Optimization of conjugated linoleic acid production by Bifidobacterium animalis subsp. Lactis and its application in fermented milk

被引:11
|
作者
Moghadam, Behnam Esmaeilnejad [1 ,2 ]
Keivaninahr, Fatemeh [1 ]
Nazemi, Aylar [1 ]
Fouladi, Masoumeh [3 ]
Mokarram, Reza Rezaei [1 ]
Benis, Khaled Zoroufchi [4 ]
机构
[1] Univ Tabriz, Fac Agr, Dept Food Sci & Technol, POB 51666-16471, Tabriz, Iran
[2] Kalleh Dairy Co, Solico Grp, R&D Dept, POB 46161-63114, Amol, Iran
[3] Univ Sistan & Baluchestan, Fac Engn, Dept Chem Engn, POB 98167-45845, Zahedan, Iran
[4] Univ Saskatchewan, Coll Engn, Dept Chem Engn, Saskatoon, SK S7N 5A9, Canada
关键词
CLA; RSM; Fermented milk; GC; Viscosity; INTERNATIONAL SCIENTIFIC ASSOCIATION; FATTY-ACID; LACTOBACILLUS-CASEI; CONSENSUS STATEMENT; GENOME SEQUENCE; PROBIOTICS; PREBIOTICS; PROFILE; SALT; FUNCTIONALITY;
D O I
10.1016/j.lwt.2019.03.071
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Response surface methodology was used to optimize the concentration of fructooligosaccharide (FOS), sonication time and salt concentration for maximizing the production of conjugated linoleic acid (CLA) by Bifidobacterium animalis. The highest CLA was obtained under the optimized conditions including FOS (22.43%), salt (0.136%) and ultrasound time (1.47 min). The validity of the statistical model was confirmed by investigation of CLA and comparing the results by predicted value. Cell enumeration, lactose content and viscosity of optimum sample and controls were also determined. The count of cells in sonicated samples was the lowest (8.6 1og10 CFU g(-1)) and the mean amount of lactose during the fermentation time decreased in all samples, but this decrease was more significant in the optimized sample (20 g L-1). The viscosity of all samples increased with increasing the fermentation time, but this was significantly higher in the optimum sample (136 cp). According to the sensory evaluation, the optimum sample got the highest scores for appearance, mouthfeel and taste. The results confirmed the possibility of using the product as a functional food.
引用
收藏
页码:344 / 352
页数:9
相关论文
共 50 条
  • [31] Marinated Sea Bream Fillets Enriched with Lactiplantibacillus plantarum and Bifidobacterium animalis subsp. lactis: Brine Optimization and Product Design
    Speranza, Barbara
    Bevilacqua, Antonio
    Racioppo, Angela
    Campaniello, Daniela
    Sinigaglia, Milena
    Corbo, Maria Rosaria
    FOODS, 2021, 10 (03)
  • [32] Effects of conventional and nonconventional drying on the stability of Bifidobacterium animalis subsp. lactis INL1
    Florencia Zacarias, Maria
    Reinheimer, Jorge A.
    Vinderola, Gabriel
    Kulozik, Ulrich
    Ambros, Sabine
    INTERNATIONAL JOURNAL OF DAIRY TECHNOLOGY, 2020, 73 (03) : 625 - 633
  • [33] Probiotic Bifidobacterium animalis subsp. lactis consumption slows down orthodontic tooth movement in mice
    Duffles, Leticia Fernanda
    Menino, Alessandra Parreira
    Taira, Thaise Mayumi
    de Oliveira, Sarah
    Salvador, Sergio Luiz
    Messora, Michel Reis
    Aurelio, Marco
    Vinolo, Ramirez
    Fukada, Sandra Yasuyo
    ARCHIVES OF ORAL BIOLOGY, 2022, 134
  • [34] Bifidobacterium animalis subsp. lactis BB-12 in reducing the risk of infections in early childhood
    Teemu J. Taipale
    Kaisu Pienihäkkinen
    Erika Isolauri
    Jorma T. Jokela
    Eva M. Söderling
    Pediatric Research, 2016, 79 : 65 - 69
  • [35] The Effect of Bifidobacterium animalis subsp. lactis Bl-04 on Influenza A Virus Infection in Mice
    Zabel, Bryan
    Makela, Sanna M.
    Nedveck, Derek
    Hibberd, Ashley A.
    Yeung, Nicolas
    Latvala, Sinikka
    Lehtoranta, Liisa
    Junnila, Jouni
    Walters, Kevin B.
    Morovic, Wesley
    Lehtinen, Markus J.
    MICROORGANISMS, 2023, 11 (10)
  • [36] Effect of Bifidobacterium animalis subsp. lactis MN-Gup on constipation and the composition of gut microbiota
    Wang, R.
    Sun, J.
    Li, G.
    Zhang, M.
    Niu, T.
    Kang, X.
    Zhao, H.
    Chen, J.
    Sun, E.
    Li, Y.
    BENEFICIAL MICROBES, 2021, 12 (01) : 31 - 42
  • [37] Effect of systemic administration of Bifidobacterium animalis subsp. lactis HN019 on apical periodontitis
    Curcino Araujo, Lisa Danielly
    Bezerra Segato, Raquel Assed
    Colen Reis, Thais de Paula
    de Souza Salvador, Sergio Luis
    Chaves Furlaneto, Flavia Aparecida
    Messora, Michel Reis
    Nelson-Filho, Paulo
    Yamamoto de Almeida, Lana Kei
    Lucisano, Marilia Pacifico
    Pereira Cavalcanti Silva, Clara Marina
    Bezerra da Silva, Lea Assed
    BRAZILIAN ORAL RESEARCH, 2023, 37
  • [38] Growth, Substrate, and Metabolite Changes of Probiotic Bifidobacterium animalis subsp. lactis in Soy (Tofu) Whey
    Tindjau, Ricco
    Chua, Jian-Yong
    Liu, Shao-Quan
    FERMENTATION-BASEL, 2023, 9 (12):
  • [39] Adjunctive efficacy of Bifidobacterium animalis subsp. lactis XLTG11 for functional constipation in children
    Chen, Ke
    Zhou, Zengyuan
    Nie, Yang
    Cao, Yanmei
    Yang, Ping
    Zhang, Ying
    Xu, Ping
    Yu, Qinghua
    Shen, Yang
    Ma, Weiwei
    Jin, Shanshan
    Liu, Changqi
    BRAZILIAN JOURNAL OF MICROBIOLOGY, 2024, 55 (02) : 1317 - 1330
  • [40] Bifidobacterium animalis subsp. lactis boosts neonatal immunity: unravelling systemic defences against Salmonella
    Lin, Chunxiu
    Lin, Yugui
    Wang, Shunhe
    Wang, Jialiang
    Mao, Xuhua
    Zhou, Yonghua
    Zhang, Hao
    Chen, Wei
    Wang, Gang
    FOOD & FUNCTION, 2024, 15 (01) : 236 - 254