceptionally rich in anthocyanins, polyphenols, and essential fatty acids that collectively neutralize free radical damage and slow oxidative skin aging. [Learn more about açai extract](/content/blogs/ingredients/euterpe-oleracea-acai-fruit-extract "https://sweetchemistry.com/blogs/ingredients/euterpe-oleracea-acai-fruit-extract"/index.html).

A skin-identical lipid and essential building block of the barrier membrane, cholesterol works alongside ceramides and fatty acids to maintain the structural integrity that keeps moisture locked in. It is one of three lipids the skin requires in specific ratios to form a fully functional, protective barrier. [Learn more about Glycerin](/content/blogs/ingredients/glycerin "https://sweetchemistry.com/blogs/ingredients/glycerin"/index.html).

The smallest amino acid and the most abundant in collagen, making up roughly one-third of its entire sequence. Without adequate glycine, the collagen triple helix cannot form correctly. [Learn more about Glycine](/content/blogs/ingredients/glycine "https://sweetchemistry.com/blogs/ingredients/glycine"/index.html).

A synthetic heptapeptide sequence designed to stimulate the synthesis of key extracellular matrix proteins including collagen and fibronectin at the fibroblast level. It works to restore the dermal scaffolding responsible for the structural density and firmness that diminish with age. [Learn more about heptapeptide-15](/content/blogs/ingredients/heptapeptide-15 "https://sweetchemistry.com/blogs/ingredients/heptapeptide-15"/index.html).

A plant-derived ester with lightweight conditioning properties and additional antimicrobial activity, contributing to both the formula's preservation system and its silky, non-greasy skin feel. [Learn more about heptyl undecylenate](/content/blogs/ingredients/heptyl-undecylenate "https://sweetchemistry.com/blogs/ingredients/heptyl-undecylenate"/index.html).

A lightweight, non-comedogenic oil rich in linoleic acid and vitamin E, known for its ability to deeply hydrate and support the skin barrier. It helps soothe irritation and protect against environmental stress while maintaining soft, balanced skin.

A multifunctional glycol that serves as both a solvent and an antimicrobial preservation booster, supporting the stability and safety of the surrounding ingredient system. [Learn more about hexylene glycol](/content/blogs/ingredients/hexylene-glycol "https://sweetchemistry.com/blogs/ingredients/hexylene-glycol"/index.html).

One of the few plant oils to contain significant concentrations of palmitoleic acid (omega-7), a fatty acid produced naturally by skin sebaceous glands that declines with age and plays a key role in skin cell membrane repair. Also delivers an exceptionally high level of tocopherols and plant carotenoids for multi-layer antioxidant support. [Learn more about Hippophae Rhamnoides (Sea Buckthorn) Seed Oil](/content/blogs/ingredients/hippophae-rhamnoides-sea-buckthorn-seed-oil "https://sweetchemistry.com/blogs/ingredients/hippophae-rhamnoides-sea-buckthorn-seed-oil"/index.html).

An essential amino acid with a naturally occurring ring structure that gives it powerful antioxidant properties, protecting skin from oxidative damage while helping maintain the pH of the skin's protective acid mantle. [Learn more about Histidine](/content/blogs/ingredients/histidine "https://sweetchemistry.com/blogs/ingredients/histidine"/index.html).

The science behind every Sweet Chemistry formula, Matrikynes are a patent-pending concentrate of over 315 bioactive matrikine peptides extracted from the extracellular matrix of zero-waste upcycled bovine bone. Originally developed to repair organ tissue in surgical applications, they are the only peptide technology of their kind adapted for skincare.

Produced through enzymatic hydrolysis, this low-molecular-weight fragment of hyaluronic acid is small enough to penetrate beyond the skin surface into deeper epidermal layers. It is the deepest-working of the four distinct hyaluronic acid forms used in Sweet Chemistry formulas. [Learn more about hydrolyzed sodium hyaluronate](/content/blogs/ingredients/hydrolyzed-sodium-hyaluronate "https://sweetchemistry.com/blogs/ingredients/hydrolyzed-sodium-hyaluronate"/index.html).

A high-performance polymer that creates stable, homogeneous emulsions across a wide range of pH levels and active concentrations, delivering a uniquely clean, skin-like feel that absorbs completely without tackiness.

