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August 26, 2026Foods0 citationsOpen Access

Recent Advances in Polysaccharide-Based Encapsulation of Probiotics: Encapsulation Technologies, Material Properties, and Applications in Dairy Products

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JMJinyu MaJMJinyu MaMZMengying Zhang

Key Points

  • To review the material properties, modification strategies, encapsulation technologies, and functional food applications of polysaccharide-based delivery systems for probiotics.
  • Synthesized literature on polysaccharide wall material properties, modifications, and composite formulations incorporating proteins or metal ions.
  • Evaluated conventional and emerging encapsulation methods, including spray drying, electrospinning, layer-by-layer assembly, 3D bioprinting, and microfluidics for dairy applications.
  • Polysaccharide-based composite wall materials improve probiotic survival rates during food manufacturing, shelf-life storage, and gastrointestinal transit.
  • Novel processing techniques optimize structural integrity and targeted release behavior while maintaining the sensory and physical qualities of dairy products.

Abstract

Probiotics have received widespread attention due to their beneficial effects on human health. However, ensuring their viability and functionality during processing, storage, and gastrointestinal transit can be challenging. Encapsulation technology represents a key strategy to address these issues. Among available encapsulation technologies, polysaccharide-based systems have garnered growing interest. This review provides a detailed overview of the characteristics and applications of various polysaccharides, as well as representative strategies for their modification. In addition, the formulation of polysaccharide-based composite wall materials combined with additional polysaccharides, proteins, or metal ions is discussed as an effective strategy for enhancing the stability of encapsulated probiotics Encapsulation techniques, including extrusion, emulsification, spray drying, freeze drying, electrospraying, electrospinning, and layer-by-layer assembly, are critical for probiotic viability, storage stability and release behavior. The review also considers emerging approaches, such as 3D bioprinting and microfluidics, and applications in dairy products, including impacts on product quality and functional properties. Overall, the review describes the application potential of polysaccharide-based encapsulation and future research directions for dairy products and other functional foods.

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Cite This Study

Ma et al. (2026) studied this question.

synapsesocial.com/papers/6a8e9b92451774b83f3b459chttps://doi.org/10.3390/foods15172969
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