Phragmalin-Type Limonoids from the Fruits of Chukrasia tabularis and Their Anti-Inflammatory Activity
Abstract
:1. Introduction
2. Results and Discussion
3. Materials and Methods
3.1. General Experimental Procedures
3.2. Plant Material
3.3. Extraction and Isolation
- Chuktabumalin A (1): white, amorphous powder; [α] = −54 (c 0.10, MeOH); IR (KBr) νmax 3448, 2965, 1743, 1632, 1465, 1388, 1149 cm−1; 1H and 13C NMR data (Figures S1–S6): Table 1 and Table 2; HRESIMS m/z 825.3284 [M + Na]+ (calculated for C41H54O16Na+ as 825.3304, Figure S7).
- Chuktabumalin B (2): white, amorphous powder; [α] = +42 (c 0.10, MeOH); IR (KBr) νmax 3447, 2928, 1744, 1631, 1456, 1266, 1103 cm−1; 1H and 13C NMR data (Figures S8–S13): Table 1 and Table 2; HRESIMS m/z 739.2968 [M + Na]+ (calculated for C37H48O14Na+ as 739.2936, Figure S14).
- Chuktabumalin C (3): white, amorphous powder; [α] = +50 (c 0.10, MeOH); IR (KBr) νmax 3446, 2927, 1729, 1631, 1462, 1382, 1237 cm−1; 1H and 13C NMR data (Figures S15–S20): Table 1 and Table 2; HRESIMS m/z 765.2707 [M + Na]+ (calculated for C38H46O15Na+ as 765.2729, Figure S21)
- Chuktabumalin D (4): white, amorphous powder; [α] = −52 (c 0.12, MeOH); IR (KBr) νmax 3448, 2963, 1744, 1630, 1464, 1387, 1152 cm−1; 1H and 13C NMR data (Figures S22–S27): Table 1 and Table 2; HRESIMS m/z 741.2718 [M + Na]+ (calculated for C36H46O15Na+ as 741.2729, Figure S28).
- Chuktabumalin E (5): white, amorphous powder; [α] = −29 (c 0.12, MeOH); IR (KBr) νmax 3449, 2964, 1743, 1631, 1387, 1150 cm−1; 1H and 13C NMR data (Figures S29–S34): Table 1 and Table 2; HRESIMS m/z 755.2871 [M + Na]+ (calculated for C37H48O15Na+ as 755.2885, Figure S28).
3.4. Anti-Inflammatory Activity
4. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Sample Availability
References
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Proton | 1 | 2 | 3 | 4 | 5 |
---|---|---|---|---|---|
3 | 4.68 (s) | 5.06 (s) | 5.25 (s) | 4.61 (s) | 4.67 (s) |
5 | 2.95 (t, 5.9) | 2.26 (m) | 2.16 (d, 10.0) | 2.83 (d, 9.0) | 2.86 (d, 9.2) |
6 | 2.41 (dd, 11.6, 5.9) | 2.43 (dd, 16.1, 10.3) | 3.11 (d, 16.5) | 2.53 (dd, 15.8, 9.7) | 2.57 (m) |
2.30 (dd, 16.1, 1.7) | 2.28 (m) | 2.27 (m) | 2.26 (dd, 15.9, 1.4) | ||
11a | 1.95 (d, 4.4) | 2.51 (dd, 13.4, 5.2) | 2.25 (m) | 2.17 (m) | 2.17 (d, 14.1) |