An essential branched-chain amino acid that supports cellular repair, protein synthesis, and the production of antimicrobial peptides that reinforce the skin's innate defense system. [Learn more about isoleucine](/content/blogs/ingredients/isoleucine "https://sweetchemistry.com/blogs/ingredients/isoleucine"/index.html).

A combined polymer of lactic and glycolic acid that delivers gentle, controlled alpha hydroxy acid activity while simultaneously functioning as a pH-management agent within the formula. By maintaining the precise acidic environment where peptides, ceramides, and vitamin C actives are most bioavailable, it enhances the performance of every surrounding ingredient.

A postbiotic derived from Lactobacillus fermentation, containing antimicrobial peptides and metabolites that modulate the skin's microbiome and reinforce the immune function of the skin barrier. [Learn more about lactobacillus ferment](/content/blogs/ingredients/lactobacillus-ferment "https://sweetchemistry.com/blogs/ingredients/lactobacillus-ferment"/index.html).

A gentle, biodegradable surfactant derived from renewable plant sources, prized for its ability to support formula stability without the irritation potential of conventional surfactants. [Learn more about lauryl glucoside](/content/blogs/ingredients/lauryl-glucoside "https://sweetchemistry.com/blogs/ingredients/lauryl-glucoside"/index.html).

A naturally derived phospholipid structurally identical to the lipids found in your own cell membranes, making it one of the most biocompatible and effective delivery agents in skincare. [Learn more about Lecithin](/content/blogs/ingredients/lecithin "https://sweetchemistry.com/blogs/ingredients/lecithin"/index.html).

An essential omega-6 fatty acid the skin cannot synthesize on its own, critical for replenishing the lipid matrix and restoring barrier integrity in compromised or reactive skin. [Learn more about linoleic acid](/content/blogs/ingredients/linoleic-acid "https://sweetchemistry.com/blogs/ingredients/linoleic-acid"/index.html).

An essential omega-3 fatty acid the skin cannot produce on its own, required for maintaining the structural integrity of the lipid barrier and supporting the skin's anti-inflammatory signaling pathways. [Learn more about linolenic acid](/content/blogs/ingredients/linolenic-acid "https://sweetchemistry.com/blogs/ingredients/linolenic-acid"/index.html).

A prebiotic polysaccharide that acts as a delivery vehicle for ferment-based actives, protecting beneficial microorganisms until they reach the skin to do their work. [Learn more about Maltodextrin](/content/blogs/ingredients/maltodextrin "https://sweetchemistry.com/blogs/ingredients/maltodextrin"/index.html).

A glucose-derived compound that functions as a cellular energizer, supporting the synthesis of ATP, the primary energy currency of skin cells, to improve the metabolic efficiency of fibroblasts and keratinocytes. By restoring cellular energy levels, it enhances the skin's own capacity for collagen production, barrier maintenance, and active repair. [Learn more about methylglucoside phosphate](/content/blogs/ingredients/methylglucoside-phosphate "https://sweetchemistry.com/blogs/ingredients/methylglucoside-phosphate"/index.html).

A naturally derived non-ionic surfactant and emulsifier produced from glucose and coconut-sourced myristic acid, valued for its exceptional mildness in sensitive-skin formulation. It creates stable, fine-particle emulsions without the irritation potential associated with conventional ionic surfactants. [Learn more about myristyl glucoside](/content/blogs/ingredients/myristyl-glucoside "https://sweetchemistry.com/blogs/ingredients/myristyl-glucoside"/index.html).

A multitasking vitamin B3 derivative that works at the cellular level to calm inflammation, strengthen the skin barrier, and regulate oil production simultaneously. One of the most clinically validated actives in modern skincare. [Learn more about Niacinamide](/content/blogs/ingredients/niacinamide "https://sweetchemistry.com/blogs/ingredients/niacinamide"/index.html).

One of the most concentrated natural sources of gamma-linolenic acid (GLA), an omega-6 fatty acid essential for maintaining healthy skin barrier function in lipid-deficient skin. The body converts GLA to anti-inflammatory prostaglandins, making this oil uniquely effective for chronically dry or reactive skin types. [Learn more about Evening Primrose Oil](/content/blogs/ingredients/evening-primrose-oil "https://sweetchemistry.com/blogs/ingredients/evening-primrose-oil"/index.html).

