| Literature DB >> 20110892 |
Jian-Wei Xie1, Lan-Fang Huang, Wei Hu, Yun-Biao He, Kin Ping Wong.
Abstract
A sensitive, selective and reliable liquid chromatography-mass spectrometry coupled with electrospray ionization interface method for simultaneous separation and determination of thymine, adenine, adenosine and cordycepin in Cordyceps sinensis has been established. The optimum separation for these analytes was achieved using a gradient elution system and a 2.0 x 150 mm Shimadzu VP-ODS column. 2-Chloroadenosine was used as internal standard for this assay. [M+H]+ ions at m/z 127, 136, 268, 252 and 302 were chosen and selective ion monitoring (SIM) mode was used for quantitative analysis of the four main nucleosides. The regression equations were linear in the range of 1.0-117.5 microg x mL(-1) for thymine, 1.8-127.0 microg x mL(-1) for adenine, 0.6-114.0 microg x mL(-1) for adenosine and 0.5-107.5 microg x mL(-1) for cordycepin. The limits of quantitation (LOQ) and detection (LOD) were 1.0 and 0.2 microg x mL(-1) for thymine, 1.8 and 0.6 microg x mL(-1) for adenine, 0.6 and 0.1 microg x mL(-1) for adenosine and 0.5 and 0.1 microg x mL(-1) for cordycepin, respectively. The recoveries of the four nucleosides ranged from 98.47 to 99.32%. The developed method was successfully used to determine nucleosides in Cordyceps sinensis from different sources.Entities:
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Year: 2010 PMID: 20110892 PMCID: PMC6257052 DOI: 10.3390/molecules15010305
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1HPLC-DAD chromatogram of nucleoside standards: (1) thymine; (2) adenine; (3) adenosine; (4) cordycepin; (5) 2-chloroadenosine.
The values of tR, UVλmax, [M+H]+ and other MS ions of nucleoside standard compounds.
| Peak number | Compound | tR/min | UVλmax /nm | [M+H]+/m/z | [M+Na]+/m/z |
|---|---|---|---|---|---|
|
| Thymine | 3.49 | 203, 264 | 127 | |
|
| Adenine | 5.92 | 207, 261 | 136 | |
|
| Adenosine | 10.12 | 206, 260 | 268 | 290 |
|
| Cordycepin | 13.75 | 207, 260 | 252 | 274 |
Figure 2Mass spectra of nucleosides in scan mode: (A) thymine; (B) adenine; (C) adenosine; (D) cordycepin; (E) 2-chloroadenosine.
Figure 3LC/ESI-MS total ion chromatograms (TIC) of nucleoside standards: (A) and water extracts of Cordyceps sinensis from Qinghai Province (B) (1) thymine; (2) adenine; (3) adenosine; (4) cordycepin; (5) 2-chloroadenosine.The concentration of each standard and 2-chloroadenosine was 10 µg·mL-1.
Regression equation, correlation coefficients (R), linear range and limit of detection.
| Compound name | Regression equation | R | Liner range/µg·mL-1 | Limit of detection/µg·mL-1 |
|---|---|---|---|---|
| Thymine | Y = 0.06537X + 0.00614 | 0.9984 | 1.0~117.5 | 0.2 |
| Adenine | Y = 0.1438X + 0.0136 | 0.9981 | 1.8~127.0 | 0.6 |
| Adenosine | Y = 0.1292X + 0.0113 | 0.9991 | 0.6~114.0 | 0.1 |
| Cordycepin | Y = 0.2146X + 0.0194 | 0.9993 | 0.5~107.5 | 0.1 |
Intra-assay precision and accuracyof thymine, adenine, adenosine and cordycepin.
| Analyte | Concentration added/µg·mL-1 | Concentration found/µg·mL-1 | RE/% | RSD/% |
|---|---|---|---|---|
| Thymine | 2.0 | 2.06 | 3.0 | 6.3 |
| 20.0 | 19.7 | -1.5 | 3.2 | |
| 100.0 | 101.6 | 1.6 | 1.4 | |
| 4.0a | 3.94 | -1.5 | 4.2 | |
| Adenine | 2.0 | 1.93 | -3.5 | 5.4 |
| 20.0 | 20.4 | 2.0 | 3.1 | |
| 100.0 | 99.3 | -0.7 | 1.6 | |
| 2.0 a | 1.95 | -2.5 | 2.9 | |
| Adenosine | 2.0 | 1.96 | -2.0 | 5.4 |
| 20.0 | 20.3 | 1.5 | 3.4 | |
| 100.0 | 99.1 | -0.9 | 1.7 | |
| 2.5 a | 2.47 | -1.2 | 3.8 | |
| Cordycepin | 2.0 | 2.08 | 4.0 | 6.1 |
| 20.0 | 20.4 | 2.0 | 2.9 | |
| 100.0 | 99.3 | -0.7 | 1.9 | |
| 2.0 a | 2.07 | 3.5 | 5.7 |
a Aqueous extract of a Cordyceps sinensis sample from Sichuan spiked with thymine, adenine, adenosine and cordycepin standards.
Inter-assay precision and accuracyof thymine, adenine, adenosine and cordycepin.
| Analyte | Concentration added/µg·mL-1 | Concentration found/µg·mL-1 | RE/% | RSD/% |
|---|---|---|---|---|
| Thymine | 2.0 | 2.08 | 4.0 | 6.7 |
| 20.0 | 19.4 | -3.0 | 4.2 | |
| 100.0 | 98.6 | 1.4 | 1.8 | |
| 4.0a | 4.10 | -2.5 | 3.8 | |
| Adenine | 2.0 | 1.91 | -4.5 | 6.2 |
| 20.0 | 20.6 | 3.0 | 3.7 | |
| 100.0 | 98.7 | -1.3 | 1.9 | |
| 2.0 a | 2.04 | 2.0 | 5.4 | |
| Adenosine | 2.0 | 1.94 | -3.0 | 6.4 |
| 20.0 | 20.7 | 3.5 | 3.8 | |
| 100.0 | 98.1 | -1.9 | 2.1 | |
| 2.5 a | 2.58 | 3.2 | 5.3 | |
| Cordycepin | 2.0 | 1.92 | -4.0 | 6.5 |
| 20.0 | 20.6 | 3.0 | 3.9 | |
| 100.0 | 98.2 | -1.8 | 1.6 | |
| 2.0 a | 1.94 | -3.0 | 6.2 |
a Aqueous extract of a Cordyceps sinensis sample from Sichuan spiked with thymine, adenine, adenosine and cordycepin standards.
Results for the determination of main nucleosides in Cordyceps sinensis from different sources.
| Source | Thymine/µg·g-1 | Adenine/µg·g-1 | Adenosine/µg·g-1 | Cordycepin/µg·g-1 |
|---|---|---|---|---|
| Qinghai | 174.2 | 29.7 | 186.5 | 91.2 |
| Tibet | 138.5 | 38.1 | 79.6 | 48.7 |
| Sichuan | 142.6 | 20.4 | 126.1 | 31.3 |
Figure 4Structures of thymine, adenine, adenosine, cordycepin and 2-chloroadenosine.
Solvent elution program for HPLC.
| Step | Time/min | Ammonium acetate (40 mM, pH=5.2)/% | Methanol/% |
|---|---|---|---|
| 1 | 0 | 85 | 15 |
| 2 | 6 | 85 | 15 |
| 3 | 12 | 80 | 20 |
| 4 | 17 | 80 | 20 |
| 5 | 20 | 95 | 5 |