11b | 1.93 (s) | 1.80 (d, 13.4) | 1.99 (m) | 1.70 (m) | 1.72 (m) |
12a | 4.03 (dd, 10.6, 5.9) | 3.81 (d, 5.0) | 4.80 (dd, 13.4, 3.9) | 1.54 (d, 12.5) | 1.52 (d, 13.9) |
12b | 1.83 (d, 14.3) | 1.90 (d, 10.8) | |||
14 | 2.17 (d, 3.5) | 2.87 (dd, 16.0, 3.7) | 2.05 (d, 10.4) | 2.06 (d, 10.0) | |
15a | 6.55 (d, 3.2) | 3.55 (dd, 14.6, 3.8) | 6.69 (s) | 3.23 (d, 20.0) | 3.26 (d, 20.3) |
15b | 3.05 (t, 15.3) | 2.66 (dd, 20.0, 10.6) | 2.67 (dd, 20.2, 10.6) | ||
17 | 5.61 (s) | 4.99 (s) | 5.98 (s) | 5.57 (s) | 5.64 (d, 1.4) |
18 | 1.08 (s) | 1.17 (s) | 1.59 (s) | 1.09 (s) | 1.08 (s) |
19 | 1.15 (s) | 1.35 (s) | 1.30 (s) | 1.14 (s) | 1.15 (s) |
21 | 7.69 (s) | 7.39 (s) | 7.42 (s) | 6.18 (s) | 6.19 (s) |
22 | 6.61 (s) | 6.44 (s) | 6.55 (s) | 6.27 (s) | 6.30 (s) |
23 | 7.53 (s) | 7.41 (s) | 7.40 (s) | ||
28 | 0.92 (s) | 0.84 (s) | 0.72 (s) | 0.90 (s) | 0.90 (s) |
29a | 1.89 (d, 10.8) | 1.95 (d, 11.2) | 1.97 (m) | 1.90 (d, 10.9) | 1.90 (d, 10.8) |
29b | 1.77 (d, 10.8) | 1.85 (d, 11.1) | 1.71 (d, 11.5) | 1.75 (d, 10.9) | 1.76 (d, 10.8) |
30 | 6.01 (s) | 5.30 (s) | 5.39 (s) | 5.85 (s) | 5.90 (s) |
32 | 1.61 (s) | 1.51 (s) | 1.69 (s) | 1.66 (s) | 1.67 (s) |
MeO-7 | 3.69 (s) | 3.64 (s) | 3.67 (s) | 3.72 (s) | 3.73 (s) |
R-3 | |||||
2′ | 2.83 (m) | 2.98 (m) | 2.48 (m) | 2.88 (m) | 2.52 (m) |
3′ | 1.19 (d, 6.5) | 1.29 (d, 6.8) | 1.19 (d, 6.6) | 1.09 (d, 7.5) | 1.09 (d, 7.2) |
4′ | 1.26 (d, 6.5) | 1.24 (d, 6.8) | 1.13 (d, 6.6) | 1.11 (d, 7.5) | 1.18 (d, 7.2) |
R-2/30 | |||||
2″ | 2.73 (m) | 2.62 (m) | 2.43 (m) | 2.34 (m) | 2.92 (m) |
3″ | 1.14 (d, 6.9) | 1.20 (d, 6.8) | 1.16 (t, 7.6) | 1.06 (t, 7.5) | 1.09 (d, 6.7) |
4″ | 1.20 (d, 6.9) | 1.21 (d, 6.8) | 1.12 (d, 6.7) | ||
R-15 | |||||
2‴ | 2.63 (m) | ||||
3‴ | 1.25 (d, 7.0) | ||||
4‴ | 1.22 (d, 7.0) | ||||
OAc-12 | 1.52 (s) |
Carbon | 1 | 2 | 3 | 4 | 5 |
---|---|---|---|---|---|
1 | 85.5 | 84.7 | 84.4 | 85.5 | 85.5 |
2 | 80.3 | 74.8 | 83.5 | 79.4 | 79.7 |
3 | 83.3 | 86.4 | 84.7 | 83.1 | 82.7 |
4 | 45.2 | 43.9 | 44.9 | 45.4 | 45.5 |
5 | 37.3 | 38.3 | 40.5 | 37.2 | 37.3 |
6 | 33.6 | 33.7 | 33.2 | 33.9 | 33.9 |
7 | 173.6 | 173.7 | 174.3 | 175.2 | 175.1 |
8 | 85.3 | 83.6 | 83.8 | 85.9 | 86.1 |
9 | 86.2 | 82.5 | 86.1 | 86.8 | 86.9 |
10 | 45.8 | 45.7 | 48.1 | 45.4 | 45.4 |
11 | 34.7 | 26.8 | 32.8 | 25.4 | 25.4 |
