Iranian Journal of Biosystem Engineering

Iranian Journal of Biosystem Engineering

Evaluation of the Effects of Heat Treatment, High-Shear Microparticulation, and Xanthan Gum on the Functional Properties of Lathyrus sativus Protein Isolate for Plant-Based Food Formulations

Document Type : Research Paper

Authors
1 Department of Food Science, College of Agriculture and Natural Resources, University of Tehran, karaj, Iran
2 Department of Food Science, Technology, and Engineering, College of Agriculture and Natural Resources, University of Tehran, Karaj, Iran
Abstract
This study evaluated the techno-functional and structural properties of grass pea (Lathyrus sativus) protein isolate (GPI) across five distinct treatments: Grass Pea Isolate (GPI),, heat-treated GPI (HGPI), HGPI with xanthan gum (HGPI+XG), microparticulated HGPI (HGPI+MPs), and a microparticle-xanthan gum complex (HGPI+MPs+XG). Alkaline extraction yielded a high-purity isolate (91.27%). Although thermal treatment induced protein denaturation leading to undesirable macro-aggregation, incorporating xanthan gum during high-shear microparticulation effectively prevented particle coalescence via protein-polysaccharide interactions, boosting microparticle yield to 92.03%. Structural modification and partial chain unfolding established an optimized 3D macromolecular network, reducing the least gelation concentration (LGC) to 8%. The HGPI+MPs+XG complex exhibited superior performance, with notable increases in pH-dependent solubility, emulsifying capacity, emulsion stability, water-holding capacity (WHC, 82.76% to 98.49%), and oil-holding capacity (OHC, +97.77%). Fluorescence microscopy, PDIDLS (0.07 μm), Sutter number (5.91 μm), and DPI (1.06 μm) observations confirmed the formation of spherical, homogeneous, and stable microparticles. Disulfide bond analysis indicated that sulfhydryl groups were directly involved in driving this structural stability. Overall, these findings indicate that microparticulated grass pea protein complexes hold significant potential as texturizing and emulsifying agents for clean-label food formulations and potential application in plant-based matrices, pending further sensory evaluation, texture profile analysis (TPA), and real-food matrix stability studies.
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Articles in Press, Accepted Manuscript
Available Online from 06 September 2026

  • Receive Date 08 June 2026
  • Revise Date 23 August 2026
  • Accept Date 06 September 2026