PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 1, 2026Gels2 citationsOpen Access

Gel-Based 3D Food Printing for Dysphagia Management: Advances in Personalized Nutrition, Texture Control, and Clinical Translation

View Full Paper
MYMing YangKCKeping ChenZQZhou Qin

Key Points

  • This review examines advancements in gel-based 3D food printing technologies aimed at improving dietary management for dysphagia.
  • Synthesis of recent literature in materials science, food engineering, and clinical nutrition.
  • Analysis of gel microstructure's impact on extrusion performance and post-processing stability.
  • Assessment of clinical relevance using IDDSI tests for texture and swallowability.
  • Introduction of new gel types including emulsion gels and multi-material constructs.
  • Improved standardization of meal geometry and texture enhances nutritional intake.
  • Design principles proposed for gel network selection improve print fidelity and safety for swallowing.

Abstract

Dysphagia and age-related oral processing limitations are rising with population aging and the growing burden of neurological diseases. Texture-modified diets remain the most common non-pharmacological intervention, yet conventional pureeing and thickening often yield meals with low visual appeal, variable textures, and diluted nutrient density, which contribute to reduced intake and malnutrition risk. Extrusion-based three-dimensional food printing, especially when combined with gel-derived edible inks, offers a digital route to standardize geometry, portioning, and texture while enabling individualized nutrition and sensory design. In the past three years, the field has progressed from simple single-ingredient pastes to engineered soft-matter systems including emulsion gels, high-internal-phase emulsion gels, Pickering-stabilized gels, bigels, and multi-material constructs enabled by dual and coaxial printing. These advances are underpinned by improved rheological windowing, microstructure engineering, and post-print gelation strategies such as ionic crosslinking, thermal setting, enzymatic bridging, and pH-triggered network formation. Meanwhile, dysphagia-oriented product development has matured from “shape recovery” demonstrations toward clinically relevant texture targets, leveraging the IDDSI tests to anchor swallowability. This review synthesizes the recent literature across materials science, food engineering, and clinical nutrition to connect gel microstructure to extrusion performance, post-processing stability, and oral processing outcomes that are relevant to older adults and dysphagia patients. We propose design principles for gel network selection, phase structuring, and process control that simultaneously satisfy print fidelity and swallowing safety targets.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69ccb75916edfba7beb894a7https://doi.org/10.3390/gels12040289
Ask AI
Helpful
Bookmark
Share
View Full Paper