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May 14, 2026LWT0 citationsOpen Access

Maltotriose and maltotetraose: recent advances and future perspectives in enzymatic production and functional applications in food and health

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YXYufan XueHZHongyu ZhangTLTingting Lou

Key Points

  • This review systematically synthesizes knowledge on maltotriose and maltotetraose, focusing on their production and functional applications.
  • Analysis of molecular structures and properties of maltotriose and maltotetraose
  • Examination of microbial sources and catalytic mechanisms of maltooligosaccharide-forming amylases
  • Discussion on enzyme engineering advancements in producing maltotriose and maltotetraose
  • Identified key properties of maltotriose and maltotetraose such as low sweetness and non-cariogenicity
  • Highlighted production challenges including enzyme specificity and thermal stability
  • Outlined future perspectives to enhance industrial applications of maltotriose and maltotetraose

Abstract

Maltooligosaccharides (MOS), particularly maltotriose (DP3) and maltotetraose (DP4), are key functional carbohydrates distinguished by their defined α-1,4-glycosidic linkages. These structures confer desirable properties, including low sweetness, non-cariogenicity, and superior processing stability. Despite their potential, industrial production of maltotriose and maltotetraose remains constrained by insufficient enzyme specificity, poor thermal stability, and yield variability. This review provides a systematic synthesis of the molecular structures, physicochemical properties, and enzymatic production pathways of maltotriose and maltotetraose. Particular emphasis is placed on the microbial sources and catalytic mechanisms of maltooligosaccharide-forming amylases (MFAses). By analyzing the structure-function relationship and highlighting the progress in enzyme engineering, this study provides relevant insights, thereby promoting the development and application of MOS in related fields. • A review of maltotriose and maltotetraose: structure, production, and function. • Focus on enzymatic synthesis of maltotriose and maltotetraose using MFAses and α-amylase systems. • Bottlenecks and prospects in the industrial application of maltotriose and maltotetraose.

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Cite This Study

Xue et al. (2026) studied this question.

synapsesocial.com/papers/6a05659da550a87e60a1dff0https://doi.org/10.1016/j.lwt.2026.119509
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