12 | 66.5 | 71.7 | 68.9 | 28.8 | 28.8 |
13 | 42.4 | 43.0 | 43.1 | 34.7 | 34.8 |
14 | 52.8 | 47.2 | 152.6 | 42.7 | 42.6 |
15 | 64.0 | 30.5 | 124.0 | 26.6 | 26.5 |
16 | 168.4 | 171.6 | 163.5 | 169.2 | 169.2 |
17 | 76.6 | 76.5 | 78.9 | 78.3 | 78.1 |
18 | 12.8 | 22.6 | 14.6 | 20.3 | 20.2 |
19 | 16.5 | 14.6 | 15.6 | 16.5 | 16.5 |
20 | 121.3 | 115.7 | 121.3 | 163.6 | 163.6 |
21 | 141.6 | 141.1 | 142.2 | 97.5 | 97.5 |
22 | 109.3 | 110.6 | 110.4 | 122.2 | 122.3 |
23 | 144.5 | 143.4 | 143.1 | 169.1 | 169.0 |
28 | 15.0 | 14.8 | 14.4 | 14.5 | 14.5 |
29 | 39.6 | 40.5 | 40.0 | 39.7 | 39.7 |
30 | 70.8 | 65.5 | 74.4 | 70.6 | 70.4 |
31 | 119.6 | 119.9 | 119.9 | 119.2 | 119.3 |
32 | 21.1 | 21.4 | 16.7 | 21.2 | 21.2 |
MeO-7 | 52.4 | 52.4 | 52.3 | 53.0 | 53.0 |
R-3 | |||||
1′ | 176.6 | 176.6 | 176.1 | 177.3 | 177.1 |
2′ | 34.6 | 34.2 | 34.0 | 34.1 | 34.7 |
3′ | 18.4 | 18.9 | 18.5 | 19.9 | 20.0 |
4′ | 19.9 | 19.8 | 20.4 | 18.1 | 18.1 |
R-2/30 | |||||
1″ | 175.8 | 175.7 | 173.7 | 172.6 | 175.2 |
2″ | 34.7 | 34.1 | 28.4 | 27.9 | 34.0 |
3″ | 18.3 | 19.1 | 9.16 | 8.7 | 18.1 |
4″ | 19.3 | 19.3 | 19.5 | ||
R-15 | |||||
1‴ | 175.1 | ||||
2‴ | 33.9 | ||||
3‴ | 19.0 | ||||
4‴ | 19.1 | ||||
OAc-12 | 170.6, 20.1 |
Compound | IC50 Value (μM) a |
---|---|
1 | 21.72 ± 2.79 |
2 | 23.29 ± 1.01 |
3 | 47.08 ± 3.47 |
4 | – |
5 | 66.67 ± 2.89 |
Quercetin b | 8.28 ± 0.81 |
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Dai, S.; Wu, Y.; Xin, X.; An, F. Phragmalin-Type Limonoids from the Fruits of Chukrasia tabularis and Their Anti-Inflammatory Activity. Molecules 2023, 28, 5136. https://doi.org/10.3390/molecules28135136
Dai S, Wu Y, Xin X, An F. Phragmalin-Type Limonoids from the Fruits of Chukrasia tabularis and Their Anti-Inflammatory Activity. Molecules. 2023; 28(13):5136. https://doi.org/10.3390/molecules28135136
Chicago/Turabian StyleDai, Shujun, Yuzhen Wu, Xiujuan Xin, and Faliang An. 2023. "Phragmalin-Type Limonoids from the Fruits of Chukrasia tabularis and Their Anti-Inflammatory Activity" Molecules 28, no. 13: 5136. https://doi.org/10.3390/molecules28135136
APA StyleDai, S., Wu, Y., Xin, X., & An, F. (2023). Phragmalin-Type Limonoids from the Fruits of Chukrasia tabularis and Their Anti-Inflammatory Activity. Molecules, 28(13), 5136. https://doi.org/10.3390/molecules28135136