| Literature DB >> 26473886 |
Anja Hartmann1, Kathrin Becker2, Ulf Karsten3, Daniel Remias4, Markus Ganzera5.
Abstract
Mycosporine-like amino acids (MAAs), a group of small secondary metabolites found in algae, cyanobacteria, lichens and fungi, have become ecologically and pharmacologically relevant because of their pronounced UV-absorbing and photo-protective potential. Their analytical characterization is generally achieved by reversed phase HPLC and the compounds are often quantified based on molar extinction coefficients. As an alternative approach, in our study a fully validated hydrophilic interaction liquid chromatography (HILIC) method is presented. It enables the precise quantification of several analytes with adequate retention times in a single run, and can be coupled directly to MS. Excellent linear correlation coefficients (R² > 0.9991) were obtained, with limit of detection (LOD) values ranging from 0.16 to 0.43 µg/mL. Furthermore, the assay was found to be accurate (recovery rates from 89.8% to 104.1%) and precise (intra-day precision: 5.6%, inter-day precision ≤6.6%). Several algae were assayed for their content of known MAAs like porphyra-334, shinorine, and palythine. Liquid chromatography-mass spectrometry (LC-MS) data indicated a novel compound in some of them, which could be isolated from the marine species Catenella repens and structurally elucidated by nuclear magnetic resonance spectroscopy (NMR) as (E)-3-hydroxy-2-((5-hydroxy-5-(hydroxymethyl)-2-methoxy-3-((2-sulfoethyl)amino)cyclohex-2-en-1-ylidene)amino) propanoic acid, a novel MAA called catenelline.Entities:
Keywords: HILIC; LC-MS; UV-sunscreen; isolation; mycosporine-like amino acids; quantification; validation
Mesh:
Substances:
Year: 2015 PMID: 26473886 PMCID: PMC4626690 DOI: 10.3390/md13106291
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Chemical structures of the available MAA standards, which were isolated from Palmaria palmata, Porphyra sp., Lichina pygmea and Plectropomus leopardus.
Figure 2Hydrophilic interaction liquid chromatography (HILIC) separation of mycosporine-like amino acids (MAAs) 1 to 5 at the optimum pH value of 6.6 (A); or using a mobile phase with pH 5 (B); or pH 4 (C); and (D) the influence of buffer molarity (5 mM to 20 mM ammonium acetate) on the results. Peak assignment is according to Figure 1.
Validation of the HILIC method.
| Calibration Data for Porbphyra, Shinorine and Palythine | |||||||
|---|---|---|---|---|---|---|---|
| Substance | Regr. Equation | Corr. Coefficient | σ rel of Slope | Range (µg/mL) | LOD 1 (µg/mL) | LOQ 2 (µg/mL) | |
| 1 | 0.36 | 250–3.91 | 0.30 | 0.91 | |||
| 3 | 0.59 | 125–1.96 | 0.16 | 0.48 | |||
| 4 | 0.18 | 250–3.91 | 0.43 | 1.31 | |||
| 1 | 104.14 | 104.13 | 102.75 | / | / | / | |
| 3 | 97.90 | 98.69 | 89.84 | / | / | / | |
| 4 | 102.36 | 96.77 | 101.02 | 44.79 (6.56) | 44.16 (1.67) | 49.95 (5.72) | 46.30 (5.57) |
1 LOD: limit of detection as determined with purified standards; 2 LOQ: limit of quantification as determined with purified standards; 3 expressed as recovery rates in percent (sample Leptolyngbya foveolarum); 4 values reflect µg/mL, relative standard deviations are given in brackets (n = 5, sample Palmaria palmata).
Figure 3Identification of novel MAAs by LC-MS in Catenella nipae (4006 and 2818) and Catenella repens. Chromatograms (A) to (C) are recorded at 320 nm; traces D and E indicate m/z values of a (383) and b (295) in positive ESI mode. The high-resolution MS spectra of catenelline in positive ESI mode is shown as (F).
NMR shift values for catenelline; spectra were recorded on a 600 MHz NMR instrument in deuterated water.
| MAA | ||
|---|---|---|
| 13C | 1H | |
| 1 | 162.03 | - |
| 2 | 128.46 | - |
| 3 | 162.78 | - |
| 4 | 35.53 | 2.98 d (17.4) ; 2.91 d (17.5) |
| 5 | 73.74 | - |
| 6 | 36.16 | 2.93 d (17.4); 2.70 d (17.3) |
| 7 | 70.31 | 3.60 d |
| 8 | 62.14 | 3.66 s |
| 9 | 42.02 | 3.88 m |
| 10 | 52.54 | 3.27 dt (1.0, 6.5) |
| 11 | 63.39 | 4.33 dd (3.8, 6.7) |
| 12 | 177.37 | - |
| 13 | 65.40 | 3.98 m (6.4, 4.4) |
Figure 4Structure of catenelline, a novel MAA isolated from Catenella repens. NMR long-range correlations are indicated with arrows.
Origin of analyzed samples.
| Species | Origin of Sample |
|---|---|
| commercially available; Asia Express Food, LOT-Nr. 120516, Kampen, NL | |
| commercially available; Porto Muinos, LOT-Nr. 2117543, Cambre, E | |
| commercially available; Irish Seaweeds, LOT-Nr. 5391513420184, Belfast, UK | |
| 1998, Millers landing, Victoria, Australia, collected and identified by U.K., University of Rostock, Germany, provided in 2013 | |
| 2002, Roscoff, Brittany, collected and identified by U.K., University of Rostock, Germany, provided in 2013 | |
| 1987, Cowie Beach, Queensland, Australia, collected and identified by John West; since 2000 grown by U.K., University of Rostock, Germany and provided in 2013 | |
| 1999, Maningrida, Arnhem Land, Northern Territory, Australia, collected and identified by John West; since 2000 grown by U.K., University of Rostock, Germany and provided in 2013 | |
| 1984, La Parguera, Puerto Rico, collected and identified by John West; since 2000 grown by U.K., University of Rostock, Germany and provided in 2013 | |
| EPSAG Culture Collection of Algae, University of Göttingen, Germany; Strain-Nr. 39.96 | |
| Culture Collection of Autotrophic Organism, Třeboň, Czech Republic; isolated by Vinatzer 1975; strain-Nr. Innsbruck V157 | |
| Culture Collection of Autotrophic Organisms, Třeboň, Czech Republic; isolated by Zehnder 1977; strain-Nr. 034; GenBank: L05609.1 | |
| Culture Collection of Autotrophic Organisms, Třeboň, Czech Republic; isolated by ZEHNDER 1965; strain-Nr. 081; GenBank: AM398970.1 |
Figure 5Determination of MAAs in Porphyra sp. and Palmaria palmata; chromatograms (A,B) were recorded at 320 nm; and the other traces (C–G) show the assignment of individual compounds in P. palmata by LC-MS in EIC mode.
Figure 6Summary of quantification results stated as mg MAA/g dry weight. In the first diagram, the results of known MAAs are presented (n = 3); the second diagram illustrates the content of catenelline and compound b, a not yet identified MAA (n = 3).