3.8 Article

High Performance Conditioning Shampoo with Hyaluronic Acid and Sustainable Surfactants

Journal

COSMETICS
Volume 8, Issue 3, Pages -

Publisher

MDPI
DOI: 10.3390/cosmetics8030071

Keywords

hyaluronic acid; biosurfactants; biobased surfactant; lubrication; rheology; surface tension; foaming

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Consumers are increasingly interested in natural and sustainable ingredients in personal care products. This study aimed to find a sustainable formulation for conditioning shampoo without compromising performance. By using hyaluronic acid at different molecular weights and concentrations, along with surfactants and sodium chloride, researchers were able to achieve lower wet combing force, ideal rheological properties, and reduced surface tension.
Recently, consumers have become invested in more natural and sustainable ingredients contained in personal care products. Unfortunately, cationic surfactants are still heavily relied on as primary conditioning agents in products such as conditioning shampoos because of their ability to cling well to the negatively charged surface of hair follicles. Additionally, sulfates are utilized as cleansing agents because they are highly effective and low cost. The objective of this study is to find a more sustainable formulation for a conditioning shampoo without compromising the desired wet combing, rheological, and surface activity properties. The systems which were investigated contained hyaluronic acid (HA) at a variety of molecular weights and concentrations, in combination with a surfactant, either acidic sophorolipid (ASL) or alkyl polyglucoside (APG), and varying the presence of sodium chloride. A Dia-stron was utilized to test the wet combing force, a rheometer recorded the viscosity at various shear rates, and a tensiometer measured the surface tension of the samples before a visual foaming study was conducted. Molecular weight and concentration seemed to have a large impact on wet combing force, as well as rheology, with the largest molecular weight and concentration producing the lowest friction coefficient and desired rheological profile. The addition of a surfactant significantly aids in the reduction in surface tension and increased foamability. Therefore, the optimal system to achieve the largest reduction in wet combing force, large viscosity with shear-thinning behavior, and relatively low surface tension with decent foaming is composed of 1% HA at 800 kDa, 10% ASL and 1% NaCl. This system shows a viable sulfate-free and silicone-free option that can achieve both conditioning and cleansing.

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