A variant of palmitoyl heptapeptide-18 with an additional palmitate group that increases the molecule's lipophilicity, improving its ability to penetrate the skin barrier and reach the dermal fibroblasts responsible for collagen synthesis. The enhanced fatty acid modification is designed to maximize bioavailability and the depth of the peptide's structural signaling effect. [Learn more about palmitate palmitoyl heptapeptide-18](/content/blogs/ingredients/palmitate-palmitoyl-heptapeptide-18 "https://sweetchemistry.com/blogs/ingredients/palmitate-palmitoyl-heptapeptide-18"/index.html).

A palmitoylated seven-amino-acid peptide that signals the extracellular matrix to upregulate the production of collagen and other structural proteins that underpin skin density and firmness. Like all palmitoyl peptides in this system, the fatty acid chain dramatically improves its ability to penetrate the skin barrier and reach active target cells in the dermis. [Learn more about palmitoyl heptapeptide-18](/content/blogs/ingredients/palmitoyl-heptapeptide-18 "https://sweetchemistry.com/blogs/ingredients/palmitoyl-heptapeptide-18"/index.html).

A palmitoylated hexapeptide that signals the extracellular matrix to increase collagen & elastin production, targeting the structural loss behind visible aging. [Learn more about palmitoyl hexapeptide-52](/content/blogs/ingredients/palmitoyl-hexapeptide-52 "https://sweetchemistry.com/blogs/ingredients/palmitoyl-hexapeptide-52"/index.html).

One of the most extensively studied anti-aging peptides in skincare, signaling fibroblasts to increase the synthesis of collagen I, collagen IV, and fibronectin within the extracellular matrix. [Learn more about Matrixyl® (Palmitoyl Pentapeptide-4)](/content/blogs/ingredients/matrixyl%C2%AE-palmitoyl-pentapeptide-4 "https://sweetchemistry.com/blogs/ingredients/matrixyl%C2%AE-palmitoyl-pentapeptide-4"/index.html).

A palmitoylated four-amino-acid peptide engineered to stimulate collagen and elastin synthesis within the extracellular matrix by signaling fibroblasts to increase structural protein production. Its palmitoyl fatty acid chain enhances skin penetration and bioavailability, ensuring the active peptide sequence reaches the dermal layer where it exerts its effect. [Learn more about palmitoyl tetrapeptide-50](/content/blogs/ingredients/palmitoyl-tetrapeptide-50 "https://sweetchemistry.com/blogs/ingredients/palmitoyl-tetrapeptide-50"/index.html).

The provitamin form of vitamin B5, converting to pantothenic acid upon absorption where it actively participates in cellular metabolism, barrier repair, and the deep conditioning of skin tissue. [Learn more about panthenol](/content/blogs/ingredients/panthenol "https://sweetchemistry.com/blogs/ingredients/panthenol"/index.html).

A naturally occurring component of your skin's own moisturizing system, PCA is what healthy, well-hydrated skin actually uses to regulate water balance from within. [Learn more about PCA](/content/blogs/ingredients/pca-pyrrolidone-carboxylic-acid "https://sweetchemistry.com/blogs/ingredients/pca-pyrrolidone-carboxylic-acid"/index.html).

A naturally derived glycol that functions as both a humectant and a broad-spectrum antimicrobial agent, contributing to skin hydration and formula safety within a clean, well-tolerated profile. [Learn more about pentylene glycol](/content/blogs/ingredients/pentylene-glycol "https://sweetchemistry.com/blogs/ingredients/pentylene-glycol"/index.html).

A globally approved preservative that protects formulas from microbial contamination at a low, skin-compatible concentration, maintaining product safety and efficacy from first use to last pump. [Learn more about Phenoxyethanol](/content/blogs/ingredients/phenoxyethanol "https://sweetchemistry.com/blogs/ingredients/phenoxyethanol"/index.html).

An essential amino acid your body cannot make on its own, required for the production of collagen, elastin, and the enzymes that regulate skin tone at a cellular level. [Learn more about Phenylalanine](/content/blogs/ingredients/phenylalanine "https://sweetchemistry.com/blogs/ingredients/phenylalanine"/index.html).

