| Literature DB >> 22491674 |
Yue-Lin Song1, Qing-Wen Zhang, Ya-Ping Li, Ru Yan, Yi-Tao Wang.
Abstract
Angular-type pyranocoumarins from Peucedani Radix (Chinese name: Qian-hu) have exhibited potential for use on treatment of cancer and pulmonary hypertension. Due to the existence of C-3' and C-4' chiral centers, compounds belonging to this chemical type commonly exist in enantiomers and/or diastereoisomers, which may elicit distinct activities during their interactions with the human body. In the present study, a new method, which combines enzymatic hydrolysis with chiral LC-MS/MS analysis, has been developed to determine the absolute configurations of these angular-type pyranocoumarins. Pyranocoumarins isolated from Qian-hu, their enantiomers, or metabolites were individually incubated with rat liver microsomes. As the common end product from enzymatic hydrolysis of all tested pyranocoumarins, cis-khellactone was collected and its absolute configuration was determined by comparison with (+)-cis-khellactone and (-)-cis-khellactone using chiral LC-MS/MS. The absolute configurations of all tested parent pyranocoumarins were determined by combination of LC-MS/MS, NMR and polarimetric analysis. The results revealed that the metabolite cis-khellactone retained the same absolute configurations of the stereogenic carbons as the respective parent compound. This method was proven to be rapid and sensitive and also has advantages in discriminating single enantiomers and mixtures of optical isomers with different ratios.Entities:
Mesh:
Substances:
Year: 2012 PMID: 22491674 PMCID: PMC6268167 DOI: 10.3390/molecules17044236
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Chemical structures of pyranocoumarin compounds 1–11.
HPLC-MS/MS data and optical rotations of pyranocoumarins from Qian-hu and their hydrolytic products.
| compound | MS1 | MW | MS2 | Optical rotation (
| Hydrolytic metabolite(+/− | Identity |
|---|---|---|---|---|---|---|
| 263[M+H]+; 285[M+Na]+ | 262 | 245,203 | 0° | +:− = 1:1 | (±)-
| |
| 263[M+H]+; 285[M+Na]+ | 262 | 245,203 | −55° | - | (−)-
| |
| 263[M+H]+; 285[M+Na]+ | 262 | 245,203 | +57° | + | (+)-
| |
| 404[M+NH4]+; 409[M+Na]+ | 386 | 327,245,227 | 0° | +:− = 1:1 | (±)-
| |
| 404[M+NH4]+; 409[M+Na]+ | 386 | 327,245,227 | +59° | - | (+)-
| |
| 404[M+NH4]+; 409[M+Na]+ | 386 | 327,245,227 | −61° | + | (−)-
| |
| 444[M+NH4]+; 449[M+Na]+ | 426 | 327,245,227 | +3.4° | +:− = 2:3 | ||
| 444[M+NH4]+; 449[M+Na]+ | 426 | 327,245,227 | +36° | - | (+)-
| |
| 444[M+NH4]+; 449[M+Na]+ | 426 | 327,245,227 | −37° | + | (−)-
| |
| 446[M+NH4]+; 451[M+Na]+ | 428 | 327,245,227 | +35° | - | (+)-
| |
| 404[M+NH4]+; 409[M+Na]+ | 386 | 309,245,227 | +2.9° | +:− = 7:1 | ||
| 404[M+NH4]+; 409[M+Na]+ | 386 | 309,245,227 | +3.5° | + | (+)-
| |
| 406[M+NH4]+; 411[M+Na]+ | 388 | 329,245,227 | +27° | +:− = 1:8 | ||
| 406[M+NH4]+; 411[M+Na]+ | 388 | 329,245,227 | +33° | - | (+)-
| |
| 444[M+NH4]+; 449[M+Na]+ | 426 | 327,245,227 | +31° | - | (+)-
| |
| 448[M+NH4]+; 453[M+Na]+ | 430 | 329,245,227 | +35° | - | (+)-
| |
| 367[M+Na]+; 383[M+K]+ | 344 | 267,245,227 | −57° | + | (−)-
| |
| 367[M+Na]+; 383[M+K]+ | 344 | 267,245,227 | −39° | + | (−)-
| |
| 367[M+Na]+; 383[M+K]+ | 344 | 327,245,227 | +11° | N.A. | (+)-
|
N.A.: not applicable.
