Chemical, physical and biotechnological approaches to the production of the potent antioxidant hydroxytyrosol

被引:52
|
作者
Britton, James [1 ]
Davis, Reeta [1 ]
O'Connor, Kevin E. [1 ,2 ]
机构
[1] Univ Coll Dublin, Sch Biomol & Biomed Sci, Dublin 4, Ireland
[2] Univ Coll Dublin, Beacon Bioecon Res Ctr, Dublin 4, Ireland
关键词
Hydroxytyrosol; Biocatalysis; Olives; Chemical synthesis; Synthetic biology; Tyrosinase; MILL WASTE-WATER; HIGH-YIELD RECOVERY; OLEA-EUROPAEA L; OLIVE OIL; PHENOLIC-COMPOUNDS; ESCHERICHIA-COLI; BY-PRODUCT; PURIFIED HYDROXYTYROSOL; PSEUDOMONAS-AERUGINOSA; ANTIMICROBIAL ACTIVITY;
D O I
10.1007/s00253-019-09914-9
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Hydroxytyrosol (HT) is a polyphenol of interest to the food, feed, supplements and pharmaceutical sectors. It is one of the strongest known natural antioxidants and has been shown to confer other benefits such as anti-inflammatory and anti-carcinogenic properties, and it has the potential to act as a cardio- and neuroprotectant. It is known to be one of the compounds responsible for the health benefits of the Mediterranean diet. In nature, HT is found in the olive plant (Olea europaea) as part of the secoiridoid compound oleuropein, in its leaves, fruit, oil and oil production waste products. HT can be extracted from these olive sources, but it can also be produced by chemical synthesis or through the use of microorganisms. This review looks at the production of HT using plant extraction, chemical synthesis and biotechnological approaches.
引用
收藏
页码:5957 / 5974
页数:18
相关论文
共 50 条
  • [21] Biotechnological Production of Statins: Metabolic Aspects and Genetic Approaches
    Neto, Roberval N. M.
    Gomes, Edelvio de Barros
    Weba-Soares, Lucas
    Dias, Leo R. L.
    da Silva, Luis C. N.
    de Miranda, Rita de C. M.
    CURRENT PHARMACEUTICAL BIOTECHNOLOGY, 2019, 20 (15) : 1244 - 1259
  • [22] Biotechnological approaches for the production of polyhydroxyalkanoates in microorganisms and plants - A review
    Suriyamongkol, Pornpa
    Weselake, Randall
    Narine, Suresh
    Moloney, Maurice
    Shah, Saleh
    BIOTECHNOLOGY ADVANCES, 2007, 25 (02) : 148 - 175
  • [23] Biotechnological Approaches for the Production of Pharmaceutically Important Compound: Plumbagin
    Roy, Arpita
    Bharadvaja, Navneeta
    CURRENT PHARMACEUTICAL BIOTECHNOLOGY, 2018, 19 (05) : 372 - 381
  • [24] Genetic approaches in improving biotechnological production of taxanes: An update
    Perez-Matas, Edgar
    Hidalgo-Martinez, Diego
    Escrich, Ainoa
    Alcalde, Miguel Angel
    Moyano, Elisabeth
    Bonfill, Mercedes
    Palazon, Javier
    FRONTIERS IN PLANT SCIENCE, 2023, 14
  • [25] Biotechnological approaches to improve horticultural crop production in Kenya
    Chebet, DK
    Okeno, JA
    Mathenge, P
    BIOTECHNOLOGY IN HORTICULTURAL CROP IMPROVEMENT: ACHIEVEMENTS, OPPORTUNITIES AND LIMITATIONS, 2003, (625): : 473 - 477
  • [26] Biotechnological and bioinformatics approaches for augmentation of biohydrogen production: A review
    Kumar, Gopal Ramesh
    Chowdhary, Nupoor
    RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 56 : 1194 - 1206
  • [27] PLANT BIOTECHNOLOGICAL APPROACHES FOR THE PRODUCTION AND COMMERCIALIZATION OF TRANSGENIC CROPS
    Khan, E. U.
    Liu, J. -H.
    BIOTECHNOLOGY & BIOTECHNOLOGICAL EQUIPMENT, 2009, 23 (03) : 1281 - 1288
  • [28] Biotechnological approaches for L-ascorbic acid production
    Hancock, RD
    Viola, R
    TRENDS IN BIOTECHNOLOGY, 2002, 20 (07) : 299 - 305
  • [29] Enhanced production of recombinant proteins by systems biotechnological approaches
    Sang Yup Lee
    Microbial Cell Factories, 5 (Suppl 1)
  • [30] Tomato derived polysaccharides for biotechnological applications: Chemical and biological approaches
    Tommonaro, Giuseppina
    Poli, Annarita
    De Rosa, Salvatore
    Nicolaus, Barbara
    MOLECULES, 2008, 13 (06) : 1384 - 1398