Isoprostanoids quantitative profiling of marine red and brown macroalgae

被引:24
作者
Vigor, Claire [1 ]
Reversat, Guillaume [1 ]
Rocher, Amandine [1 ]
Oger, Camille [1 ]
Galano, Jean-Marie [1 ]
Vercauteren, Joseph [1 ]
Durand, Thierry [1 ]
Tonon, Thierry [2 ,3 ]
Leblanc, Catherine [2 ]
Potin, Philippe [2 ]
机构
[1] UM, CNRS, ENSCM, IBMM,Fac Pharm,UMR 5247, 15 Ave Charles Flahault, F-34060 Montpellier 2, France
[2] Sorbonne Univ, CNRS, Integrat Biol Marine Models LBI2M, SBR, F-29680 Roscoff, France
[3] Univ York, Dept Biol, Ctr Novel Agr Prod, York YO10 5DD, N Yorkshire, England
关键词
Macroalgae; Isoprostanoids; Heavy metal; Copper stress; Oxylipins; Micro-LC-MS/MS; CYCLIC OXYGENATED METABOLITES; OXIDATIVE STRESS BIOMARKERS; POLYUNSATURATED FATTY-ACIDS; ECTOCARPUS-SILICULOSUS; PHYTOPROSTANES; FOOD; B-1; DETOXIFICATION; PHYTOFURANS; DERIVATIVES;
D O I
10.1016/j.foodchem.2018.06.111
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
With the increasing demand for direct human and animal consumption seaweed farming is rapidly expanding worldwide. Macroalgae have colonized aquatic environments in which they are submitted to frequent changes in biotic and abiotic factors that can trigger oxidative stress (OS). Considering that isoprostanoid derivatives may constitute the most relevant OS biomarkers, we were interested to establish their profile in two red and four brown macroalgae. Seven phytoprostanes, three phytofuranes, and four isoprostanes were quantified through a new micro-LC-MS/MS method. The isoprostanoid contents vary greatly among all the samples, the ent-16(RS)-9-epi-ST-Delta(14)-10-PhytoF and the sum of 5-F-2t-IsoP and 5-epi-5F(2t)-IsoP being the major compounds for most of the macroalgae studied. We further quantified these isoprostanoids in macroalgae submitted to heavy metal (copper) exposure. In most of the cases, their concentrations increased after 24 h of copper stress corroborating the original hypothesis. One exception is the decrease of ent-9-L1 PhytoP content in L. digitata.
引用
收藏
页码:452 / 462
页数:11
相关论文
共 51 条
[1]  
Aaronson S, 1986, Food Foodways, V1, P311
[2]   Nonenzymatic α-Linolenic Acid Derivatives from the Sea: Macroalgae as Novel Sources of Phytoprostanes [J].
Barbosa, Mariana ;
Collado-Gonzalez, Jacinta ;
Andrade, Paula B. ;
Ferreres, Federico ;
Valentao, Patricia ;
Galano, Jean-Marie ;
Durand, Thierry ;
Gil-Izquierdo, Angel .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2015, 63 (28) :6466-6474
[3]   The Algal Revolution [J].
Brodie, Juliet ;
Chan, Cheong Xin ;
De Clerck, Olivier ;
Cock, J. Mark ;
Coelho, Susana M. ;
Gachon, Claire ;
Grossman, Arthur R. ;
Mock, Thomas ;
Raven, John A. ;
Smith, Alison G. ;
Yoon, Hwan Su ;
Bhattacharya, Debashish .
TRENDS IN PLANT SCIENCE, 2017, 22 (08) :726-738
[4]   α-Linolenic acid concentration and not wounding per se is the key regulator of octadecanoid (oxylipin) pathway activity in rice (Oryza sativa L.) leaves [J].
Christeller, John T. ;
Galis, Ivan .
PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2014, 83 :117-125
[5]   Algal models in plant biology [J].
Cock, J. Mark ;
Coelho, Susana M. .
JOURNAL OF EXPERIMENTAL BOTANY, 2011, 62 (08) :2425-2430
[6]   Induction of oxidative stress in the red macroalga Gracilaria tenuistipitata by pollutant metals [J].
Collén, J ;
Pinto, E ;
Pedersén, M ;
Colepicolo, P .
ARCHIVES OF ENVIRONMENTAL CONTAMINATION AND TOXICOLOGY, 2003, 45 (03) :337-342
[7]   Seaweed extract stimuli in plant science and agriculture [J].
Craigie, James S. .
JOURNAL OF APPLIED PHYCOLOGY, 2011, 23 (03) :371-393
[8]   Synthesis and discovery of phytofurans: metabolites of α-linolenic acid peroxidation [J].
Cuyamendous, C. ;
Leung, K. S. ;
Durand, T. ;
Lee, J. C. -Y. ;
Oger, C. ;
Galano, J. -M. .
CHEMICAL COMMUNICATIONS, 2015, 51 (86) :15696-15699
[9]   Monte Verde:: Seaweed, food, medicine, and the peopling of South America [J].
Dillehay, Tom D. ;
Ramirez, C. ;
Pino, M. ;
Collins, M. B. ;
Rossen, J. ;
Pino-Navarro, J. D. .
SCIENCE, 2008, 320 (5877) :784-786
[10]   Integrative analysis of metabolite and transcript abundance during the short-term response to saline and oxidative stress in the brown alga Ectocarpus siliculosus [J].
Dittami, Simon M. ;
Gravot, Antoine ;
Renault, David ;
Goulitquer, Sophie ;
Eggert, Anja ;
Bouchereau, Alain ;
Boyen, Catherine ;
Tonon, Thierry .
PLANT CELL AND ENVIRONMENT, 2011, 34 (04) :629-642