| Literature DB >> 29534040 |
Chiung-Yao Huang1, Wan-Ru Tseng2, Atallah F Ahmed3, Pei-Lun Chiang4, Chi-Jen Tai5, Tsong-Long Hwang6,7,8, Chang-Feng Dai9, Jyh-Horng Sheu10,11,12,13.
Abstract
Three new polyoxygenated steroids, michosterols A-C (1-3), and four known compounds (4-7) were isolated from the ethyl acetate (EtOAc) extract of the soft coral Lobophytum michaelae, collected off the coast of Taitung. The structures of the new compounds were elucidated on the basis of spectroscopic analyses and comparison of the nuclear magnetic resonance (NMR) data with related steroids. The cytotoxicity of compounds 1-3 against the proliferation of a limited panel of cancer cell lines was assayed. Compound 1 was found to display moderate cytotoxicity against adenocarcinomic human alveolar basal epithelial (A549) cancer cells. It also exhibited potent anti-inflammatory activity by suppressing superoxide anion generation and elastase release in N-formyl-methionyl-leucyl-phenylalanine/cytochalasin B (fMLP/CB)-stimulated human neutrophils. Furthermore, 3 could effectively inhibit elastase release, as well.Entities:
Keywords: Lobophytum michaelae; anti-inflammatory activity; cytotoxicity; soft coral
Mesh:
Substances:
Year: 2018 PMID: 29534040 PMCID: PMC5867637 DOI: 10.3390/md16030093
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Structures of compounds 1–7.
13C and 1H NMR data of compounds 1–3 in CDCl3.
| 1 | 2 | 3 | ||||
|---|---|---|---|---|---|---|
| Position | δC
| δH
| δC
| δH
| δC
| δH
|
| 1 | 25.2, CH2 | 1.35 m; 1.81 m | 25.1, CH2 | 1.33 m; 1.81 m | 25.1, CH2 | 1.34 m; 1.82 m |
| 2 | 27.7, CH2 | 1.59 m; 1.65 m | 27.8, CH2 | 1.59 m | 27.6, CH2 | 1.59 m |
| 3 | 67.7, CH | 4.27 br s | 67.7, CH | 4.25 br s | 66.9, CH | 4.11 br s |
| 4 | 30.0, CH2 | α: 1.93 m; | 29.9, CH2 | 1.81 m; 1.92 m | 31.1, CH2 | 1.92 br s |
| 5 | 78.1, C | 77.8, C | 77.4, C | |||
| 6 | 71.8, CH | 3.82 dd (12.0, 4.8) | 71.7, CH | 3.80 dd (12.0, 5.0) | 75.8, CH | 4.97 dd (12.0, 4.8) |
| 7 | 34.5, CH2 | α: 1.09 q (12.0) | 34.6, CH2 | 1.03 m; | 33.6, CH2 | 1.07 m |
| 8 | 32.4, CH | 1.76 m | 33.0, CH | 1.63 m | 33.6, CH | 1.56 m |
| 9 | 43.3, CH | 1.34 m | 42.9, CH | 1.27 m | 42.7, CH | 1.25 m |
| 10 | 41.1, C | 40.9, C | 41.6, C | |||
| 11 | 21.5, CH2 | 1.36 m; 1.51 m | 22.0, CH2 | 1.38 m; 1.52 m | 21.4, CH2 | 1.29 m; 1.42 m |
| 12 | 35.8, CH2 | α: 2.06 m; | 38.7, CH2 | 1.44 m; | 39.7, CH2 | 1.13 m; |
| 13 | 47.4, C | 44.1, C | 42.6, C | |||
| 14 | 57.8, CH | 1.52 m | 51.7, CH | 1.09 m | 56.2, CH | 1.07 m |
| 15 | 31.0, CH2 | 1.90 m; 2.12 m | 29.4, CH2 | 1.69 m; 2.08 m | 24.0, CH2 | 1.05 m; 1.53 m |
| 16 | 127.0, CH | 5.70 d (2.0) | 86.1, CH | 4.96 dd (7.5, 7.5) | 28.0, CH2 | 1.28 m; 1.84 m |
