| Literature DB >> 31052163 |
Seyed Mostafa Goldansaz1,2, Carmen Festa3, Ester Pagano4, Simona De Marino5, Claudia Finamore6, Olga Alessandra Parisi7, Francesca Borrelli8, Ali Sonboli9, Maria Valeria D'Auria10.
Abstract
The n-butanolic extract, from an Iranian specimen of Nepeta asterotricha Rech. f. (NABE), displayed anti-inflammatory effects on lipopolysaccharide (LPS)-stimulated J774A.1 macrophages, which reduced nitrites and cytokines production. Bioassay guided fractionation of the extract led to the isolation of four iridoid glycosides, including a new one known as nepetamoside (1), one hexenyl-diglycoside, and some polyphenol and flavonoid components. None of the isolated iridoid components displayed significant effects on nitrites formation in an in vitro LPS-induced model of inflammation, thus suggesting that the plant anti-inflammatory effect is probably due to a synergistic action among its constituents.Entities:
Keywords: Labiatae; NMR; Nepeta asterotricha Rech. f.; anti-inflammatory effect; cytokines; iridoid glycosides; nepetamoside; nitrites; secondary metabolites
Mesh:
Substances:
Year: 2019 PMID: 31052163 PMCID: PMC6539229 DOI: 10.3390/molecules24091684
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Inhibitory effect of Nepeta asterotricha n-butanol extract (NABE) on nitrite levels in the cell medium of J774A.1 macrophages stimulated with lipopolysaccharide (LPS, 1 μg/mL) for 24 h. NABE, at the concentration range of 10–100 μg/mL, were added to the cell media 30 min before LPS stimulus. Results are expressed as mean ± SEM of three experiments (in triplicates). # p < 0.001 vs control (ctrl); *** p < 0.001 vs. LPS alone.
Figure 2(A) Inhibitory effect of Nepeta asterotricha n-butanolic extract (NABE) on inflammatory cytokines levels [i.e., IL-1α, IL-1β, IL-6 and TNF-α] in the cell medium of J774A.1 macrophages stimulated with lipopolysaccharide (LPS, 1 μg/mL) for 24 h. NABE, used at the concentration of 100 μg/mL, were added to the cell media 30 min before LPS stimulus. (B) Representative images of each array (untreated, treated with LPS and LPS+ NABE). Results are expressed as mean ± SEM of three experiments (in triplicates). # p < 0.001 vs control; * p < 0.05, ** p < 0.01 and *** p < 0.001 vs LPS alone.
Figure 3New (1) and known (2–11) compounds isolated from Nepeta asterotricha Rech. f. and compounds 12–15 as reference compounds reported in Table 1 and Table 2.
1H-NMR data of Nepetamoside a (1), 6β-dihydrocornic acid (12) b, 6α-dihydrocornic acid (13) b, penstemonoside (14) c and 8-deoxyshanzhiside (15) c.
| C | 1 | 12 | 13 | 14 | 15 |
|---|---|---|---|---|---|
| 1 | 5.39 br s | 5.25 d (5) | 5.21 d (9) | 5.58 d (2.5) | 5.44 d (2) |
| 3 | 7.41 s | 7.41 s | 7.62 s | 7.48 d (0.9) | 7.34 s |
| 4 | - | - | - | - | - |
| 5 | 2.85 t (8.5) | 2.79 t (6) | 2.82 dd (4, 9) | 2.88 br d | 2.70 d (9) |
| 6 | 4.19 br s | 4.05 m | 4.47 t (4) | 4.23 m | 4.11 t (2) |
| 7 | 1.40 ddd (4.6, 10.2, 13.7) | 1.25 m | 1.38 ddd (4, 10, 13) | 1.80 m | 1.38 ddd (4, 10, 13) |
| 8 | 2.58 m | 1.96 q (7) | 2.30 m | 2.58 m | 2.43 m |
| 9 | 2.80 m | 2.03 dt (5, 6, 7) | 1.70 dt (4, 8) | 2.71 td (2.5, 9.3, 11.7) | 2.56 dt (2, 9.2, 9,2) |
| 10 | 1.05 d (7.2) | 1.15 d (7) | 1.12 d (8) | 1.02 d (7.2) | 0.87 d (7) |
| 11 | - | - | - | - | - |
| OMe | 3.71 s | - | - | 3.75 s | - |
|
| |||||
| 1′ | 4.56 d (7.9) | 4.65 d (8) | 4.70 d (8) | 4.76 d (8.1) | 4.63 d (8) |
| 2′ | 3.20 t (8.2) | 3.20 t (8) | 3.24 dd (8, 9) | 3.25 dd (8.1, 9.3) | 3.10 t (9) |
| 3′ | 3.35 ovl | 3.37 m | 3.40 t (9) | 3.30-3.51 m | 3.33 t (9) |
| 4′ | 3.31 ovl | 3.37 m | 3.31 m | 3.30-3.51 m | 3.23 t (9) |
| 5′ | 3.29 ovl | 3.30 m | 3.29 m | 3.30-3.51 m | 3.33 t (9) |
| 6′ | 3.68 dd (4, 11.8) | 3.67 dd (6, 12) | 3.67 dd (6, 12) | 3.72 dd (5.7, 12.3) | 3.62 dd (6, 12) |
a Acquired in CD3OD at 400 MHz; Coupling constants (J in Hz) in parentheses; 1H and 13C assignments aided by 1H-1H COSY, HSQC, and HMBC experiments. ovl: overlapped with other signals. b In CD3OD as previously reported [28]. c In D2O as previously reported [25,28].
Figure 4COSY connectivities (bold bonds) and key HMBC correlations (blue arrows) for nepetamoside (1).
13C-NMR data of Nepetamoside a (1), 6β-dihydrocornic acid (12) b, 6α-dihydrocornic acid (13) b, penstemonoside (14) b and 8-deoxyshanzhiside (15) c.
| C | 1 | 12 | 13 | 14 | 15 |
|---|---|---|---|---|---|
| 1 | 100.7 | 97.5 | 101.2 | 96.1 | 96.0 |
| 3 | 154.4 | 153.6 | 155.9 | 153.7 | 153.3 |
| 4 | 110.9 | 110.8 | 107.4 | 111.0 | 110.3 |
| 5 | 42.7 | 43.7 | 43.5 | 43.0 | 41.1 |
| 6 | 77.7 | 78.8 | 75.1 | 77.8 | 77.1 |
| 7 | 41.9 | 42.7 | 43.2 | 41.7 | 40.8 |
| 8 | 33.5 | 34.3 | 35.2 | 33.8 | 32.5 |
| 9 | 42.1 | 47.9 | 47.0 | 42.5 | 40.5 |
| 10 | 16.7 | 21.1 | 21.9 | 16.6 | 15.7 |
| 11 | 169.5 | 171.0 | 171.1 | 169.5 | 171.1 |
| OMe | 51.8 | - | - | 51.8 | - |
|
| |||||
| 1′ | 104.2 | 100.2 | 100.4 | 99.7 | 98.6 |
| 2′ | 75.2 | 74.8 | 74.9 | 74.5 | 72.9 |
| 3′ | 78.0 | 78.1 | 78.1 | 78.1 | 75.9 |
| 4′ | 71.2 | 71.7 | 71.7 | 71.5 | 69.9 |
| 5′ | 78.3 | 78.4 | 78.5 | 77.8 | 76.5 |
| 6′ | 62.5 | 62.8 | 63.0 | 62.7 | 61.0 |
a Acquired in CD3OD at 400 MHz b In CD3OD as previously reported [28]. c In D2O as previously reported [25,28].