| Literature DB >> 35558307 |
Jiaozhen Zhang1, Yongjie Wang2, Rongxiu Zhu3, Yi Li1, Yuelan Li1, Yanan Qiao1, Jinchuan Zhou4, Hongxiang Lou1.
Abstract
Six new sesquiterpenoids, including cyperane (1 and 2) and eudesmane (3-6) types, and one known eudesmane derivative (7), were isolated from the Chinese liverwort Chiloscyphus polyanthus var. rivularis (Schrad.) Nees. The structures of 1-7 were determined based on a combination of their spectroscopic data (NMR, HRESIMS and IR), single-crystal X-ray diffraction, and electronic circular dichroism (ECD) calculations. Preliminary anti-diabetic nephropathy activity testing showed that the cyperane-type sesquiterpenoids could inhibit cell proliferation and extracellular matrix accumulation in high glucose cultured mesangial cells in a dose-dependent manner. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35558307 PMCID: PMC9090610 DOI: 10.1039/c8ra08125e
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Fig. 1Structures of compounds 1–7.
1H (400 MHz) and 13C (100 MHz) NMR data of compounds 1 and 2 in CDCl3 (δ in ppm)
| Pos. | 1 | 2 | ||
|---|---|---|---|---|
|
|
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|
| |
| 1α | 37.7 t | 1.76 m | 37.7 t | 1.87 m |
| 1β | 1.49 m | 1.42 ddd (12.6, 9.5, 2.9) | ||
| 2α | 34.5 t | 2.34 m | 31.2 t | 2.30 m |
| 2β | 1.81 m | 1.73 m | ||
| 3 | 77.4 d | 4.36 dd (8.1, 6.0) | 78.2 d | 5.22 dd (10.0, 7.0) |
| 4 | 212.8 s | 213.8 s | ||
| 5 | 65.2 s | 64.4 s | ||
| 6α | 32.6 t | 2.01 d (15.0) | 33.3 t | 2.01 d (14.5) |
| 6β | 1.94 d (15.0) | 1.87 d (14.5) | ||
| 7 | 71.6 s | 73.1 s | ||
| 8 | 30.2 t | 1.50 m | 30.1 t | 1.55 m |
| 9α | 33.0 t | 1.20 br d (10.5) | 33.0 t | 1.16 br d (13.9) |
| 9β | 1.95 m | 1.87 m | ||
| 10 | 43.4 s | 42.7 s | ||
| 11 | 39.2 d | 1.69 sept (6.7) | 40.1 d | 1.63 sept (6.8) |
| 12 | 17.2 q | 0.99 d (6.7) | 16.8 q | 0.99 d (6.8) |
| 13 | 17.1 q | 0.98 d (6.7) | 16.7 q | 0.96 d (6.8) |
| 14 | 22.9 q | 0.95 s | 22.3 q | 0.94 s |
| 15 | 29.8 q | 2.14 s | 31.2 q | 2.15 s |
Fig. 2Selected HMBC (H→C) and 1H–1H COSY (HH) correlations of 1, 3 and 6.
Fig. 3Selected NOESY correlations (H↔H) of 1, 2 and 3.
Fig. 4X-ray crystallographic structures of 1 and 3.
Fig. 5Experimental ECD (red) and calculated ECD (black) of 2.
