Quick Comparison
| Glycolic Acid | Salicylic Acid | |
|---|---|---|
| Typical Concentration | Daily use: 5-10% at pH 3-4. Weekly peel: 10-30%. Professional peel: 30-70%. Start with 5% every other night. Increase concentration/frequency gradually. Always use SPF — AHAs increase sun sensitivity by up to 50%. Buffered formulations are gentler than free acid. | Concentrations: 0.5-2% for daily use products (cleansers, toners, serums). Up to 30% for professional peels. Start with 0.5-1% every other day and increase. Leave-on products are more effective than wash-off. For body acne (back, chest): 2% is standard. |
| Application | Topical (toner, serum, peel, cleanser). Leave-on products are more effective than wash-off. Apply to dry skin at night. | Topical (cleanser, toner, serum, spot treatment, body wash, peel). Leave-on products provide better efficacy than wash-off. |
| Research Papers | 9 papers | 10 papers |
| Categories |
Mechanism of Action
Glycolic Acid
Glycolic acid disrupts ionic bonds between corneocytes (dead skin cells) in the stratum corneum by chelating calcium ions and lowering the calcium concentration at desmosomal junctions. This weakens corneodesmosome integrity and activates endogenous proteases (kallikrein 5 and 7), accelerating desquamation. At higher concentrations, glycolic acid penetrates the viable epidermis and dermis, where it stimulates keratinocyte differentiation and upregulates transforming growth factor-beta (TGF-β) signaling in fibroblasts. This promotes glycosaminoglycan (GAG) synthesis, type I and III collagen production via procollagen gene expression, and elastin remodeling. Its small molecular size (76 Da) and high water solubility give it the deepest penetration of any AHA. The exfoliation also improves barrier function over time by promoting proper corneocyte maturation and reducing stratum corneum compaction.
Salicylic Acid
Salicylic acid (ortho-hydroxybenzoic acid) is a lipophilic beta-hydroxy acid—the ortho hydroxyl enables sebum and follicular lipid solubility, unlike water-soluble AHAs. It penetrates the pilosebaceous unit and induces desmolysis: disruption of desmosomal attachments and corneodesmosomes, accelerating desquamation of pore-clogging debris. Inside the follicle, it dissolves sebum and keratin plugs (comedolysis). Salicylic acid inhibits COX-1 and COX-2, reducing prostaglandin synthesis—the same anti-inflammatory mechanism as aspirin—decreasing erythema and swelling. Bacteriostatic against Cutibacterium acnes through membrane disruption and pH reduction. May reduce sebum production. Small size (138 Da) and lipophilicity enable follicular penetration to depths AHAs cannot reach.
Risks & Safety
Glycolic Acid
Common
Stinging, redness, peeling, sun sensitivity. Over-exfoliation damages the skin barrier.
Serious
Chemical burns from professional-strength peels without proper protocol.
Rare
Scarring from improper high-concentration use.
Salicylic Acid
Common
Dryness, peeling, mild stinging. Over-use can compromise the skin barrier.
Serious
Salicylate sensitivity (rare) — avoid if allergic to aspirin. Not recommended in pregnancy at high concentrations.
Rare
Severe peeling from over-application.
Full Profiles
Glycolic Acid →
The smallest and most penetrating alpha-hydroxy acid (AHA). Derived from sugarcane, glycolic acid exfoliates by dissolving the bonds between dead skin cells on the surface, revealing smoother, brighter skin underneath. It is the most studied AHA with robust evidence for improving texture, fine lines, hyperpigmentation, and overall skin radiance. The gold standard chemical exfoliant.
Salicylic Acid →
The only beta-hydroxy acid (BHA) used in skincare. Salicylic acid is oil-soluble, meaning it can penetrate into pores and dissolve the sebum and dead skin that cause blackheads and acne. This makes it fundamentally different from AHAs (which only work on the skin surface). It also has direct anti-inflammatory properties, reducing the redness and swelling of acne lesions.