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February 2, 2026Cosmetics1 citationsOpen Access

Nanocellulose-Stabilized Pickering Emulsions for Cosmetic Applications

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ASAna Júlia Vaz de Melo SoaresDSDislyane Trajano da SilvaMSMaryana Rogéria dos Santos

Key Points

  • This research evaluates the use of bacterial cellulose nanofibers and nanocrystals as stabilizers in Pickering emulsions for cosmetics.
  • Evaluated bacterial cellulose nanofibers and nanocrystals as stabilizing agents.
  • Characterized physicochemical properties of emulsions with jojoba, castor, and grape seed oils.
  • Assessed stability metrics under pH changes, thermal stress, and storage conditions.
  • CNCs showed higher crystallinity and greater colloidal stability than CNFs.
  • CNC-stabilized emulsions maintained stability indices above 95% for up to 60 days.
  • CNCs produced smaller and more homogeneous droplets compared to CNFs.

Abstract

The development of innovative cosmetic ingredients has driven growing interest in emulsion systems that combine performance, stability, and sustainability. Pickering emulsions can form physically stable systems by adsorbing solid particles at the oil–water interface. In this study, bacterial cellulose nanofibers (CNFs) and nanocrystals (CNCs), obtained via acid hydrolysis, were evaluated as stabilizing agents in Pickering emulsions containing jojoba, castor, and grape seed oils for hair conditioning applications. Structural and physicochemical characterization revealed that CNCs exhibited higher crystallinity, a narrower size distribution, and a higher negative surface charge than CNFs, resulting in enhanced colloidal stability. Emulsion analyses showed that CNCs more effectively reduced interfacial tension and produced smaller, more homogeneous droplets. Stability assessments under pH variation, thermal stress, and storage demonstrated that CNC-stabilized emulsions, particularly with castor oil, maintained stability indices above 95% for up to 60 days, whereas CNF-based systems showed greater sensitivity to environmental conditions. The incorporation of CNCs into a prototype conditioning cream resulted in a creamy texture and improved physical stability without compromising formulation performance. Overall, these results highlight CNCs as robust and efficient stabilizing materials for Pickering emulsions, reinforcing the potential of bacterial nanocellulose in advanced cosmetic formulations.

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Cite This Study

Soares et al. (2026) studied this question.

synapsesocial.com/papers/6980fed9c1c9540dea8114bdhttps://doi.org/10.3390/cosmetics13010031
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