The direct biological precursor to ceramides within the skin's barrier membrane, foundational to maintaining lipid lamellar structure, regulating water loss, and supporting the skin's antimicrobial defense. [Learn more about phytosphingosine](/content/blogs/ingredients/phytosphingosine "https://sweetchemistry.com/blogs/ingredients/phytosphingosine"/index.html).

A synthetic cross-linked acrylic acid polymer engineered to maintain high viscosity and prevent phase separation in richer, lipid-heavy formulation systems. It provides the structural scaffold that ensures consistent potency and uniform active delivery in formulas with an elevated lipid concentration. [Learn more about polyacrylate crosspolymer-11](/content/blogs/ingredients/polyacrylate-crosspolymer-11 "https://sweetchemistry.com/blogs/ingredients/polyacrylate-crosspolymer-11"/index.html).

A synthetic cross-linked polymer that forms a three-dimensional network within the formula, maintaining ingredient suspension and preventing phase separation in emulsions with unusually high active loads. [Learn more about polyacrylate crosspolymer-6](/content/blogs/ingredients/polyacrylate-crosspolymer-crosspolymer-6-crosspolymer-11 "https://sweetchemistry.com/blogs/ingredients/polyacrylate-crosspolymer-crosspolymer-6-crosspolymer-11"/index.html).

Produced from polyglycerol and lauric acid sourced from coconut, this non-ionic emulsifier is prized for its biodegradability and exceptional mildness even at high active concentrations. Its clean safety profile makes it particularly suited to water-based formulas designed for daily use across all skin types. [Learn more about polyglyceryl-6 laurate](/content/blogs/ingredients/polyglyceryl-6-laurate "https://sweetchemistry.com/blogs/ingredients/polyglyceryl-6-laurate"/index.html).

A water-soluble synthetic polymer that creates a thin, flexible film on the skin's surface, supporting the uniform distribution and absorption of a high concentration of actives without tackiness or drag. [Learn more about polyvinyl alcohol](/content/blogs/ingredients/polyvinyl-alcohol "https://sweetchemistry.com/blogs/ingredients/polyvinyl-alcohol"/index.html).

One of the most structurally important amino acids in collagen, serving as a direct precursor to hydroxyproline, the compound that gives collagen fibers their characteristic strength and stability. [Learn more about Proline](/content/blogs/ingredients/proline "https://sweetchemistry.com/blogs/ingredients/proline"/index.html).

A sustainably derived, corn-sugar-based glycol that functions as both a humectant and a penetration-enhancing solvent, improving the bioavailability of every active ingredient surrounding it. [Learn more about Propanediol](/content/blogs/ingredients/propanediol "https://sweetchemistry.com/blogs/ingredients/propanediol"/index.html).

One of the few plant oils to contain punicic acid (omega-5), a rare conjugated fatty acid with documented anti-inflammatory and skin-proliferating properties that support visible skin renewal and resilience. [Learn more about pomegranate oil](/content/blogs/ingredients/pomegranate-seed-oil "https://sweetchemistry.com/blogs/ingredients/pomegranate-seed-oil"/index.html).

Naturally rich in malic acid, an alpha hydroxy acid that supports cellular turnover and skin brightening, alongside polyphenolic antioxidants including quercetin and catechin. It contributes both mild exfoliant activity and meaningful antioxidant support as part of a broader organic fruit extract complex. [Learn more about apple extract](/content/blogs/ingredients/apple-extract-pyrus-malus "https://sweetchemistry.com/blogs/ingredients/apple-extract-pyrus-malus"/index.html).

The polyphenol antioxidant found in grape skin that neutralizes the free radical damage responsible for collagen breakdown and accelerated skin aging. Part of a three-enzyme antioxidant defense system. [Learn more about Resveratrol](/content/blogs/ingredients/resveratrol "https://sweetchemistry.com/blogs/ingredients/resveratrol"/index.html).

One of the most nutrient-dense botanical oils in skincare, naturally rich in trans-retinoic acid precursors, omega 3 and 6 fatty acids, and tocopherols that support cellular renewal and barrier repair. [Learn more about rosa rubiginosa seed oil](/content/blogs/ingredients/rosa-rubiginosa-rosehip-seed-oil "https://sweetchemistry.com/blogs/ingredients/rosa-rubiginosa-rosehip-seed-oil"/index.html).

