PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 13, 2026Food Quality and Safety0 citationsOpen Access

Effects of processing treatments on corn starch retrogradation and strategies for its control: a review

View Full Paper
JLJunyi LiYHYakai HeDZDan Zhao

Key Points

  • The review aims to synthesize the mechanisms by which processing methods affect corn starch retrogradation and present strategies for control.
  • Systematic synthesis of processing methods including thermal, nonthermal, and storage techniques.
  • Evaluation of heat-moisture, microwave, and irradiation effects on starch structure and retrogradation.
  • Assessment of additive strategies such as nonstarch carbohydrates and emulsifiers to inhibit retrogradation.
  • Heat-moisture treatment reorganizes starch molecules, reducing long-term retrogradation.
  • Microwave and irradiation treatments inhibit retrogradation by degrading amylopectin branches.
  • Additives can effectively disrupt starch chain reassociation, improving product shelf-life.

Abstract

Abstract Corn starch, constituting approximately 70% of the dry weight of kernels, fundamentally determines the quality of corn-based products, with its retrogradation being a primary factor in staling. This review systematically synthesizes the mechanisms by which diverse processing methods, including thermal (e.g. heat-moisture and dry heat treatment), nonthermal (e.g. ionizing irradiation and ultrasonic waves), and storage (e.g. low temperature) techniques, govern the retrogradation of corn starch. A key finding is that the impact of these methods is highly specific: heat-moisture treatment reorganizes molecular architecture, often inhibiting long-term retrogradation, whereas microwave and irradiation technologies primarily inhibit retrogradation through the selective degradation of amylopectin branches. Furthermore, this review critically evaluates strategies to retard retrogradation, such as incorporating nonstarch carbohydrates, polyphenols, and emulsifiers. The use of additives is contingent on their specific interaction mechanisms, such as helical complexation with lipids or spatial hindrance from polysaccharides, which disrupt the reassociation of starch chains. By analyzing corn starch processing methods and additive interventions, this review provides a foundational framework for the targeted manipulation of starch functionality. Additionally, practical insights are provided for extending product shelf-life and developing novel, high-value-added corn starch products.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69b3ac1d02a1e69014ccd893https://doi.org/10.1093/fqsafe/fyaf075
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effects of soy protein hydrolysates on maize starch retrogradation studied by IR spectra and ESI-MS analysis2013 · 83 citations
  2. 2Rheological and microstructural evolution of the most common gluten-free flours and starches during bread fermentation and baking2016 · 158 citations
  3. 3Water Dynamics and Retrogradation of Ultrahigh Pressurized Wheat Starch2006 · 43 citations
  4. 4Impact of continuous and repeated dry heating treatments on the physicochemical and structural properties of waxy corn starch2019 · 59 citations
  5. 5Effect of heat-moisture treatment on structural, morphological, thermal, and physicochemical properties of non-conventional palmyra (Borassus flabellifer) starch2025 · 7 citations