Bioactive food compounds from microalgae: an innovative framework on industrial biorefineries

被引:121
作者
Jacob-Lopes, Eduardo [1 ]
Maroneze, Mariana M. [1 ]
Depra, Mariany C. [1 ]
Sartori, Rafaela B. [1 ]
Dias, Rosangela R. [1 ]
Zepka, Leila Q. [1 ]
机构
[1] Fed Univ Santa Maria UFSM, Dept Food Sci & Technol, Roraima Ave 1000, BR-97105900 Santa Maria, RS, Brazil
关键词
PIGMENTS; CYANOBACTERIA; METABOLITES; EXTRACTION; PROTEIN; EPA; DHA;
D O I
10.1016/j.cofs.2018.12.003
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Currently, the most important microalgae-based product for use as bioactive food compound is single-cell protein (whole dried biomass) sold directly as dietary supplements. However, chemical specialties, such as pigments and fatty acids derived from microalgae are consolidating their market share of bioactive compounds for use as food coloring, food additive, and food supplement. Also, several emerging bioactive compounds (phycoerythrin, fucoxanthin, beta-glucan, and exocellular polysaccharides), not yet marketed, are shifting their research and development status to achieve commercial exploitation in the coming years. Microalgae-based products are prominent players in the bioactive food compounds industry. In this sense, this work aims to present a current opinion on bioactive food compounds from microalgae through a biorefinery approach.
引用
收藏
页码:1 / 7
页数:7
相关论文
共 37 条
[11]   Extraction and purification of high-value metabolites from microalgae: essential lipids, astaxanthin and phycobiliproteins [J].
Cuellar-Bermudez, Sara P. ;
Aguilar-Hernandez, Iris ;
Cardenas-Chavez, Diana L. ;
Ornelas-Soto, Nancy ;
Romero-Ogawa, Miguel A. ;
Parra-Saldivar, Roberto .
MICROBIAL BIOTECHNOLOGY, 2015, 8 (02) :190-209
[12]   Concepts and studies on lipid and pigments of microalgae: A review [J].
D'Alessandro, Emmanuel B. ;
Antoniosi Filho, Nelson R. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 58 :832-841
[13]   Biorefinery integration of microalgae production into cassava processing industry: Potential and perspectives [J].
de Carvalho, Julio Cesar ;
Borghetti, Ivo Alberto ;
Cartas, Liliana Carrilo ;
Woiciechowski, Adenise Lorenci ;
Soccol, Vanete Thomaz ;
Soccol, Carlos Ricardo .
BIORESOURCE TECHNOLOGY, 2018, 247 :1165-1172
[14]   Food commodities from microalgae [J].
Draaisma, Rene B. ;
Wijffels, Rene H. ;
Slegers, P. M. ;
Brentner, Laura B. ;
Roy, Adip ;
Barbosa, Maria J. .
CURRENT OPINION IN BIOTECHNOLOGY, 2013, 24 (02) :169-177
[15]  
Enzing C., 2014, MICROALGAE BASED PRO
[16]  
Fagundes MB, 2018, FOOD RES INT
[17]   Antimicrobial Compounds from Eukaryotic Microalgae against Human Pathogens and Diseases in Aquaculture [J].
Falaise, Charlotte ;
Francois, Cyrille ;
Travers, Marie-Agnes ;
Morga, Benjamin ;
Haure, Joel ;
Tremblay, Rejean ;
Turcotte, Francois ;
Pasetto, Pamela ;
Gastineau, Romain ;
Hardivillier, Yann ;
Leignel, Vincent ;
Mouget, Jean-Luc .
MARINE DRUGS, 2016, 14 (09)
[18]   Microalgae, old sustainable food and fashion nutraceuticals [J].
Garcia, Jose L. ;
de Vicente, Marta ;
Galan, Beatriz .
MICROBIAL BIOTECHNOLOGY, 2017, 10 (05) :1017-1024
[19]  
Glass DJ, 2015, Algal Biorefineries, P23, DOI [10.1007/978-3-319-20200-62, DOI 10.1007/978-3-319-20200-62, DOI 10.1007/978-3-319-20200-6_2]
[20]   Different DHA or EPA production responses to nutrient stress in the marine microalga Tisochrysis lutea and the freshwater microalga Monodus subterraneus [J].
Hu, Hao ;
Li, Jia-Yun ;
Pan, Xin-Rong ;
Zhang, Fang ;
Ma, Lin-Lin ;
Wang, Hua-Jie ;
Zeng, Raymond Jianxiong .
SCIENCE OF THE TOTAL ENVIRONMENT, 2019, 656 :140-149