| Literature DB >> 21116409 |
Jin-Shan Tang1, Feng Zhao, Hao Gao, Yi Dai, Zhi-Hong Yao, Kui Hong, Jia Li, Wen-Cai Ye, Xin-Sheng Yao.
Abstract
A rapid method for characterization and online detection of surfactin isomers was developed based on HPLC-MS(n) (n = 1, 2, 3) analyses, and many surfactin isomers were detected and characterized from the bioactive fraction of the mangrove bacterium Bacillus sp. Inhibitory activities of surfactin isomers on the overproduction of nitric oxide and the release of TNF-α and IL-6 in LPS-induced macrophages were systematically investigated. It was revealed that the surfactin isomers showed strong inhibitory properties on the overproduction of nitric oxide and the release of IL-6 on LPS-induced murine macrophage cell RAW264.7 with IC(50) values ranging from 1.0 to 7.0 μM. Structure-activity relationship (SAR) studies revealed that the existence of the free carboxyl group in the structure of surfactin isomers was crucial. These findings will be very helpful for the development of this novel kind of natural product as new anti-inflammatory agents.Entities:
Keywords: Bacillus sp.; LC-MS; anti-inflammatory activity; surfactin isomer
Mesh:
Substances:
Year: 2010 PMID: 21116409 PMCID: PMC2992995 DOI: 10.3390/md8102605
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Chemical structures of compounds 1–9 obtained from the bacterium Bacillus sp.
Pseudo-molecular ions and main product ions obtained from the positive and negative ions ESI-MSn (n = 1, 2, 3) analyses of pure surfactin isomers.
| Pseudo-molecular ions ( | Main product ions ( | |||
|---|---|---|---|---|
| Compound | [M + H]+ | [M − H]− | MS2 | MS3 |
| 1 | 1034 | 1018, 937, 905, | 653, 554, 441 | |
| 2 | 1020 | 1004, 923, 891, | 653, 554, 441 | |
| 3 | 1006 | 990, 895, 877, | 667, 554, 441 | |
| 4 | 1020 | 1004, 909, 891, | 667, 554, 441 | |
| 5 | 1020 | 1004, 891, | 667, 554, 441 | |
| 6 | 1034 | 1018, 923, 905, | 667, 554, 441 | |
| 7 | 1048 | 1032, 937, | 681, 568, 455 | |
| 8 | 1034 | 1018, 923, 905, | 667, 554, 441 | |
| 9 | 1048 | 1032, 937, 919, | 667, 554, 441 | |
means precursor ion in the ESI-MS2;
means precursor ion in the ESI-MS3.
Figure 2HPLC-UV-ESI-ITMS analysis of the fraction (061341-A9) derived from the mangrove bacterium Bacillus sp. (a): UV chromatogram at 220 nm; (b): total ion chromatogram (TIC) in the positive ion mode.
Peak numbers, retention times, pseudo-molecular ions and main product ions detected by HPLC-ESI MSn (n = 1, 2, 3) analysis of the fraction (061341-A9) derived from Bacillus sp.
