Efficacy of ascorbic acid on processing characteristics and lipid oxidation of pre-rigor salted chicken breasts during vacuum refrigerated storage

  • Ham, Youn-Kyung; 
  • Song, Dong-Heon; 
  • Ha, Jae-Ho; 
  • Park, Soo-Kyung; 
  • Kim, Yu-Ri; 
  • ... Kim, Hyun-Wook; 
  • 외 1명
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초록

The objective of this study was to evaluate the efficacy of ascorbic acid on processing characteristics and lipid oxidation of pre-rigor salted chicken breasts during 7 days of vacuum-packaged storage. Chicken breasts were deboned within 15 min after slaughter, immediately ground, and pre-rigor salted with 2% NaCl (w/w) or 2% NaCl (w/w) plus 500 ppm ascorbic acid. The pooled data from pre-rigor salted chicken breasts during storage showed significantly greater pH value, water-holding capacity, and protein solubility as compared to post-rigor salted thicken breasts. Moreover, the addition of 500 ppm ascorbic acid could not only effectively inhibit lipid oxidation, but also improve the brine uptake of pre-rigor salted chicken breasts (P < 0.05). The enhanced brine uptake when adding ascorbic acid may be related to the chelating effect of ascorbate anion on calcium ion, limiting the muscle contraction induced by rigor-moths. The addition of ascorbic acid had no impact on total plate count of pre-rigor salted chicken breasts (P > 0.05). The results of this study suggest that pre-rigor salting with 500 ppm ascorbic acid could be effective in improving lipid oxidation stability during vacuum refrigerated storage, without negative impacts on processing characteristics.

키워드

Ascorbic acid; Hot-boning; Chicken breast; Pre-rigor salting; Water-holding capacity; NATURAL ANTIOXIDANTS; MEAT-PRODUCTS; PRERIGOR; BEEF; HOT; PROTEINS; QUALITY; WATER; TIME
제목
Efficacy of ascorbic acid on processing characteristics and lipid oxidation of pre-rigor salted chicken breasts during vacuum refrigerated storage
저자
Ham, Youn-Kyung; Song, Dong-Heon; Ha, Jae-Ho; Park, Soo-Kyung; Kim, Yu-Ri; Chin, Koo Bok; Kim, Hyun-Wook
DOI
10.1016/j.lwt.2019.108691
발행일
2020-01
유형
Article
저널명
LWT - Food Science and Technology
권
118