Rich in ellagic acid, anthocyanins, and polyphenolic antioxidants that neutralize free radicals and support a more even skin tone by addressing the oxidative triggers behind uneven pigmentation. One of the most polyphenol-dense berries used in evidence-based skincare formulation. [Learn more about blackberry extract](/content/blogs/ingredients/blackberry-extract-rubus-fruticosus "https://sweetchemistry.com/blogs/ingredients/blackberry-extract-rubus-fruticosus"/index.html).

Naturally rich in ellagic acid, anthocyanins, and vitamin C-related compounds that provide layered antioxidant protection against the environmental stressors that accelerate skin aging. Ellagic acid in particular has been studied for its ability to inhibit UV-induced melanin production, contributing to a more even, radiant complexion. [Learn more about raspberry extract](/content/blogs/ingredients/rubus-idaeus-raspberry-fruit-extract "https://sweetchemistry.com/blogs/ingredients/rubus-idaeus-raspberry-fruit-extract"/index.html).

Notable for its near-ideal 1:1 ratio of omega-3 linolenic to omega-6 linoleic acid, making it exceptionally well-suited for replenishing the fatty acid composition of a depleted skin barrier. Also delivers high-potency tocopherols and antioxidant phytosterols that support visible skin resilience. [Learn more about raspberry seed oil](/content/blogs/ingredients/raspberry-seed-oil-rubus-idaeus "https://sweetchemistry.com/blogs/ingredients/raspberry-seed-oil-rubus-idaeus"/index.html).

A polysaccharide derived from Saccharina latissimi, a species of North Atlantic kelp, with clinically demonstrated ability to improve skin elasticity, bounce, and hydration. It also delivers documented soothing properties, making it effective for reactive or sensitized skin alongside its structural benefits. [Learn more about Seaweed Glycan.](/content/blogs/ingredients/seaweed-glycan "https://sweetchemistry.com/blogs/ingredients/seaweed-glycan"/index.html)

One of the most anthocyanin-concentrated and vitamin C-dense botanical extracts used in skincare, delivering a combination of antioxidant polyphenols that protect skin from environmental stressors. The stabilizing tannins in elderberry extend the potency of its ascorbic acid-related compounds well beyond that of isolated vitamin C alone. [Learn more about elderberry extract](/content/blogs/ingredients/elderberry-sambucus-nigra "https://sweetchemistry.com/blogs/ingredients/elderberry-sambucus-nigra"/index.html).

One of the most anthocyanin-concentrated and vitamin C-dense botanical extracts used in skincare, delivering a combination of antioxidant polyphenols that protect skin from environmental stressors. The stabilizing tannins in elderberry extend the potency of its ascorbic acid-related compounds well beyond that of isolated vitamin C alone.

A non-essential amino acid and natural moisturizing factor component that helps the stratum corneum bind and retain water, supporting hydration that feels innate rather than applied. [Learn more about Serine](/content/blogs/ingredients/serine "https://sweetchemistry.com/blogs/ingredients/serine"/index.html).

A liquid wax ester that closely mirrors the molecular structure of human sebum, giving it exceptional skin compatibility, a non-comedogenic profile, and a natural ability to regulate moisture balance. [Learn more about Jojoba Seed Oil](/content/blogs/ingredients/jojoba-seed-oil "https://sweetchemistry.com/blogs/ingredients/jojoba-seed-oil"/index.html).

The most advanced hyaluronic acid derivative in the formula, significantly more resistant to enzymatic breakdown than standard hyaluronic acid, providing a persistent surface hydration film that visibly plumps for an extended duration. [Learn more about sodium acetylated hyalorunate](/content/blogs/ingredients/sodium-acetylated-hyaluronate "https://sweetchemistry.com/blogs/ingredients/sodium-acetylated-hyaluronate"/index.html).

A powerful humectant capable of holding up to 1,000 times its weight in water, deployed here in four distinct molecular weights to deliver hydration from the skin's surface down to the deeper dermis. [Learn more about sodium hyaluronate](/content/blogs/ingredients/sodium-hyaluronate "https://sweetchemistry.com/blogs/ingredients/sodium-hyaluronate"/index.html).