| Pseudo-molecular ions ( | Main product ions ( | ||||
|---|---|---|---|---|---|
| No | [M − H]− | MS2 | MS3 | ||
| 1 | 6.04 | 1040 | 1038 | 1022, 909, | 554, 441 |
| 2 | 6.51 | 1040 | 1038 | 1022, 909, | 554, 441 |
| 3 | 7.02 | 994 | 992 | 976, 863, | - |
| 4 | 7.44 | 1054 | 1052 | 1036, 923, 909, | 441, 228 |
| 5 | 7.81 | 994 | 992 | - | - |
| 6 | 8.22 | 1008 | 1006 | 990, 895, 877, | 667, 554, 441 |
| 7 | 9.25 | 994 | 992 | 976, 895, 671 | 653, 554, 441 |
| 8 | 10.54 | 1022 | 1020 | 1004, 909, 891, | 667, 554, 441 |
| 9 | 11.51 | 1022 | 1020 | 1004, 891, | 667, 554, 441 |
| 10 | 12.07 | 1008 | 1006 | 990, 909, | 554, 441 |
| 11 | 12.53 | 994 | 992 | - | - |
| 12 | 12.63 | 1022 | 1020 | 1004, 909, 891, | - |
| 13 | 13.39 | 1036 | 1034 | 1018, 923, 905, | 667, 554, 441 |
| 14 | 14.15 | 1022 | 1020 | 1004, 891, | - |
| 15 | 14.80 | 1036 | 1034 | 1018, 923, | - |
| 16 | 15.36 | 1022 | 1020 | 1004, 923, 891, | 653, 554, 441 |
| 17 | 16.34 | 1022 | 1020 | - | - |
| 18 | 16.34 | 1050 | 1048 | 1032, 937, | 667, 572, 395 |
| 19 | 17.75 | 1050 | 1048 | 1032, 937, 891, | 667, 554, 441 |
| 20 | 18.21 | 1036 | 1034 | 1018, 923, 905, | 667, 554, 441 |
means precursor ion in the ESI-MS2;
means precursor ion in the ESI-MS3.
Figure 3(A–G): Extracted ion chromatogram for m/z 1040 (A), 994 (B), 1054 (C), 1008 (D), 1022 (E), 1036 (F), and 1050 (G); (H): TIC for the fraction (061341-9A).
Figure 4The main fragmentation routes of peak 1 (group 1, linear derivative of surfactin isomer).
Figure 5The main fragmentation routes of peak 3 (group 2, surfactin isomer with AA7 of Leu or Ile).
Figure 6The main fragmentation routes of peaks 7 (Group 3, surfactin isomer with AA7 of Val).
Inhibitory effects of surfactin isomers (1–9) on NO production induced by LPS in RAW264.7 cells.
| Compound | Inhibitory rate on the NO production Concentration (μM) | IC50 (μM) | |||
|---|---|---|---|---|---|
| 30 | 10 | 3 | 1 | ||
| 1 | 101.53 ± 0.70 | 99.02 ± 1.05 | 38.04 ± 4.01 | 19.95 ± 1.40 | 4.37 |
| 2 | 101.78 ± 1.05 | 99.79 ± 0.35 | 78.44 ± 4.91 | 34.08 ± 1.05 | 1.72 |
| 3 | 103.06 ± 3.51 | 84.39 ± 7.53 | 38.79 ± 0.70 | 4.83 ± 3.86 | 4.72 |
| 4 | 103.80 ± 0.35 | 101.32 ± 2.45 | 65.56 ± 4.21 | 24.66 ± 4.56 | 2.24 |
| 5 | 101.78 ± 0.35 | 101.61 ± 2.10 | 61.34 ± 1.05 | 18.46 ± 2.10 | 2.47 |
| 6 | 103.55 ± 0.87 | 102.32 ± 2.45 | 70.76 ± 2.45 | 30.36 ± 0.70 | 1.97 |
| 7 | 35.07 ± 5.96 | 31.10 ± 6.66 | 31.85 ± 8.41 | 21.68 ± 0.35 | >30 |
| 8 | 103.06 ± 0.70 | 100.73 ± 2.10 | 57.38 ± 2.45 | 20.94 ± 1.40 | 2.59 |
| 9 | 102.27 ± 0.35 | 98.39 ± 1.75 | 67.29 ± 4.56 | 19.70 ± 0.35 | 2.27 |
| 64.34 | |||||
Values are means of four experiments;
Hydrocortisone was used as a positive control.
Inhibitory effects of surfactin isomers (1–9) on IL-6 and TNF-α production induced by LPS in RAW264.7 cells.
| Compounds (IC50, μM) | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|
| 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | ||
| 5.90 | 1.16 | 6.64 | 4.95 | 1.79 | 5.48 | >30 | 4.54 | 5.71 | 63.86 | |
| 29.29 | 12.85 | 20.19 | 13.29 | 15.30 | 12.61 | >30 | 18.31 | 20.86 | 85.64 | |
Values are means of four experiments;
Hydrocortisone was used as a positive control.