ACS Sustainable Chemistry & Engineering· 2026Q1
Biocompatible Self-assembly Coating for Safe Hair Dyes with Antimicrobial and Antiadhesion Potential
- 0citations
- Q1SCImago
- 2026year
Short summary
A one-step self-assembly process created an AC-Zn2+ coating from plant-derived quinones (alizarin, cinnamaldehyde) and zinc ions, yielding a safe, durable, and multifunctional hair dye with antimicrobial and antiadhesion properties.
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Key points
- A one-step self-assembly process yielded an AC-Zn2+ coating for hair dyeing.
- The AC-Zn2+ coating provides durable color and exhibits nearly 100% antibacterial efficacy against S. aureus.
- The coating also offers antiadhesion, antistatic, and pleasant aroma properties.
- Extensive biological safety tests in cells, zebrafish, mice, and bean sprouts showed no obvious toxicity.
AI-generated from the title and abstract; the full text is not read.
Abstract
Abstract Hair dyeing has emerged as an integral part of the cosmetic industry, driving the demand for natural, safer, and malodor-free alternatives to traditional p-phenylenediamine-based hair dyes. Herein, leveraging the deposition capability of plant-derived quinones on substrate surfaces, an AC-Zn2+ coating is synthesized via a one-step self-assembly process involving alizarin (AL), zinc ions (Zn2+), and cinnamaldehyde (Cin) for hair coloring. The AC-Zn2+ coating-based dyes not only exhibit effective coloring on bleached or natural gray hair but also demonstrate good durability under repeated washing without obvious color fading. Crucially, hair samples dyed with AC-Zn2+ show additional favorable properties, including antibacterial activity (nearly 100% inhibition efficacy against Staphylococcus aureus), antiadhesion performance for Malassezia furfur and Staphylococcus epidermidis, antistatic behavior, and pleasant aroma, aligning with the emerging trend of multifunctional and eco-friendly hair dyes. Moreover, this quinone-based coating achieves a satisfactory dyeing effect in mice and displays excellent biological safety across various models, including cells, zebrafish, mice, and bean sprouts. These features underscore the potential of AC-Zn2+ as a high-end hair dye that poses no obvious toxicity under the conditions of this study while enabling enhanced hair functionality.
The authors' abstract, as published at the source. ACS Sustainable Chemistry & Engineering, 2026 · DOI ↗
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