Identification and quantification of methylglyoxal as the dominant antibacterial constituent of Manuka (Leptospermum scoparium) honeys from New Zealand

被引:473
|
作者
Mavric, Elvira [1 ,2 ]
Wittmann, Silvia [1 ,2 ]
Barth, Gerold
Henle, Thomas [1 ,2 ]
机构
[1] Tech Univ Dresden, Inst Food Chem, D-01062 Dresden, Germany
[2] Tech Univ Dresden, Inst Microbiol, Dresden, Germany
关键词
1,2-dicarbonyl compounds; 3-deoxyglucosulose; bacteria; glyoxal; methylglyoxal;
D O I
10.1002/mnfr.200700282
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
The 1,2-dicarbonyl compounds 3-deoxyglucosulose (3-DG), glyoxal (GO), and methylglyoxal (MGO) were measured as the corresponding quinoxalines after derivatization with orthophenylendiamine using RP-HPLC and UV-detection in commercially available honey samples. Whereas for most of the samples values for 3-DG, MGO, and GO were comparable to previously published data, for six samples of New Zealand Manuka (Leptospermum scoparium) honey very high amounts of MGO were found, ranging from 3 8 to 761 mg/kg, which is up to 100-fold higher compared to conventional honeys. MGO was unambigously identified as the corresponding quinoxaline via photodiodearry detection as well as by means of mass spectroscopy. Antibacterial activity of honey and solutions of 1,2-dicarbonyl towards Escherichia coli (E. coli) and Staphylococcus aureus (S. aureus) were analyzed using an agar well diffusion assay. Minimum concentrations needed for inhibition of bacterial growth (minimum inhibitory concentration, MIC) of MGO were 1.1 mM for both types of bacteria. MIC for GO was 6.9 mM (E. coli) or 4.3 mM (S. aureus), respectively. 3-DG showed no inhibition in concentrations up to 60 mM. Whereas most of the honey samples investigated showed no inhibition in dilutions of 80% (v/v with water) or below, the samples of Manuka honey exhibited antibacterial activity when diluted to 15-30%, which corresponded to MGO concentrations of 1.1-1.8 mM. This clearly demonstrates that the pronounced antibacterial activity of New Zealand Manuka honey directly originates from MGO.
引用
收藏
页码:483 / 489
页数:7
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  • [1] The origin of methylglyoxal in New Zealand manuka (Leptospermum scoparium) honey
    Adams, Christopher J.
    Manley-Harris, Merilyn
    Molan, Peter C.
    [J]. CARBOHYDRATE RESEARCH, 2009, 344 (08) : 1050 - 1053
  • [2] Correlation of the antibacterial activity of commercial manuka and Leptospermum honeys from Australia and New Zealand with methylglyoxal content and other physicochemical characteristics
    Green, Kathryn J.
    Lawag, Ivan L.
    Locher, Cornelia
    Hammer, Katherine A.
    [J]. PLOS ONE, 2022, 17 (07):
  • [3] EXTRACTABLE ORGANIC-SUBSTANCES FROM NEW-ZEALAND UNIFLORAL MANUKA (LEPTOSPERMUM-SCOPARIUM) HONEYS
    WILKINS, AL
    LU, YR
    MOLAN, PC
    [J]. JOURNAL OF APICULTURAL RESEARCH, 1993, 32 (01) : 3 - 9
  • [4] Studies on the formation of methylglyoxal from dihydroxyacetone in Manuka (Leptospermum scoparium) honey
    Atrott, Julia
    Haberlau, Steffi
    Henle, Thomas
    [J]. CARBOHYDRATE RESEARCH, 2012, 361 : 7 - 11
  • [5] INTERCEPTION OF RAINFALL BY MANUKA (LEPTOSPERMUM SCOPARIUM) AT TAITA NEW ZEALAND
    ALDRIDGE, R
    JACKSON, RJ
    [J]. NEW ZEALAND JOURNAL OF SCIENCE, 1968, 11 (02): : 301 - &
  • [6] ASPECTS OF THE ECOLOGY OF MANUKA, LEPTOSPERMUM-SCOPARIUM, IN NEW-ZEALAND
    RONGHUA, Y
    MARK, AF
    WILSON, JB
    [J]. NEW ZEALAND JOURNAL OF ECOLOGY, 1985, 8 : 152 - 152
  • [7] Essential oils from New Zealand manuka:: triketone and other chemotypes of Leptospermum scoparium
    Douglas, MH
    van Klink, JW
    Smallfield, BM
    Perry, NB
    Anderson, RE
    Johnstone, P
    Weavers, RT
    [J]. PHYTOCHEMISTRY, 2004, 65 (09) : 1255 - 1264
  • [8] Isolation of maltol glucoside from the floral nectar of New Zealand manuka (Leptospermum scoparium)
    Adams, Christopher J.
    Grainger, Megan N. C.
    Manley-Harris, Merilyn
    [J]. FOOD CHEMISTRY, 2015, 174 : 306 - 309
  • [9] Effect of high pressure processing on the conversion of dihydroxy acetone to methylglyoxal in New Zealand manuka (Leptospermum scoparium) honey and models thereof
    Grainger, Megan N. C.
    Manley-Harris, Merilyn
    Fauzi, Noor A. M.
    Farid, Mohammed M.
    [J]. FOOD CHEMISTRY, 2014, 153 : 134 - 139
  • [10] Phenolic compounds and methylglyoxal in some New Zealand manuka and kanuka honeys
    Stephens, Jonathan M.
    Schlothauer, Ralf C.
    Morris, Bruce D.
    Yang, Derek
    Fearnley, Liam
    Greenwood, David R.
    Loomes, Kerry M.
    [J]. FOOD CHEMISTRY, 2010, 120 (01) : 78 - 86