Exploration of Natural Adsorbents for Applications in Pollution-Reducing Cosmetic Formulations
Greta Kaspute, Alma Rucinskiene, Arunas Ramanavicius, Urte Prentice

TL;DR
This paper reviews natural materials that can be used in cosmetics to reduce pollution's harmful effects on skin and hair.
Contribution
The paper evaluates natural adsorbents for pollution-reducing cosmetics, providing adsorption capacities and removal efficiencies.
Findings
Natural adsorbents like zeolites and clays show adsorption capacities of 60–150 mg·g−1 for pollutants.
Incorporating 2–5% w/w of these adsorbents in cosmetics significantly reduces pollutant deposition on skin and hair.
Adsorption mechanisms include ion exchange, surface adsorption, and radical scavenging.
Abstract
Human skin and hair act as multifunctional barriers but are highly sensitive to environmental pollutants originating from air, water, and cosmetic products. Epidemiological studies report that exposure to particulate matter (PM2.5–PM10), nitrogen oxides (NOx), and volatile organic compounds increases the risk of skin and hair disorders. For instance, women in high-traffic areas (N = 211) show significantly more pigment spots and nasolabial wrinkles compared to those in rural areas (N = 189), indicating accelerated skin ageing. Children aged 9–11 exposed to PM10, benzene, and NOx exhibit increased incidence of atopic dermatitis. Systemic exposure to dioxins causes chloracne, while co-exposure to polycyclic aromatic hydrocarbons (PAHs) and UVA radiation elevates skin cancer risk. Psoriasis flares are associated with mean pollutant concentrations over the 60 days preceding flare events in…
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Taxonomy
TopicsSkin Protection and Aging · Effects and risks of endocrine disrupting chemicals · Advancements in Transdermal Drug Delivery
