Sep 2026· Colloids and Surfaces B: Biointerfaces· Vol 269, pp.
116176
· 0 citations· 42 references
Medicine
TL;DR
The structural stability, biocompatibility of the HA shell, and high loading efficiency make these nanoemulsions promising carriers for delivery of poorly water-soluble bioactives.
Abstract
Oil-in-water (O/W) emulsions are widely applied in pharmaceutical and cosmetic formulations due to their ability to solubilize and deliver hydrophobic compounds to specific sites. Herein, we report the preparation and physicochemical characterization of nanoemulsions (NEs) with an oil phase composed of glyceryl trioctanoate (GTO) and vitamin E (Vit-E, a model hydrophobic bioactive compound), stabilized by amphiphilic derivatives of hyaluronic acid (AmHAs). HA was modified by covalent attachment of hexadecyl or octadecyl substituents, enabling efficient interfacial self-assembly during ultrasonication-assisted emulsification. Cryogenic transmission electron microscopy revealed the formation of spherical GTO/Vit-E nanodroplets with diameters of 30-250 nm. Additionally, an effect of the oil core composition on NE stability was observed, arising from heterogeneity within the oil phase. The highest stability was achieved at a GTO:Vit-E ratio of 1:1, highlighting the system's capacity for high Vit-E loading. The stabilization mechanism arises from the penetration of hydrophobic alkyl groups into the oil phase, while the hydrophilic polysaccharide backbone remains in the aqueous phase, forming a steric barrier that prevents droplet aggregation and coalescence. Molecular dynamics (MD) simulations revealed preferential localization of GTO at the oil-water interface and a heterogeneous distribution of Vit-E within the core. This organization promotes hydrogen bonding and water-mediated interactions between HA and GTO. The structural stability, biocompatibility of the HA shell, and high loading efficiency make these nanoemulsions promising carriers for delivery of poorly water-soluble bioactives.
Lauric acid (LA) is an antimicrobial medium-chain fatty acid, but its poor aqueous solubility limits its application in food matrices. To address this, ultrasound-assisted emulsion was developed using LA in vitamin E (VE) oil and chitosan-polyvinyl alcohol (CS-PVA) aqueous matrix. The emulsion exhibited uniformly dispe...
Chen Li, Pei-Pei Ma, Xiao-Yue Sui et al.· Food Research International· 0 citations
Holy basil essential oil (HBEO) is a therapeutic agent recognized for its antioxidant, anti-inflammatory, and wound-healing properties. However, its clinical use is limited by poor aqueous solubility, volatility, and instability. Nanoemulsion (NE) is an effective strategy to overcome these limitations. In this study, 1...
Sarcopenia is closely associated with deficiencies in key bioactive compounds, including omega-3 (O3), coenzyme Q10 (CoQ10), vitamin D3 (D3), and L-leucine (Leu). However, the simultaneous oral delivery of these four compounds is challenged by their markedly different physicochemical properties and huge dosage differen...
Phuoc-Quyen Le, Ji Hyun Kim, Kyoungkun Park et al.· International journal of pha...· 0 citations
The developed nanoemulsion effectively addressed the major biopharmaceutical limitations of apigenin by improving its solubility, intracellular delivery, and antioxidant efficacy and establish A-NE as a stable and efficient nanocarrier platform with considerable potential for advanced intracellular antioxidant therapy.
G. H. Sree, Chennu Himasri, M. Hogade et al.· Adolescência e Saúde· 0 citations
Abstract: Background: Gallic acid is a natural phenolic compound with excellent antioxidant, antimicrobial and anti-inflammatory activity and good skin penetration. Gallic acid demonstrates both stability and solubility problems in topical formulations. A nanoemulgel combines an emulsion for enhanced solubility with a...
Hina Awan· Pakistan Journal of Pharmace...· 0 citations
Oxiconazole nitrate-loaded nanospheres were successfully developed using the emulsification–solvent evaporation method to enhance the solubility and dissolution of oxiconazole nitrate, a Biopharmaceutics Classification System (BCS) Class II antifungal drug characterized by low aqueous solubility and good membrane perme...
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