Emulsion Formation and Stabilization by Biomolecules: The Leading Role of Cellulose

Образование и стабилизация эмульсий биомолекулами: ведущая роль целлюлозы
Björn Lindman, Håkan Edlund, Carolina Costa, Magnus Norgren, Bruno Medronho, Alexandra Filipe, Isabel Mira
2019-09-26

Pickering-like stabilizationcellulose amphiphilicityemulsion stabilizationmodified cellulose emulsifiersnative cellulose
Emulsion stabilization by native cellulose has been mainly hampered because of its insolubility in water. Chemical modification is normally needed to obtain water-soluble cellulose derivatives. These modified celluloses have been widely used for a range of applications by the food, cosmetic, pharmaceutic, paint and construction industries. In most cases, the modified celluloses are used as rheology modifiers (thickeners) or as emulsifying agents. In the last decade, the structural features of cellulose have been revisited, with particular focus on its structural anisotropy (amphiphilicity) and the molecular interactions leading to its resistance to dissolution. The amphiphilic behavior of native cellulose is evidenced by its capacity to adsorb at the interface between oil and aqueous solvent solutions, thus being capable of stabilizing emulsions. In this overview, the fundamentals of emulsion formation and stabilization by biomolecules are briefly revisited before different aspects around the emerging role of cellulose as emulsion stabilizer are addressed in detail. Particular focus is given to systems stabilized by native cellulose, either molecularly-dissolved or not (Pickering-like effect).
1
Insolubility of native cellulose in water has historically limited its use; chemical modification is commonly required to obtain water-soluble derivatives for applications.
2
Modified celluloses are widely used across food, cosmetic, pharmaceutical, paint, and construction industries primarily as thickeners (rheology modifiers) and emulsifying agents.
3
Native cellulose can adsorb at oil–water interfaces due to amphiphilic (anisotropic) structural features, enabling emulsion stabilization.
4
Recent revisitation of cellulose structure highlights molecular interactions that confer dissolution resistance and clarifies mechanisms by which native cellulose stabilizes emulsions, including Pickering-like (particulate) effects.
5
The review emphasizes both molecularly dissolved native cellulose and nondissolved (Pickering-like) cellulose systems as effective routes for emulsion stabilization.

Emulsions stabilized by cellulose (including systems stabilized by native cellulose, molecularly dissolved or via Pickering-like effects)

Mechanisms and features of emulsion formation and stabilization by cellulose—particularly the amphiphilicity, interfacial adsorption, and role of native (insoluble or modified) cellulose in stabilizing emulsions

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2019-09-26
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Authors
Björn Lindman
Håkan Edlund
Carolina Costa
Magnus Norgren
Bruno Medronho
Alexandra Filipe
Isabel Mira
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