| Literature DB >> 28316643 |
Dominique Ngnintedo1, Ghislain W Fotso1, Victor Kuete2, Frederic Nana3, Louis P Sandjo4, Oğuzhan Karaosmanoğlu5, Hülya Sivas6, Felix Keumedjio1, Gilbert Kirsch3, Bonaventure T Ngadjui7, Kerstin Andrae-Marobela8.
Abstract
BACKGROUND: Ptycholobium is a genus related to Tephrosia which comprises only three species. Compared to Tephrosia, which has been phytochemically and pharmacologically studied, Ptycholobium species have only few or no reports on their chemical constituents. Moreover, no studies on the cytotoxic activities of its secondary metabolites have been previously documented.Entities:
Keywords: Cytotoxic activities; Ptycholobium contortum; Ptycholopyrone A; Seputhecarpan C; Seputhecarpan D
Year: 2016 PMID: 28316643 PMCID: PMC5050614 DOI: 10.1186/s13065-016-0204-x
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
1H- and 13C-NMR Data (300 and 75 MHz, resp) of 1 in (D6)acetonea and 2 in CDCl3a. δ in ppm, J in Hertz
| Atom | 2 | 1 | ||
|---|---|---|---|---|
| Proton | Carbon | Proton | Carbon | |
| 1 | 7.02 ( | 130.4 ( | 7.29 (s, 1H) | 126.9 ( |
| 2 | – | 129.2 ( | 120.7 ( | |
| 3 | – | 155.1 ( | 161.0 ( | |
| 4 | 6.41 ( | 103.2 ( | 6.40 (s, 1H) | 96.3 ( |
| 4a | – | 154.8 ( | 156.2 ( | |
| 6ax | 4.11 ( | 70.0 ( | 3.62 ( | 66.4 ( |
| 6 eq | 4.37 ( | 4.02 ( | ||
| 6a | 3.51 ( | 32.2 ( | 3.62 ( | 39.5 ( |
| 6b | – | 117.9 ( | 119.5 ( | |
| 7 | 6.99 ( | 126.3 ( | 7.25 ( | 125.0 ( |
| 8 | 6.41 ( | 108.0 ( | 6.47 ( | 106.0 ( |
| 9 | – | 157.7 ( | – | 161.2 ( |
| 16-OH | – | 4.02 ( | ||
| 10 | 6.40 ( | 100.7 ( | 6.31 ( | 97.5 ( |
| 10a | – | 152.5 ( | – | 160.9 ( |
| 11a | 5.02 ( | 77.2 ( | 5.55 ( | 78.9 ( |
| 11b | – | 114.8 ( | – | 112.6 ( |
| 12 | – | 40.2 ( | 3.42 ( | 34.1 ( |
| 12′ | – | 3.12 ( | ||
| 13 | 6.18 ( | 148.2 ( | 5.37 ( | 84.1 ( |
| 14 | 4.99 ( | 109.7 ( | 149.1 ( | |
| 15 | 1.44 ( | 27.3 ( | 5.22 ( | 109.1 ( |
| 15′ | 1.44 ( | 5.22 ( | ||
| 16 | – | – | 4.21( | 61.4 ( |
| -OMe | 3.78 ( | 55.3 ( | 3.77 ( | 54.8 ( |
Atom numbering as indicated in Fig. 1
aAll assignments are based on 1H, 1H-COSY, HMQC, and HMBC data
Fig. 2Key HMBC (→) and 1H–1H COSY (─) correlations of 1–3
Fig. 1Structures of compounds 1–8
1H- and 13C-NMR Data (300 and 75 MHz, resp) of 3 in MeOD and 4 in CDCl3, δ in ppm, J in Hertz
| Atom | 4 | 3 | ||
|---|---|---|---|---|
| Proton | Carbon | Proton | Carbon | |
| 2 | – | 162.6 ( | – | 163.8 ( |
| 3 | – | 112.2 ( | – | 111.0 ( |
| 4 | – | 166.5 ( | – | 167.5 ( |
| 5 | 6.14 ( | 96.7 ( | 6.56 (s, 1H) | 98.1 ( |
| 6 | – | 157.7 ( | – | 157.7 ( |
| 6a | 6.63 ( | 118.7 ( | 6.88 ( | 118.7 ( |
| 1′a | 7.53 ( | 135.4 ( | 7.44 ( | 134.8 ( |
| 1′ | – | 135.4 ( | 135.5 ( | |
| 2′, 6′ | 7.51 ( | 127.4 ( | 7.60 ( | 127.2 ( |
| 3′ | 7.39 ( | 128.9 ( | 7.38 ( | 128.6 ( |
| 4′ | 129.3 ( | 129.0 ( | ||
| 5′ | 128.9 ( | 128.6 ( | ||
| 1′′ | – | 40.1 ( | – | 39.6 ( |
| 2′′ | 6.23 ( | 148.6 ( | 6.18 ( | 148.4 ( |
| 3′′ | 4.98 ( | 108.4 ( | 4.87 ( | 107.2 ( |
| 4′′, 5′′ | 1.54 ( | 27.7 ( | 1.49 ( | 27.0 ( |
| 1′′′ | – | – | 4.71 ( | 65.9 ( |
| 2′′′ | – | – | 5.50 ( | 118.1 ( |
| 3′′′ | – | – | – | 139.5 ( |
| 4′′′ | – | – | 1.83 ( | 24.4 ( |
| 5′′′ | – | – | 1.80 ( | 16.9 ( |
| -OMe | 3.87( | 55.9 ( | – | – |
Atom numbering as indicated in Fig. 1
aAll assignments are based on 1H, 1H-COSY, HMQC, and HMBC data
Cytotoxicity of compounds and doxorubicin towards lung carcinoma cells
| Compounds | Cell lines and IC50 values (µM) | |
|---|---|---|
| A549 | SPC212 | |
| 1 | 73.49 ± 8.64 | 63.47 ± 5.99 |
| 2 | 26.39 ± 1.27 | 12.99 ± 0.95 |
| 4 | 11.39 ± 1.52 |
|
| 5 | 13.19 ± 1.55 | 16.38 ± 1.89 |
| 6 | 46.70 ± 3.63 |
|
| 7 | 38.68 ± 3.65 |
|
| 8 | >425.53 | >425.53 |
| Doxorubicin | 1.01 ± 0.20 | 0.07 ± 0.00 |
Values in italics significant cytotoxic effect [13]