1H (400 MHz) and 13C (100 MHz) NMR data of compounds 3 and 4 (δ in ppm)
| Pos. | 3 | 3 | 4 | |||
|---|---|---|---|---|---|---|
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| |
| 1α | 35.3 t | 1.33 dt (12.8, 3.0) | 35.1 t | 1.09 m | 34.0 t | 1.42 m |
| 1β | 1.59 m | 1.57 m | 1.67 m | |||
| 2α | 27.7 t | 1.92 m | 27.9 t | 1.74 m | 27.9 t | 1.75 m |
| 2β | 1.74 m | 1.54 m | ||||
| 3 | 70.1 d | 3.90 d (3.2) | 68.3 d | 3.64 t (4.4) | 69.8 d | 3.87 br s |
| 4 | 134.6 s | 131.2 s | 130.0 s | |||
| 5 | 139.0 s | 138.2 s | 137.1 s | |||
| 6α | 70.0 d | 4.53 s | 68.2 d | 4.24 d (3.2) | 33.9 t | 1.99 br d (14.4) |
| 6β | 2.45 dd (14.4, 2.4) | |||||
| 7 | 75.4 s | 73.8 s | 75.4 s | |||
| 8α | 26.4 t | 1.81 m | 26.1 t | 1.65 m | 29.3 t | 1.44 m |
| 8β | 1.61 m | 1.41 m | 1.63 m | |||
| 9 | 36.4 t | 1.50 m | 36.3 t | 1.20 m | 37.6 t | 1.53 m |
| 1.50 m | ||||||
| 10 | 33.7 s | 33.1 s | 34.9 s | |||
| 11 | 33.0 d | 2.03 sept (7.0) | 32.6 d | 1.88 sept (6.8) | 38.3 d | 1.63 sept (6.8) |
| 12 | 16.1 q | 1.02 d (7.0) | 16.4 q | 0.89 d (6.8) | 17.2 q | 0.98 d (6.8) |
| 13 | 16.2 q | 0.96 d (7.0) | 16.2 q | 0.84 d (6.8) | 17.4 q | 0.98 d (6.8) |
| 14 | 26.0 q | 1.20 s | 25.6 q | 1.11 s | 22.6 q | 0.99 s |
| 15 | 17.4 q | 1.90 s | 17.0 q | 1.72 s | 17.3 q | 1.77 s |
Recorded in CDCl3.
Recorded in DMSO-d6.
1H (600 MHz) and 13C (150 MHz) NMR data of compounds 5 and 6 in CDCl3 (δ in ppm)
| Pos. | 5 | 6 | ||
|---|---|---|---|---|
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| |
| 1α | 34.7 t | 1.44 dt (13.2, 4.2) | 31.4 t | 1.88 m |
| 1β | 1.62 m | |||
| 2α | 27.6 t | 1.72 m | 28.2 t | 2.35 m |
| 2β | ||||
| 3 | 70.7 d | 3.80 br s | 177.7 s | |
| 4a | 130.6 s | 34.0 t | 1.90 m | |
| 4b | 1.75 m | |||
| 5 | 135.4 s | 24.7 t | 2.35 m | |
| 6 | 75.6 d | 5.61 s | 170.0 s | |
| 7 | 78.3 s | 122.5 d | 5.79 s | |
| 8α | 25.2 t | 1.72 m | 203.7 s | |
| 8β | 1.55 m | |||
| 9α | 37.6 t | 1.52 m | 43.2 s | |
| 9β | 1.48 m | |||
| 10 | 37.8 s | 35.5 d | 2.39 sept (6.9) | |
| 11 | 33.4 d | 2.05 sept (7.2) | 20.9 q | 1.11 d (6.9) |
| 12 | 16.6 q | 0.84 d (7.2) | 20.9 q | 1.01 d (6.9) |
| 13 | 17.5 q | 0.98 d (7.2) | 22.0 q | 1.09 s |
| 14 | 22.8 q | 1.12 s | ||
| 15 | 17.7 q | 1.88 s | ||
| OAc | 170.2 s | |||
| 21.4 q | 2.13 s | |||
Fig. 6Inhibitory effects of compounds 1 and 2 on high glucose-cultured rat glomerular MCs. (A) Compounds 1 and 2 inhibit HG-induced MC proliferation. (B–E) Compounds 1 and 2 inhibit HG-induced ECM (FN and Col IV) expression in MCs. (B and C) The productions of FN and Col IV in MCs cultured under different conditions were tested by ELISA. (D and E) Western blot analysis were performed to detect the protein expression levels of FN and Col IV, MCs cultured under different conditions. NG: cells treated with 5.5 mM glucose; Man: cells treated with 5.5 mM glucose plus 24.5 Mm; HG: cells treated with high glucose 30 mM. Data are presented as the means ± SEM, n = 3. #P < 0.05 vs. NG; *P < 0.05 vs. HG.