A three-dimensional, chemically crosslinked hyaluronic acid network that holds moisture at the skin's surface and releases it gradually throughout the day. It is significantly more resistant to enzymatic degradation than standard sodium hyaluronate, making its hydrating effect last measurably longer. [Learn more about sodium hyaluronate crosspolymer](/content/blogs/ingredients/sodium-hyaluronate-crosspolymer "https://sweetchemistry.com/blogs/ingredients/sodium-hyaluronate-crosspolymer"/index.html).

The sodium salt of lactic acid and a naturally occurring component of the skin's own moisturizing system, functioning as a highly effective humectant while helping maintain the mildly acidic pH of a healthy skin barrier. [Learn more about sodium lactate](/content/blogs/ingredients/sodium-lactate "https://sweetchemistry.com/blogs/ingredients/sodium-lactate"/index.html).

A mild, naturally derived emulsifier produced from coconut oil and lactic acid, offering excellent skin compatibility and a gentle profile suited to sensitive and barrier-compromised skin. [Learn more about sodium lauroyl lactylate](/content/blogs/ingredients/sodium-lauroyl-lactylate "https://sweetchemistry.com/blogs/ingredients/sodium-lauroyl-lactylate"/index.html).

The sodium salt of pyrrolidone carboxylic acid and one of the most hygroscopic components of the skin's own natural moisturizing factor, regulating water balance within the stratum corneum at a fundamental level. [Learn more about sodium PCA](/content/blogs/ingredients/sodium-pca "https://sweetchemistry.com/blogs/ingredients/sodium-pca"/index.html).

An amino acid-derived emulsifier with excellent skin biocompatibility, creating stable, fine-particle emulsions that contribute to the smooth, comfortable application feel of high-active formulations. [Learn more about sodium stearoyl glutamate](/content/blogs/ingredients/sodium-stearoyl-glutamate "https://sweetchemistry.com/blogs/ingredients/sodium-stearoyl-glutamate"/index.html).

Paired with cetearyl olivate to form the Olivem lamellar liquid crystal system, a structure that replicates the lipid organization of the stratum corneum and has been shown to enhance active ingredient delivery. [Learn more about sorbitan olivate](/content/blogs/ingredients/sorbitan-olivate "https://sweetchemistry.com/blogs/ingredients/sorbitan-olivate"/index.html).

A plant-derived hydrocarbon that mirrors the squalene your skin naturally produces, giving it exceptional compatibility and a non-comedogenic profile that works across every skin type. [Learn more about Squalane](/content/blogs/ingredients/squalane "https://sweetchemistry.com/blogs/ingredients/squalane"/index.html).

Cold-pressed from the seeds of Terminalia ferdinandiana, the Australian fruit recognized as the world's most concentrated natural source of vitamin C. The seed oil delivers a distinctive fatty acid profile alongside fat-soluble antioxidants that complement the fruit's well-documented brightening and protective properties. [Learn more about kakadu plum oil](/content/blogs/ingredients/kakadu-plum-seed-oil-terminalia-ferdinandiana "https://sweetchemistry.com/blogs/ingredients/kakadu-plum-seed-oil-terminalia-ferdinandiana"/index.html).

A lipid-soluble vitamin C derivative with exceptional skin penetrability, capable of reaching deeper dermal layers than traditional ascorbic acid without the instability or irritation that high-dose L-ascorbic acid can cause. [Learn more about THD Ascorbate](/content/blogs/ingredients/thd-ascorbate "https://sweetchemistry.com/blogs/ingredients/thd-ascorbate"/index.html).

A naturally produced coenzyme and one of the only antioxidants soluble in both water and lipids simultaneously, allowing it to neutralize free radicals across every layer of the skin at once. [Learn more about Thioctic Acid](/content/blogs/ingredients/thioctic-acid-alpha-lipoic-acid "https://sweetchemistry.com/blogs/ingredients/thioctic-acid-alpha-lipoic-acid"/index.html).

An essential amino acid directly involved in the biosynthesis of both collagen and elastin, providing the raw material needed for the structural proteins that determine skin firmness and elasticity. [Learn more about threonine](/content/blogs/ingredients/threonine "https://sweetchemistry.com/blogs/ingredients/threonine"/index.html).

