Air and argon cold plasma effects on lipolytic enzymes inactivation, physicochemical properties and volatile profiles of lightly-milled rice

Food Chem. 2024 Jul 1:445:138699. doi: 10.1016/j.foodchem.2024.138699. Epub 2024 Feb 10.

Abstract

This study investigated the effectiveness of cold-plasma treatment using air and argon as input gas on deactivation of lipolytic enzymes in lightly-milled-rice (LMR). The results showed no significant inactivation in lipase and lipoxygenase using air-plasma. However, using argon as input gas, the residual activities of lipase and lipoxygenase were reduced to 64.51 % and 29.15 % of initial levels, respectively. Argon plasma treatment resulted in more substantial augmentation in peak and breakdown viscosities of LMR starch, suggesting an enhancement in palatability of cooked LMR with increased stickiness and decreased hardness. In contrast to the decrease in volatile compounds in LMR following argon plasma treatment, the concentrations of several prevalent aroma compounds, including 1-hexanol, 1-hexanal, and 2-pentylfuran, exhibited significant increments, reaching 1489.70 ng/g, 3312.10 ng/g, and 58.80 ng/g, respectively. These findings suggest the potential for enhancing various facets of the commercial qualities of LMR by utilizing different input gases during plasma treatment.

Keywords: Cold plasma; Lipolytic enzymes; Rice; Volatile profile.

MeSH terms

  • Argon
  • Lipase / metabolism
  • Lipoxygenases / metabolism
  • Oryza* / chemistry
  • Plasma Gases*

Substances

  • Plasma Gases
  • Argon
  • Lipase
  • Lipoxygenases