Synthesis of hydroxytyrosol, 2-hydroxyphenylacetic acid, and 3-hydroxyphenylacetic acid by differential conversion of tyrosol isomers using Serratia marcescens strain

被引:51
作者
Allouche, N [1 ]
Sayadi, S [1 ]
机构
[1] Ctr Biotechnol Sfax, Lab Bioproc, Sfax 3038, Tunisia
关键词
tyrosol; bioconversion; hydroxytyrosol; antioxidant; 3-hydroxyphenylacetic acid; 2-hydroxyphenylacetic acid; Serratia marcescens;
D O I
10.1021/jf050972w
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
We investigated to develop an effective procedure to produce the potentially high-added-value phenolic compounds through bioconversion of tyrosol isomers. A soil bacterium, designated Serratia marcescens strain, was isolated on the basis of its ability to grow on p-tyrosol (4-hydroxyphenylethanol) as a sole source of carbon and energy. During growth on p-tyrosol, Ser. marcescens strain was capable of promoting the formation of hydroxytyrosol. To achieve maximal hydroxytyrosol yield, the growth state of the culture utilized for p-tyrosol conversion as well as the amount of p-tyrosol that was treated were optimized. The optimal yield of hydroxytyrosol (80%) was obtained by Ser. marcescens growing cells after a 7-h incubation using 2 g/L of p-tyrosol added at the end of the exponential phase to a culture pregrown on 1 g/L of p-tyrosol. Furthermore, the substrate specificity of the developed biosynthesis was investigated using m-tyrosol (3-hydroxyphenylethanol) and o-tyrosol (2-hydroxyphenylethanol) as substrates. Ser. marcescens strain transformed completely m-tyrosol and o-tyrosol into 3-hydroxyphenylacetic acid and 2-hydroxyphenylacetic acid, respectively, via the oxidation of the side chain carbon of the treated substrates. This proposed procedure is an alternative approach to obtain hydroxytyrosol, 2-hydroxyphenylacetic acid, and 3-hydroxyphenylacetic acid in an environmentally friendly way which could encourage their use as alternatives in the search for replacement of synthetic food additives.
引用
收藏
页码:6525 / 6530
页数:6
相关论文
共 40 条
[1]   HIGH-PERFORMANCE LIQUID-CHROMATOGRAPHY OF SELECTED PHENOLIC-COMPOUNDS IN OLIVE OILS [J].
AKASBI, M ;
SHOEMAN, DW ;
CSALLANY, AS .
JOURNAL OF THE AMERICAN OIL CHEMISTS SOCIETY, 1993, 70 (04) :367-370
[2]   Toward a high yield recovery of antioxidants and purified hydroxytyrosol from olive mill wastewaters [J].
Allouche, N ;
Fki, I ;
Sayadi, S .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2004, 52 (02) :267-273
[3]   Use of whole cells of Pseudomonas aeruginosa for synthesis of the antioxidant hydroxytyrosol via conversion of tyrosol [J].
Allouche, N ;
Damak, A ;
Ellouz, R ;
Sayadi, S .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2004, 70 (04) :2105-2109
[4]  
Allouche N., 2004, J SOC CHIMIQUE TUNIS, V6, P33
[5]   GC-RIS EVALUATION OF PHENOLIC-COMPOUNDS IN VIRGIN OLIVE OIL [J].
ANGEROSA, F ;
DALESSANDRO, N ;
KONSTANTINOU, P ;
DIGIACINTO, L .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1995, 43 (07) :1802-1807
[6]  
[Anonymous], SYST APPL MICROBIOL
[7]   Effect of hydroxytyrosol found in extra virgin olive oil on oxidative DNA damage and oil low-density lipoprotein oxidation [J].
Aruoma, OI ;
Deiana, M ;
Jenner, A ;
Halliwell, B ;
Kaur, H ;
Banni, S ;
Corongiu, FP ;
Dessí, MA ;
Aeschbach, R .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1998, 46 (12) :5181-5187
[8]   On the in-vitro antimicrobial activity of oleuropein and hydroxytyrosol [J].
Bisignano, G ;
Tomaino, A ;
Lo Cascio, R ;
Crisafi, G ;
Uccella, N ;
Saija, A .
JOURNAL OF PHARMACY AND PHARMACOLOGY, 1999, 51 (08) :971-974
[9]   Antioxidant activity of the main bioactive derivatives from oleuropein hydrolysis by hyperthermophilic β-glycosidase [J].
Briante, R ;
La Cara, F ;
Tonziello, MP ;
Febbraio, F ;
Nucci, R .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2001, 49 (07) :3198-3203
[10]   A highly convenient synthesis of hydroxytyrosol and its recovery from agricultural waste waters [J].
Capasso, R ;
Evidente, A ;
Avolio, S ;
Solla, F .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1999, 47 (04) :1745-1748