Skip to content

Author

Xuchun Zhu

1 paper indexed here

We haven’t gathered this author’s papers yet. Follow them and we’ll fetch their work.

Not the right person? Other researchers publish under this name.

Oct 2026

Enhanced solubility of yeast protein via high-pressure homogenization-assisted limited enzymatic hydrolysis: mechanisms of structural modification and implications for functionality and nutrition.

Yeast protein (YP) is recognized as a sustainable and hypoallergenic microbial protein source, yet its low solubility (typically <22%) severely restricts its utilization in food formulations. Improving solubility is therefore a key step toward broader industrial application of YP. This study investigated a synergistic treatment combining high-pressure homogenization and restriction enzymatic hydrolysis (HPH-neu) to improve the solubility of yeast protein (YP). The HPH-neu treatment significantly enhanced solubility to 81.58 ± 0.29%. In contrast, the individual application of either high-pressure homogenization (HPH) or restriction enzymatic hydrolysis (neu) was less effective in improving solubility than the combined approach. Structural analysis indicated that HPH-neu processing notably increased the contents of α-helix and random coil, and scanning electron microscopy (SEM) revealed a corresponding looser and more disordered microstructure. Furthermore, the combined treatment significantly reduced particle size (242.8 ± 5.59 nm), free sulfhydryl group content (2.20 ± 0.01 μ mol/g), and surface hydrophobicity (H0, 14123.67 ± 257.85).At the same time, it improved functional properties including the emulsifying activity index (40.51 ± 2.86 m2/g), foaming capacity (146.67 ± 2.89%), and in vitro digestibility (90.64 ± 0.33%). The HPH-neu process also yielded high scores for PDCAAS and SRC, reaching 65.96 and 73.11, respectively. In summary, the integrated HPH-neu strategy not only effectively enhanced the solubility of YP but also improved its multifaceted functional properties and digestibility. This strategy offers a promising route for protein valorization and the development of high-quality, nutritious protein ingredients.

Zhaowei Han, Bingyu Chen, Xinxin Li et al. · 0 citations