Loading...
The Effect of Carnosol, Carnosic Acid and Rosmarinic Acid on the Oxidative Stability of Fat-Filled Milk Powders throughout Accelerated Oxidation Storage
Tzima, Katerina ; Brunton, Nigel P. ; McCarthy, Noel A. ; Kilcawley, Kieran N. ; Mannion, David T. ; Rai, Dilip K.
Tzima, Katerina
Brunton, Nigel P.
McCarthy, Noel A.
Kilcawley, Kieran N.
Mannion, David T.
Rai, Dilip K.
Date
2021-5-11
Collections
Files
Loading...
THEEFF~1.PDF
Adobe PDF, 2.09 MB
Research Projects
Organizational Units
Journal Issue
Citation
Tzima, K.; Brunton, N.P.; McCarthy, N.A.; Kilcawley, K.N.; Mannion, D.T.; Rai, D.K. The Effect of Carnosol, Carnosic Acid and Rosmarinic Acid on the Oxidative Stability of Fat-Filled Milk Powders throughout Accelerated Oxidation Storage. Antioxidants, 2021, 10, 762. https://doi.org/10.3390/antiox10050762
Abstract
The in vitro antioxidant effects of the most potent antioxidants of rosemary, namely carnosol, carnosic acid and rosmarinic acid (c: ca: ra) were assessed in fat-filled milk powders (FFMPs) under accelerated conditions (40 °C and relative humidity (RH) 23%) over 90 days. Lipid oxidation was assessed in FFMPs by measuring peroxide values (PVs), thiobarbituric acid reactive substances (TBARS) and aroma volatiles using headspace (HS) solid-phase microextraction (SPME) coupled to gas-chromatography-mass spectrometry (GC-MS). The antioxidant potency of c: ca: ra exhibited a concentration-related effect (308 ppm > 200 ppm > 77 ppm), with the highest concentration being the most effective at controlling the formation of TBARS and PVs. At a concentration of 308 ppm c: ca: ra were particularly effective (p < 0.05) in inhibiting all the evaluated oxidation indices (primary and secondary) compared to the control samples, but in some cases less effectively (p < 0.05) than butylated hydroxyanisole: butylated hydroxytoluene (BHA: BHT) (200 ppm).
