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Facile Preparation of Internally Self-assembled Lipid Particles Stabilized by Carbon Nanotubes
Published on: February 19, 2016
Microstructure and emulsion stabilization properties of multi-ultrasound assisted amphiphilic starch-lipid complexes
Ayesha Shahid1, K Jayaram Kumar1
1Department of Pharmaceutical Sciences and Technology, Birla Institute of Technology, Mesra, Ranchi, 835215, Jharkhand, India.
Abstract:
The rising demand for food emulsions and stricter regulations on synthetic additives have increased interest in sustainable emulsifying systems, with natural polymers emerging as promising alternatives. This study examines the structural, morphological, and functional properties of Bakla starch (BS) modified through simultaneous intermittent multi-ultrasound treatment with palmitic acid (BSUF), emphasizing its effectiveness in emulsion stabilization. Ultrasonicated starch (BSU) showed improved water-holding capacity (WHC) and amylose availability due to the formation of porous structures, whereas palmitic acid modified starch (BSF) exhibited reduced WHC and amylose content. Dual-modified BSUF further strengthened amylose-lipid interactions, lowered free amylose, and enhanced hydrophobicity, as indicated by higher contact angles. XRD patterns revealed additional peaks at 21°, 23°, and 24° corresponding to palmitic acid crystallites, along with reflections at 17° and 20° confirming mixed B- and V-type crystallinity. Morphological analysis showed surface roughening and small pits in BSU due to mechanical erosion, while BSUF displayed surface roughness, curly or irregular morphology. Emulsions stabilized by BSUF demonstrated the highest stability, smallest particle size and greatest ζ-potential, supported by microstructural evidence. These results highlight the potential of ultrasound-assisted modified Bakla starches as natural, amphiphilic stabilizers for food emulsions, functional foods, drug delivery, and bioactive compound delivery systems.
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