1H-NMR spectroscopic data of angular-type pyranocoumarin compounds 1-11 in CDCl3 (600 M).
| Position | Compound | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|
| 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | |
| 3 | 6.27 (d, 9.5) | 6.26 (d, 9.5) | 6.23 (d, 9.5) | 6.25 (d, 9.6) | 6.24 (d, 9.6) | 6.25 (d, 9.6) | 6.23 (d, 9.5) | 6.24 (d, 9.5) | 6.27 (d, 9.6) | 6.24 (d, 9.5) | 6.27 (d, 9.5) |
| 4 | 7.67 (d, 9.5) | 7.61 (d, 9.5) | 7.60 (d, 9.5) | 7.60 (d, 9.6) | 7.60 (d, 9.6) | 7.61 (d, 9.6) | 7.59 (d, 9.5) | 7.60 (d, 9.5) | 7.65 (d, 9.6) | 7.61 (d, 9.5) | 7.67 (d, 9.5) |
| 6 | 7.34 (d, 8.7) | 7.37 (d, 8.6) | 7.37 (d, 8.6) | 7.35 (d, 8.6) | 7.37 (d, 8.6) | 7.36 (d, 8.6) | 7.36 (d, 8.6) | 7.36 (d, 8.6) | 7.36 (d, 8.5) | 7.38 (d, 8.7) | 7.35 (d, 8.6) |
| 7 | 6.81 (d, 8.7) | 6.82 (d, 8.6) | 6.82 (d, 8.6) | 6.81 (d, 8.6) | 6.82 (d, 8.6) | 6.81 (d, 8.6) | 6.81 (d, 8.6) | 6.81 (d, 8.6) | 6.81 (d, 8.5) | 6.82 (d, 8.7) | 6.83 (d, 8.6) |
| 3′ | 3.89 (d, 5.0) | 5.37 (d, 5.0) | 5.46 (d, 5.0) | 5.41 (d, 4.8) | 5.37 (d, 4.8) | 5.34 (d, 5.0) | 5.42 (d, 4.8) | 5.34 (d, 4.8) | 5.49 (d, 4.8) | 4.10 (d, 4.8) | 5.28 (d, 3.6) |
| 4′ | 5.23 (d, 5.0) | 6.65 (d, 5.0) | 6.72 (d, 5.0) | 6.63 (d, 4.8) | 6.65 (d, 4.8) | 6.57 (d, 5.0) | 6.67 (d, 4.8) | 6.57 (d, 4.8) | 5.25 (d, 4.8) | 6.51 (d, 4.8) | 5.09 (d, 3.6) |
| 5′ | 1.42 (s) | 1.45 (s) | 1.47 (s) | 1.46 (s) | 1.45 (s) | 1.42 (s) | 1.46 (s) | 1.45 (s) | 1.45 (s) | 1.45 (s) | 1.42 (s) |
| 6′ | 1.48 (s) | 1.49 (s) | 1.51 (s) | 1.49 (s) | 1.48 (s) | 1.46 (s) | 1.50 (s) | 1.47 (s) | 1.51 (s) | 1.50 (s) | 1.52 (s) |
| 2′′ | - | - | - | - | - | 2.26 (m); | - | 2.30 (m); | - | - | - |
| 3′′ | - | 6.14 (q, 7.2) | 6.13 (q, 7.2) | 6.13 (q, 7.2) | 2.11 (s) | 2.10 (m) | 6.13 (q, 7.2) | 2.15 (m) | 6.18 (q, 7.2) | - | 6.11 (q, 7.2) |
| 4′′ | - | 1.97 (d, 7.2) | 2.00 (d, 7.2) | 1.98 (d, 7.2) | - | 0.98 (d, 7.2) | 1.98 (d, 7.2) | 0.98 (d, 7.2) | 2.00 (d, 7.2) | - | 1.92 (d, 7.2) |
| 5′′ | - | 1.88 (s) | 1.87 (s) | 1.89 (s) | - | 0.98 (d, 7.2) | 1.86 (s) | 0.98 (d, 7.2) | 1.91 (s) | - | 1.85 (s) |
| 2′′′ | - | 2.12 (s) | - | 2.28 (m); | - | 2.15 (s) | 5.63 (s) | 2.30 (m); | - | - | - |
| 3′′′ | - | - | 7.25 (q, 7.2) | 2.14 (m) | 7.26 (q, 7.2) | - | - | 2.15 (m) | - | 6.13 q, 7.2 | - |
| 4′′′ | - | - | 1.98 (d, 7.2) | 0.97 (d, 7.2) | 2.01 (d, 7.2) | - | 1.89 (s) | 0.98, d, 7.2 | - | 2.02, d, 7.2 | - |
| 5′′′ | - | - | 1.85 (s) | 0.97 (d, 7.2) | 1.88 (s) | - | 2.20 (s) | 0.98, d, 7.2 | - | 1.91, s | - |
| Ref. | [ | [ | [ | [ | [ | [ | [ | [ | [ | [ | [ |
Figure 2Typical HPLC-UV (323 nm) chromatograms of compounds 1 (A) and 3 (B) on a CHIRALPAK AD-RH semi-preparative column.
Figure 3Typical achiral HPLC-UV (323 nm) chromatograms of incubations of compounds2–10 in rat liver microsomes in the presence of a NADPH-regenerating system.
Figure 4Typical extracted ion current chromatograms (XIC) (263.1 > 203.1) of authentic 1a (A) and 1b (B), and samples from incubations of compound 5 (C) and 6 (D) with rat liver microsomes under chiral LC-MS/MS analytical conditions.