Pure vitamin E in its most bioavailable form, integrating directly into cell membranes to neutralize free radicals and protect lipid-rich tissues from the oxidative degradation that drives visible skin aging.

The stabilized, shelf-stable ester form of vitamin E that converts to active tocopherol upon skin absorption, providing sustained antioxidant protection without the oxidative instability of free-form vitamin E. [Learn more about tocopheryl acetate](/content/blogs/ingredients/tocopheryl-acetate "https://sweetchemistry.com/blogs/ingredients/tocopheryl-acetate"/index.html).

A biodegradable, plant-derived chelating agent that binds trace metal ions in the formula and in water, preventing the oxidative degradation of sensitive actives like vitamin C and peptides. [Learn more about trisodium ethylenediamine disuccinate](/content/blogs/ingredients/trisodium-ethylenediamine-disuccinate "https://sweetchemistry.com/blogs/ingredients/trisodium-ethylenediamine-disuccinate"/index.html).

A fat-soluble coenzyme produced naturally within the mitochondria of skin cells, driving the cellular energy cycle and providing critical antioxidant protection at the source of free radical production. [Learn more about Ubiquinone (CoQ10).](/content/blogs/ingredients/coenzyme-coq10 "https://sweetchemistry.com/blogs/ingredients/coenzyme-coq10"/index.html)

Naturally rich in A-type proanthocyanidins, quercetin, and vitamin C-related compounds that provide multifaceted antioxidant protection against the free radical activity driving collagen degradation and uneven skin tone. Proanthocyanidins also support collagen stability by binding to collagen fibers and inhibiting the enzymes responsible for their breakdown. [Learn more about cranberry extract](/content/blogs/ingredients/vaccinium-macrocarpon-cranberry-fruit-extract "https://sweetchemistry.com/blogs/ingredients/vaccinium-macrocarpon-cranberry-fruit-extract"/index.html).

One of the few plant oils to provide a balanced ratio of omega-3, omega-6, and omega-9 fatty acids alongside an exceptionally high natural tocopherol content, making it a comprehensive lipid active for barrier replenishment. Its fatty acid profile closely mirrors the ideal composition needed to restore a depleted or disrupted skin barrier. [Learn more about cranberry oil](/content/blogs/ingredients/vaccinium-macrocarpon-cranberry-seed-oil "https://sweetchemistry.com/blogs/ingredients/vaccinium-macrocarpon-cranberry-seed-oil"/index.html).

One of the most anthocyanin-dense botanical extracts available, providing a concentrated source of polyphenolic antioxidants that neutralize reactive oxygen species and reduce UV-induced oxidative stress. [Learn more about vaccinium myrtillus fruit extract](/content/blogs/ingredients/blueberry-extract-vaccinium-myrtillus "https://sweetchemistry.com/blogs/ingredients/blueberry-extract-vaccinium-myrtillus"/index.html).

An essential branched-chain amino acid required for the synthesis of structural proteins including collagen and keratin, and a critical signal for tissue growth and repair at the cellular level. [Learn more about valine](/content/blogs/ingredients/valine "https://sweetchemistry.com/blogs/ingredients/valine"/index.html).

A naturally fermented polysaccharide that creates the stable, skin-like consistency needed to keep an unusually high concentration of actives suspended and evenly deliverable. [Learn more about Xanthan Gum](/content/blogs/ingredients/xanthan-gum "https://sweetchemistry.com/blogs/ingredients/xanthan-gum"/index.html).

Steam-distilled from the rhizome of Zingiber officinale, ginger root oil is concentrated in gingerols and shogaols, bioactive compounds with well-documented anti-inflammatory and antioxidant activity. It also supports microcirculation, contributing to a visibly healthy, energized complexion. [Learn more about ginger root oil](/content/blogs/ingredients/zingiber-officinale-ginger-root-oil "https://sweetchemistry.com/blogs/ingredients/zingiber-officinale-ginger-root-oil"/index.html).

The primary solvent used in skincare formulations, helping to dissolve and deliver active ingredients effectively into the skin. It also provides lightweight hydration and contributes to the overall texture and absorption of a product.

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