Related Experiment Video
Updated: Oct 11, 2026

Process Development for the Spray-Drying of Probiotic Bacteria and Evaluation of the Product Quality
Published on: April 7, 2023
Matrix-specific design of food-grade probiotic microcapsules: Wall materials, scalable processing, and AI-enabled
Qing-Bo Yao1, Lang-Hong Wang2, Rui Wang2
1School of Food Science and Engineering, South China University of Technology, Guangzhou 510640, Guangdong, China.
Abstract:
Microencapsulation of probiotics has been widely studied to improve microbial viability during processing and storage, but its performance in real food systems remains inconsistent because protection, controlled release, sensory acceptability, and manufacturing feasibility must be balanced simultaneously. This review examines key encapsulation techniques by linking microstructural characteristics with practical scale-up constraints. It also discusses wall materials, including polysaccharides, proteins, and prebiotic matrices, with emphasis on their interactions governing encapsulation capacity, swelling behavior, and storage stability. The review further analyzes food matrix adaptability by relating the characteristics and constraints of different food systems to probiotic protection and microcapsule performance and highlights an AI-driven optimization framework that integrates material characteristics, process parameters, food-matrix constraints, and probiotic performance within multivariable and multi-objective design. Future progress requires matrix-specific wall materials and preparation methods, regulatory compliance, scalable manufacturing, and AI-assisted optimization, thereby supporting the transition of probiotic microcapsules from laboratory prototypes to industrial production.
Related Concept Videos
Scale-Up Processes
Upstream Processing
Designing Growth Media for Bioreactors