| 17 | 157.6, C | 143.6, C | 55.8, CH | 1.13 m | ||
| 18 | 17.9, CH3 | 0.96 s | 17.7, CH3 | 0.99 s | 11.9, CH3 | 0.64 s |
| 19 | 17.2, CH3 | 0.96 s | 17.0, CH3 | 0.94 s | 17.0, CH3 | 0.97 s |
| 20 | 85.6, C | 132.8, C | 36.2, CH | 1.36 m | ||
| 21 | 22.4, CH3 | 1.31 s | 19.4, CH3 | 1.71 s | 18.9, CH3 | 0.92 d (6.4) |
| 22 | 44.5, CH2 | α: 1.99 m | 41.2, CH2 | 1.76 m; 2.43 dd (10.0, 13.5) | 34.8, CH2 | 0.92 m; 1.50 m |
| 23 | 26.3, CH | 2.05 m | 29.6, CH | 2.10 m | 27.8, CH2 | 0.77 m; 1.68 m |
| 24 | 46.1, CH | 2.28 m | 40.7, CH | 2.24 m | 45.1, CH | 1.27 m |
| 25 | 87.2, C | 87.0, C | 73.6, C | |||
| 26 | 24.1, CH3 | 1.41 s | 24.0, CH3 | 1.41 s | 26.0, CH3 | 1.14 s |
| 27 | 25.8, CH3 | 1.50 s | 25.3, CH3 | 1.43 s | 27.2, CH3 | 1.15 s |
| 28 | 9.3, CH3 | 0.88 d (7.2) | 9.3, CH3 | 0.81 d (7.0) | 14.8, CH3 | 0.88 d (6.8) |
| 29 | 18.0, CH3 | 0.93 d (6.8) | 16.7, CH3 | 0.86 d (7.0) | ||
| OAc | 22.7, CH3 | 2.03 s | 22.7, CH3 | 2.00 s | 21.3, CH3 | 2.03 s |
| 171.9, C | 171.2, C | 171.9, C | ||||
| 6-OH | 4.11 br s | 4.01 br s | ||||
| 20-OOH | 8.06 br s | 8.91 br s | ||||
Spectrum recorded at 100 MHz; attached protons were deduced by the DEPT experiment; spectrum recorded at 400 MHz; J values (in Hz) in parentheses; spectrum recorded at 125 MHz; spectrum recorded at 500 MHz.
Figure 2Selected COSY and HMBC correlations of 1–3.
Figure 3Selected NOESY correlations of compound 1.
Figure 4(a–d) C-24/C-25 rotamers of compound 1.
The 1H NMR chemical shifts and coupling constants of the H-3 and H-6 of compound 1 and the related steroids [22].
| Michosterol A (1) | 5α-Cholestane-3β,5,6α-Triol | 5α-Cholestane-3β,5,6β-Triol | 5β-Cholestane-3β,5,6α-Triol | 5β-Cholestane-3β,5,6β-Triol | |
|---|---|---|---|---|---|
| H-3 | 4.27, br s | 4.06, m | 4.09, m | 4.24, s | 4.14, s |
| H-6 | 3.82, dd, | 3.64, dd | 3.53, s | 3.74–3.81, dd, | 3.56, m |
Figure 5Selected NOESY correlations of compounds 2 and 3.
Inhibitory effects of compounds 1–3 on superoxide anion generation and elastase release in N-formyl-methionyl-leucyl-phenylalanine/cytochalasin B (fMLP/CB)-induced human neutrophils at 10 μM.
| Compound | Superoxide Anion Generation | Elastase Release | ||||
|---|---|---|---|---|---|---|
| IC50 (μM) | Inh% | IC50 (μM) | Inh% | |||
| 1 | 7.1 ± 0.3 | 63.1 ± 1.1 | *** | 4.5 ± 0.9 | 91.7 ± 3.1 | *** |
| 2 | >10 | 14.7 ± 5.7 | >10 | 31.8 ± 5.0 | ** | |
| 3 | >10 | 17.8 ± 2.8 | ** | 0.9 ± 0.1 | 95.4 ± 3.6 | *** |
| Idelalisib | 0.07 ± 0.01 | 102.8 ± 2.2 | *** | 0.3 ± 0.1 | 99.6 ± 4.2 | *** |
Concentration necessary for 50% inhibition (IC50); percentage of inhibition (Inh%) at a 10 μM concentration. Results are presented as the mean ± S.E.M. (n = 3–4). ** p < 0.01, *** p < 0.001 compared with the control value.