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Updated: May 1, 2026

Extraction of Plant-based Capsules for Microencapsulation Applications
Published on: November 9, 2016
Optimisation of the microencapsulation of tuna oil in gelatin-sodium hexametaphosphate using complex coacervation
Bo Wang1, Benu Adhikari2, Colin J Barrow1
1Centre for Chemistry and Biotechnology, Deakin University, Geelong, VIC 3217, Australia.
Abstract:
The microencapsulation of tuna oil in gelatin-sodium hexametaphosphate (SHMP) using complex coacervation was optimised for the stabilisation of omega-3 oils, for use as a functional food ingredient. Firstly, oil stability was optimised by comparing the accelerated stability of tuna oil in the presence of various commercial antioxidants, using a Rancimat™. Then zeta-potential (mV), turbidity and coacervate yield (%) were measured and optimised for complex coacervation. The highest yield of complex coacervate was obtained at pH 4.7 and at a gelatin to SHMP ratio of 15:1. Multi-core microcapsules were formed when the mixed microencapsulation system was cooled to 5 °C at a rate of 12 °C/h. Crosslinking with transglutaminase followed by freeze drying resulted in a dried powder with an encapsulation efficiency of 99.82% and a payload of 52.56%. Some 98.56% of the oil was successfully microencapsulated and accelerated stability using a Rancimat™ showed stability more than double that of non-encapsulated oil.
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